Herbicidal compositions comprising herbicidal alanines

Herbicidal compositions combining alanine compounds with other herbicides and safeners address the limitations of solo herbicides by providing broad-spectrum, low-impact, and resistant weed control.

WO2026153770A1PCT designated stage Publication Date: 2026-07-23BASF AGRO TRADEMARKS GMBH
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
BASF AGRO TRADEMARKS GMBH
Filing Date
2026-01-05
Publication Date
2026-07-23

AI Technical Summary

Technical Problem

Existing herbicides often fail to provide broad-spectrum weed control while being safe for useful crops, require precise timing, and can lead to resistance and environmental impact, with solo applications being less effective and potentially harmful.

Method used

Herbicidal compositions combining an alanine compound of formula I with other herbicides and safeners, enhancing efficacy through synergistic effects and reducing application rates.

Benefits of technology

The herbicidal combinations show enhanced weed control, lower phytotoxicity, reduced environmental impact, and resistance to weed resistance, allowing flexible application under varying weather conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to herbicidal compositions comprising an herbicidal alanine compound of formula I and further compounds selected from herbicidally active compounds. [formula I] The present invention also relates to the use of such a composition for controlling unwanted vegetation and to a method for controlling unwanted vegetation, which comprises allowing a composition to act on plants, their seeds and / or their habitat.
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Description

[0001] Herbicidal compositions comprising herbicidal alanines

[0002] The present invention relates to herbicidal compositions comprising an herbicidal alanine compound of formula I and further compounds selected from herbicidally active compounds.

[0003]

[0004] The present invention also relates to the use of such an herbicidal composition for controlling unwanted vegetation and to a method for controlling unwanted vegetation, which comprises allowing a composition to act on plants, their seeds and / or their habitat.

[0005] In crop protection, it is important to boost the activity and effectiveness of an active compound. The ideal composition should effectively control harmful plants while being safe for useful plants. Additionally, a broad spectrum of activity is desired to manage various harmful plants at once, which often can't be achieved with just one herbicide. Many effective herbicides can damage useful crop plants (cultivated plants). Reducing application rates helps protect these crops but also decreases the control of harmful plants. Applying herbicides often requires precise timing, influenced by unpredictable weather.

[0006] Combining different herbicides can create a synergistic effect, enhancing their efficacy, and reducing the amount needed. Additionally, using herbicides with certain organic compounds (safeners) can protect crops by minimizing or preventing damage to the crop plants.

[0007] The present invention aims to provide herbicidal compositions with high activity against harmful plants and good compatibility with useful plants.

[0008] Accordingly, the present invention relates to herbicidal compositions comprising as component

[0009] A) an alanine compound of formula I

[0010]

[0011] wherein

[0012] R1, R2and R3are each independently hydrogen, halogen, cyano, (Ci-C3)-alkyl, (Ci-C3)- haloalkyl, (Ci-C3)-alkoxy, or (Ci-C3)-haloalkoxy; and

[0013] R4is hydrogen, (Ci-C6)-alkyl, (C2-C4)-alkenyl, (C3-C4)-alkynyl, (C3-C6)-cycloalkyl, (C3-C6)-cycloalkyl-(Ci-C3)-alkyl, phenyl-(Ci-C3)-alkyl, or furanyl-(Ci-C3)-alkyl, where each of the seven last-mentioned radicals is substituted with m radicals selected from the group consisting of fluorine, chlorine, bromine, cyano, CO2Ra, CONRbRc, (Ci-C2)- alkoxy, (Ci-C2)-alkoxy-(Ci-C2)-alkyl, (Ci-C3)-alkylthio, (Ci-C3)-alkylsulfinyl, (Ci-C3)- alkylsulfonyl, phenylthio, phenylsulfinyl, and phenylsulfonyl;

[0014] each Rais independently (Ci-C6)-alkyl, (C3-C4)-alkynyl, or (C3-C6)-cycloalkyl, wherein these radicals are substituted with m radicals selected from the group consisting of fluorine, chlorine, bromine, iodine, cyano, hydroxy, and (Ci-C3)-alkoxy;

[0015] each Rbis independently hydrogen, (Ci-C6)-alkyl, (C3-C4)-alkynyl, or (C3-C6)-cycloalkyl, wherein the three last-mentioned radicals are substituted with m radicals selected from the group consisting of fluorine, chlorine, bromine, iodine, cyano, hydroxy, and (Ci-C3)-alkoxy;

[0016] each Rcis independently hydrogen, (Ci-C6)-alkyl, (Ci-C2)-alkoxy, (C3-C6)-cycloalkyl, (C2-C4)- alkenyl, (Ci-C6)-alkoxycarbonyl-(Ci-C6)-alkyl, or (C2-C4)-alkynyl, wherein the six last-mentioned radicals are substituted with m radicals selected from the group consisting of fluorine, chlorine, bromine, cyano, CO2Ra, and (Ci-C2)-alkoxy; each m is independently 0, 1, 2, 3, 4, or 5;

[0017] including their agriculturally acceptable salts, stereoisomers, and tautomers;

[0018] and as component

[0019] B) a further herbicide B selected from the groups B1) to B19):

[0020] B1) Acetyl CoA Carboxylase (ACC) inhibitors;

[0021] B2) Acetolactate Synthase inhibitors (ALS) inhibitors;

[0022] B3) Photosynthesis inhibitors;

[0023] B4) Protoporphyrinogen Oxidase (PPO) inhibitors;

[0024] B5) Bleacher herbicides;

[0025] B6) Enolpyruvyl Shikimate 3-Phosphate Synthase (EPSP) inhibitors;

[0026] B7) Glutamine Synthetase inhibitors;

[0027] B8) Dihydropteroate Synthase (DHPS) inhibitors;

[0028] B9) Microtubule assembly and organization inhibitors;

[0029] B10) Very Long-Chain Fatty Acid Synthesis (VLCFA) inhibitors;

[0030] B11) Cellulose synthesis inhibitors;

[0031] B12) Uncouplers;

[0032] B13) Auxin mimics;

[0033] B14) Auxin transport inhibitors; and

[0034] B15) Dihydroorotate Dehydrogenase (DHODH) inhibitors;B16) Fatty Acid Thioesterase (FAT) inhibitors;

[0035] B17) Serine-Threonine Protein Phosphatase (STPP) inhibitors;

[0036] B18) Homogentisate Solanesyltransferase (HST) inhibitors;

[0037] B19) other herbicides selected from the group consisting of amitrole, bensulide, dazomet, dymron (daimuron), etobenzanid, flamprop, flamprop-M, flurprimidol, maleic hydrazide, metam, napropamide, napropamide-M, oleic acid, pelargonic acid, perfluidone, pyributicarb, quinoclamine, 6-chloro-4-(2,7- dimethyl-1-naphthyl)-5-hydroxy-2-methyl-pyridazin-3-one (CAS 2414510-21- 5);

[0038] including their agriculturally acceptable salts, esters, stereoisomers, and tautomers.

[0039] Alanine compounds of formula I and their agriculturally useful salts, their preparation and their use as herbicides have been described in PCT / EP2024 / 070822.

[0040] The active compounds B of groups B1) to B19) and the active compounds C (safeners mentioned below) are known herbicides and safeners, see, for example, The Compendium of Pesticide Common Names (http: / / www.alanwood.net / pesticides / ); Farm Chemicals Handbook 2000 volume 86, Meister Publishing Company, 2000; B. Hock, C. Fedtke, R. R. Schmidt, Herbizide [Herbicides], Georg Thieme Verlag, Stuttgart 1995; W. H. Ahrens, Herbicide Handbook, 7th edition, Weed Science Society of America, 1994; and K. K. Hatzios, Herbicide Handbook, Supplement for the 7th edition, Weed Science Society of America, 1998. 2,2,5-Trimethyl-3-(dichloroacetyl)-1,3-oxazolidine [CAS No. 52836-31-4] is also referred to as R-29148. 4-(dichloroacetyl)-1-oxa-4-azaspiro[4.5]decane [CAS No. 71526-07-3] is also referred to as AD-67 and MON 4660.

[0041] Compounds defined by IUPAC nomenclature, their preparation and herbicidal activity are also known (e.g. WO 16 / 162265, WO 2017 / 202768, WO 2018 / 108695, WO 2021 / 175689, WO 2021 / 013799, WO 2024 / 013015, WO2022138633, US 6403534, WO 2018 / 073157, WO 2022 / 161801, WO 2020 / 069057, WO2022 / 189495, W02024 / 078906, US20250176550, and WO 2024 / 031002).

[0042] As to the given mechanisms of action and classification of the active substances, see e.g. "HRAC, Classification of Herbicides According to Mode of Action",

[0043] http: / / www.plantprotection.org / hrac / MOA.html).The compositions of the present invention for efficiently controlling weeds have several advantages over methods applying individual Components A or B or other herbicidal combinations:

[0044] The herbicide combinations of the present invention show enhanced herbicide action (efficacy) in comparison with solo application of the individual herbicides, or a broader activity spectrum. Surprisingly, herbicide combinations of the present invention show an overadditive or synergistic effect in weed control in comparison with solo application of the individual herbicides.

[0045] While showing enhanced herbicidal action, the herbicide combinations of the present invention show low phytotoxicity in certain crops.

[0046] Through their enhanced herbicide action, the herbicide combinations of the present invention can be applied at lower rates to achieve the desired herbicidal effect, reducing the potential negative impact on the environment, including soil and water quality, beneficial organisms, and non-target plants.

[0047] The herbicide combinations of the present invention show an increased spectrum of weed control in comparison with solo application of the individual herbicides.

[0048] The herbicide combinations of the present invention reduce the likelihood of resistance development in comparison with solo application of the individual herbicides.

[0049] The herbicide combinations of the present invention may provide more effective control of herbicide resistant weeds in comparison with solo application of the individual herbicides. In general, losses of efficacy (due to resistance development) in individual plants may be compensated to a limited extent by higher application rates of herbicides

[0050] , with the potential side effect of increased crop damage (reduced selectivity). The herbicide combinations of the present invention achieve control of resistant weed

[0051] s while maintaining a low crop response, especially in monocotyledonous crops.

[0052] The herbicide combinations of the present invention may also show an accelerated action on weeds, i.e. they may affect damage of the harmful plants more quickly in comparison with solo application of the individual herbicides.

[0053] The herbicide combinations of the invention provide for an adequate duration of herbicidal activity, even under difficult weathering conditions, which allows a more flexible application and minimizes the risk of weeds escaping.

[0054] The invention relates in particular to agrochemical compositions in the form of herbicidally active agrochemical compositions comprising an herbicidally effective amount of an active compound combination comprising as component A a compound of formula I and, as component B, a further herbicide selected from the herbicides B and, if desired, the safenersC, and one or more liquid and / or solid carriers and / or one or more surfactants and, if desired, one or more further auxiliaries customary for agrochemical compositions.

[0055] The invention furthermore relates to a method for controlling unwanted vegetation, in fields where crop plants are cultivated.

[0056] The invention also relates to a method for the desiccation or defoliation of plants.

[0057] In addition, the present invention is directed to a method for efficiently controlling weeds in non-crop areas, wherein an effective amount of a combination of a component A and a component B is applied to the non-crop area, where weeds grow or will grow.

[0058] In addition, the present invention is directed to a method for efficiently controlling weeds in crop cultivation areas, wherein an effective amount of a composition as defined herein is applied to the crop cultivation area, where weeds grow or will grow.

[0059] If the compound of formula I, the herbicides B and / or the safeners C as described herein can form geometrical isomers, for example E / Z isomers, it is possible to use both, the pure isomers and mixtures thereof, in the compositions according to the invention.

[0060] If the compound of formula I, the herbicides B and / or the safeners C as described herein have one or more centers of chirality and, consequently are present as enantiomers or diastereomers, it is possible to use both, the pure enantiomers and diastereomers and their mixtures, in the compositions according to the invention, unless the stereoconfiguration of a particular compound is explicitly specified using the rules of the Cahn-lngold-Prelog convention. Specifically, compounds I may be used as their (R) or (S) isomers, i.e. compounds I.R or compound I.S or mixtures thereof, as described herein. In a preferred aspect the present invention relates to compositions comprising as component A an alanine compound of formula I.R, wherein the variables are as defined or preferably defined herein for compounds of formula I.

[0061]

[0062] If the compound of formula I, the herbicides B and / or the safeners C as described herein have ionizable functional groups, they can also be employed in the form of their agriculturally acceptable salts. Suitable are, in general, the salts of those cations and the acid addition salts of those acids whose cations and anions, respectively, have no adverse effect on the activity of the active compounds.Preferred cations are the ions of the alkali metals, preferably of lithium, sodium and potassium, of the alkaline earth metals, preferably of calcium and magnesium, and of the transition metals, preferably of manganese, copper, zinc and iron, further ammonium and substituted ammonium in which one to four hydrogen atoms are replaced by Ci-C4-alkyl, hydroxy-Ci-C4-alkyl, Ci-C4-alkoxy-Ci-C4-alkyl, hydroxy-Ci-C4-alkoxy-Ci-C4-alkyl, phenyl or benzyl, preferably ammonium, methylammonium, isopropylammonium, dimethylammonium, diethylammonium, diisopropylammonium, trimethylammonium, triethylammonium, tris(isopropyl)ammonium, heptylammonium, dodecylammonium, tetradecylammonium, tetramethylammonium, tetraethylammonium, tetrabutylammonium, 2-hydroxyethylammonium (olamine salt), 2-(2-hydroxyeth-1-oxy)eth-1-ylammonium (diglycolamine salt), di(2-hydroxyeth-1-yl)ammonium (diolamine salt), tris(2-hydroxyethyl)ammonium (trolamine salt), tris(2-hydroxypropyl)ammonium, benzyltrimethylammonium, benzyltriethylammonium, / V, / V, / V-trimethylethanolammonium (choline salt), furthermore phosphonium ions, sulfonium ions, preferably tri(Ci-C4-alkyl)sulfonium, such as trimethylsulfonium, and sulfoxonium ions, preferably tri(Ci-C4-alkyl)sulfoxonium, and finally the salts of polybasic amines such as / V, / V-bis-(3-aminopropyl)methylamine and diethylenetriamine.

[0063] Anions of useful acid addition salts are primarily chloride, bromide, fluoride, iodide, hydrogensulfate, methylsulfate, sulfate, dihydrogenphosphate, hydrogenphosphate, nitrate, bicarbonate, carbonate, hexafluorosilicate, hexafluorophosphate, benzoate and the anions of Ci-C4-alkanoic acids, preferably formate, acetate, propionate and butyrate.

[0064] As used herein, the terms “crop plants” and “cultivated plants “are synonyms.

[0065] As used herein, the terms "undesirable vegetation" and "harmful plants" are synonyms. As used herein, “pre-emergence” refers to an herbicide treatment that is applied to an area before the crop has emerged from the ground or growing medium.

[0066] As used herein, “post-emergence” refers to an herbicide treatment that is applied to an area after the crop has germinated and emerged from the ground or growing medium.

[0067] The terms used for organic groups in the definition of the variables are, for example the expression "alkyl", collective terms which represent the individual members of these groups of organic units.

[0068] The prefix (Cx-Cy)- denotes the number of possible carbon atoms in the aliphatic group in the case.

[0069] halogen: fluorine, chlorine, bromine or iodine, especially fluorine, chlorine or bromine; alkyl and the alkyl moieties of composite groups such as alkoxy, alkylamino, alkylthio, alkoxycarbonyl: saturated straight-chain or branched hydrocarbon radicals having 1 to 10 carbon atoms, preferably (Ci-C6)-alkyl or (Ci-C4)-alkyl, such as methyl, ethyl, propyl,1 -methylethyl, butyl, 1 -methylpropyl, 2-methylpropyl, 1,1 -dimethylethyl, pentyl, 1 -methylbutyl, 2-methylbutyl, 3-methylbutyl, 2,2-dimethylpropyl, 1 -ethylpropyl, hexyl, 1 ,1 -dimethylpropyl, 1,2-dimethylpropyl, 1 -methylpentyl, 2-methylpentyl, 3-methylpentyl, 4-methylpentyl, 1,1-dimethylbutyl, 1,2-dimethylbutyl, 1,3-dimethylbutyl, 2,2-dimethylbutyl, 2,3-dimethylbutyl, 3,3-dimethylbutyl, 1 -ethylbutyl, 2-ethylbutyl, 1 ,1 ,2-trimethylpropyl, 1,2,2-trimethylpropyl, 1-ethyl-1-methylpropyl and 1-ethyl-2-methylpropyl; heptyl, octyl, 2-ethylhexyl and positional isomers thereof; nonyl, decyl and positional isomers thereof;

[0070] haloalkyl: straight-chain or branched alkyl groups having 1 to 10 carbon atoms (as mentioned above), preferably (Ci-C6)-haloalkyl or (Ci-C3)-haloalkyl, where some or all the hydrogen atoms in these groups are replaced by halogen atoms as mentioned above. In one embodiment, the alkyl groups are substituted at least once or completely by a particular halogen atom, preferably fluorine, chlorine or bromine. In a further embodiment, the alkyl groups are partially or fully halogenated by different halogen atoms; in the case of mixed halogen substitutions, the combination of chlorine and fluorine is preferred. Particular preference is given to (Ci-C3)-haloalkyl, such as chloromethyl, bromomethyl, dichloromethyl, trichloromethyl, fluoromethyl, difluoromethyl, trifluoromethyl, chlorofluoromethyl, dichlorofluoromethyl, chlorodifluoromethyl, 1 -chloroethyl, 1 -bromoethyl, 1 -fluoroethyl, 2-fluoroethyl, 2,2-difluoroethyl, 2,2,2-trifluoroethyl, 2-chloro-2-fluoroethyl, 2-chloro-2,2-difluoroethyl, 2,2-dichloro-2-fluoroethyl, 2,2,2-trichloroethyl, pentafluoroethyl or 1,1,1-trifluoroprop-2-yl;

[0071] alkenyl and the alkenyl moieties in composite groups, such as alkenyloxy: unsaturated straight-chain or branched hydrocarbon radicals having 2 to 10 carbon atoms and one double bond in any position. According to the invention, it may be preferred to use small alkenyl groups, such as (C2-C4)-alkenyl; examples of C2-C6-alkenyl groups are: ethenyl, 1-propenyl, 2-propenyl, 1-methylethenyl, 1-butenyl, 2-butenyl, 3-butenyl, 1-methyl-1 -propenyl, 2-methyl-1 -propenyl, 1-methyl-2-propenyl, 2-methyl-2-propenyl, 1 -pentenyl, 2-pentenyl, 3-pentenyl, 4-pentenyl, 1-methyl-1-butenyl, 2-methyl-1-butenyl, 3-methyl- 1-butenyl, 1-methyl-2-butenyl, 2-methyl-2-butenyl, 3-methyl-2-butenyl, 1-methyl-3-butenyl, 2-methyl-3-butenyl, 3-methyl-3-butenyl, 1,1-dimethyl-2-propenyl, 1,2-dimethyl-1 -propenyl, 1,2-dimethyl-2-propenyl, 1-ethyl-1 -propenyl, 1

[0072] -ethyl-2-propenyl, 1-hexenyl, 2-hexenyl, 3-hexenyl, 4-hexenyl, 5-hexenyl, 1-methyl-1-pentenyl, 2-methyl-1-pentenyl, 3-methyl- 1 -pentenyl, 4-methyl-1 -pentenyl, 1-methyl-2-pentenyl, 2-methyl-2-pentenyl, 3-methyl-2-pentenyl, 4-methyl-2-pentenyl, 1-methyl-3-pentenyl, 2-methyl-3-pentenyl, 3-methyl-3-pentenyl, 4-methyl-3-pentenyl, 1-methyl-4-pentenyl, 2-methyl-4-pentenyl, 3-methyl-4-pentenyl, 4-methyl-4-pentenyl, 1,1-dimethyl-2-butenyl, 1,1-dimethyl-3-butenyl, 1,2-dimethyl-1-butenyl, 1,2-dimethyl-2-butenyl, 1,2-dI

[0073] methyl-3-butenyl, 1,3-dimethyl-1-butenyl, 1,3-dimethyl-2-butenyl, 1,3-dimethyl-3-butenyl, 2,2-dimethyl-3-butenyl, 2,3-dimethyl-1-butenyl, 2,3-dimethyl-2-butenyl, 2,3-dimethyl-3-butenyl, 3,3-dimethyl-1-butenyl, 3,3-dimethyl-2-butenyl, 1 -ethyl-1 -butenyl, 1-ethyl-2-butenyl, 1-ethyl-3-butenyl, 2-ethyl-1 -butenyl, 2-ethyl-2-butenyl, 2-ethyl-3-butenyl, 1 ,1 ,2-trimethyl-2-propenyl, 1-ethyl-1-methyl-2-propenyl, 1-ethyl-2-methyl-1 -propenyl and 1-ethyl-2-methyl-2-propenyl; alkynyl and the alkynyl moieties in composite groups: straight-chain or branched hydrocarbon groups having 2 to 10 carbon atoms and one triple bond in any position, for example C2-C6-alkynyl, such as ethynyl, 1-propynyl, 2-propynyl, 1-butynyl, 2-butynyl, 3-butynyl, 1-methyl-2-propynyl, 1 -pentynyl, 2-pentynyl, 3-pentynyl, 4-pentynyl, 1-methyl-2-butynyl, 1-methyl-3-butynyl, 2-methyl-3-butynyl, 3-methyl-1-butynyl, 1 ,1-dimethyl-2-propynyl, 1-ethyl-2-propynyl, 1-hexynyl, 2-hexynyl, 3-hexynyl, 4-hexynyl, 5-hexynyl, 1-methyl-2-pentynyl, 1-methyl-3-pentynyl, 1-methyl-4-pentynyl, 2-methyl-3-pentynyl, 2-methyl-4-pentynyl, 3-methyl-1 -pentynyl, 3-methyl-4-pentynyl, 4-methyl-1 -pentynyl, 4-methyl-2

[0074] pentynyl, 1,1-dimethyl-2-butynyl, 1,1-dimethyl-3-butynyl, 1,2-dimethyl-3-butynyl, 2,2-dimethyl-3-butynyl, 3,3-dimethyl-1-butynyl, 1-ethyl-2-butynyl, 1 -ethyl-3-butynyl, 2-ethyl-3-butynyl and 1 -ethyl-1 -methyl-2-propynyl;

[0075] cycloalkyl and the cycloalkyl moieties in composite groups: mono- or bicyclic saturated hydrocarbon groups having 3 to 10, in particular 3 to 6, carbon ring members. Examples for C3-C6-cycloalkyl are: cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl or cyclooctyl. Examples of bicyclic radicals comprise bicyclo[2.2.1]heptyl, bicyclo[3.1.1 ]heptyl, bicyclo[2.2.2]octyl and bicyclo[3.2.1]octyl;

[0076] halocycloalkyl and the halocycloalkyl moieties in composite groups: monocyclic saturated hydrocarbon groups having 3 to 10 carbon ring members (as mentioned above) in which some or all of the hydrogen atoms may be replaced by halogen atoms as mentioned above, in particular fluorine, chlorine and bromine;

[0077] cycloalkenyl: monocyclic monounsaturated hydrocarbon groups having 3 to 10, 3 to 8, 3 to 6, preferably 5 to 6, carbon ring members, such as cyclopenten-1-yl, cyclopenten-3-yl, cyclohexen-1-yl, cyclohexen-3-yl, cyclohexen-4-yl and the like;

[0078] alkoxy: an alkyl group as defined above, which is attached via an oxygen, preferably having 1 to 10, more preferably 1 to 6 or 1 to 4 carbon atoms. Examples are: methoxy, ethoxy, n-propoxy, 1 -methylethoxy, butoxy, 1 -methylpropoxy, 2-methylpropoxy or 1,1 -dimethylethoxy, and also for example, pentoxy, 1 -methylbutoxy, 2-methylbutoxy, 3-methylbutoxy, 1,1-dimethylpropoxy, 1 ,2-dimethylpropoxy, 2,2-dimethylpropoxy, 1 -ethylpropoxy, hexoxy, 1-methylpentoxy, 2-methylpentoxy, 3-methylpentoxy, 4-methylpentoxy, 1,1 -dimethylbutoxy,1 ,2-dimethylbutoxy, 1 ,3-dimethylbutoxy, 2,2-dimethylbutoxy, 2,3-dimethylbutoxy, 3,3-dimethylbutoxy, 1 -ethylbutoxy, 2-ethylbutoxy, 1,1,2-trimethylpropoxy, 1 ,2,2-trimethylpropoxy, 1 -ethyl-1 -methylpropoxy or 1-ethyl-2-methylpropoxy;

[0079] haloalkoxy: alkoxy as defined above, where some or all the hydrogen atoms in these groups are replaced by halogen atoms as described above under haloalkyl, in particular by fluorine, chlorine or bromine. Examples are OCH2F, OCHF2, OCF3, OCH2CI, OCHCI2, OCCI3, chlorofluoromethoxy, dichlorofluoromethoxy, chlorodifluoromethoxy, 2-fluoroethoxy, 2-chloroethoxy, 2-bromoethoxy, 2-iodoethoxy, 2,2-difluoroethoxy, 2,2,2-trifluoroethoxy, 2-chloro-2-fluoroethoxy, 2-chloro-2,2-difluoroethoxy, 2,2-dichloro-2-fluoroethoxy, 2,2,2-trichloroethoxy, OC2F5, 2-fluoropropoxy, 3-fluoropropoxy, 2,2-difluoropropoxy, 2,3-difluoropropoxy, 2-chloropropoxy, 3-chloropropoxy, 2,3-dichloropropoxy, 2-bromopropoxy, 3-bromopropoxy, 3,3,3-trifluoropropoxy, 3,3,3-trichloropropoxy, OCH2-C2F5, OCF2-C2F5, 1-(CH2F)-2-fluoroethoxy, 1-(CH2CI)-2-chloroethoxy, 1-(CH2Br)-2-bromoethoxy, 4-fluorobutoxy, 4-chlorobutoxy, 4-bromobutoxy or nonafluorobutoxy; and also 5-fluoropentoxy, 5-chloropentoxy, 5-bromopentoxy, 5-iodopentoxy, undecafluoropentoxy, 6-fluorohexoxy, 6-chlorohexoxy, 6-bromohexoxy, 6-iodohexoxy or dodecafluorohexoxy;

[0080] (Ci-C6)-alkoxycarbonyl-(Ci-C6)-alkyl: a (Ci-C6)alkyl-O-C(=O)- group bound to the remainder of the molecule via a divalent -(Ci-C6)-alkylene linker;

[0081] (Ci-C3)-alkylthio, (Ci-C3)-alkylsulfinyl, (Ci-C3)-alkylsulfonyl: a (Ci-C3)-alkyl group bound to the remainder of the molecule via a divalent linker group -S-, -S(=O)-, or -S(=O)2-, respectively, phenylthio, phenylsulfinyl, phenylsulfonyl: a phenyl ring bound to the remainder of the molecule via a divalent linker group -S-, -S(=O)-, or-S(=0)2-, respectively.

[0082] (C3-C6)-cycloalkyl-(Ci-C3)-alkyl: a (C3-C6)-cycloalkyl ring bound to the remainder of the molecule via a divalent -(Ci-C3)-alkylene linker;

[0083] phenyl-(Ci-C3)-alkyl, furanyl-(Ci-C3)-alkyl: a phenyl or furanyl ring bound to the remainder of the molecule via a divalent -(Ci-C3)-alkylene linker;

[0084] a furanyl radical: 2-furyl or 3-furyl;

[0085] cyano: a CEN group bound to the remainder of the molecule via the carbon atom;

[0086] According to a preferred embodiment of the invention preference is given to those compositions comprising an alanine compound of formula I, wherein

[0087] R1is halogen;

[0088] R2is hydrogen;

[0089] R3is halogen; and

[0090] R4is hydrogen, (Ci-C6)-alkyl, or (C3-C6)-cycloalkyl.According to a preferred embodiment of the invention preference is given to those compositions comprising a alanine compound of formula I, wherein

[0091] R1is fluorine, chlorine, or bromine;

[0092] R2is hydrogen;

[0093] R3is fluorine or chlorine; and

[0094] R4is hydrogen or (Ci-C6)-alkyl.

[0095] According to another preferred embodiment of the invention the composition comprises as component A a compound selected from the group consisting of compounds 1-1 to 1-14 depicted below, or their agriculturally acceptable salts, stereoisomers, and tautomers.

[0096]

[0097] Compound 1-1:

[0098] methyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylate

[0099]

[0100] Compound I-2:

[0101] (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylic acid

[0102]

[0103] Compound I-3:

[0104] ethyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylate

[0105]

[0106] Compound I-4:isopropyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate

[0107]

[0108] Compound I-5:

[0109] 2-methoxyethyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate

[0110]

[0111] Compound I-6:

[0112] isobutyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylate

[0113]

[0114] I-7

[0115] Compound I-7:

[0116] methyl (1S,4R)-4-[[(2R)-2-[(3-chloro-5-fluoro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate

[0117]

[0118] I-8

[0119] Compound I-8:

[0120] methyl (1S,4R)-4-[[(2R)-2-[(3,5-difluorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylate

[0121]

[0122] Compound I-9:methyl (1S,4R)-4-[[(2R)-2-[(3-bromo-5-chloro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate

[0123]

[0124] Compound 1-10:

[0125] methyl (1S,4R)-4-[[(2R)-2-[(3-bromo-5-fluoro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate

[0126]

[0127] 1-11 Compound 1-11:

[0128] (1S,4R)-4-[[(2R)-2-[(3-chloro-5-fluoro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylic acid

[0129]

[0130] 1-12 Compound 1-12:

[0131] (1S,4R)-4-[[(2R)-2-[(3,5-difluorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylic acid

[0132]

[0133] Compound 1-13:

[0134] (1S,4R)-4-[[(2R)-2-[(3-bromo-5-chloro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylic acid

[0135]

[0136] Compound 1-14:(1S,4R)-4-[[(2R)-2-[(3-bromo-5-fluoro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1-carboxylic acid

[0137] In one embodiment the compositions as claimed in claim 1 comprising as component A an alanine compound selected from the group consisting of compounds 1-1, I-2, I-7, I-8 and I-9, particularly compound 1-1 , including their agriculturally acceptable salts, stereoisomers, and tautomers.

[0138] Examples of herbicides B which can be used according to the present invention are:

[0139] B1) Acetyl CoA Carboxylase (ACC) inhibitors, comprising

[0140] Aryloxyphenoxy-propionates (FOPs) such as clodinafop, cyhalofop, diclofop, fenoxaprop, fenoxaprop-P, fluazifop, fluazifop-P, haloxyfop, haloxyfop-P, metamifop, propaquizafop, quizalofop, and quizalofop-P;

[0141] Cyclohexanediones (DIMs) such as alloxydim, butroxydim, clethodim, cloproxydim, cycloxydim, profoxydim, sethoxydim, tepraloxydim, feproxydim, metproxybicyclone and tralkoxydim; and

[0142] Phenylpyrazolines such as pinoxaden;

[0143] B2) Acetolactate Synthase (ALS) inhibitors, comprising

[0144] Imidazolinones such as imazamox, imazapic, imazapyr, imazaquin and imazethapyr; Pyrimidinyl benzoates such as bispyribac, pyribenzoxim, pyriftalid, pyriminobac, pyrithiobac, pyriflubenzoxim;

[0145] Sulfonanilides such as pyrimisulfan and triafamone;

[0146] Sulfonylureas such as amidosulfuron, azimsulfuron, bensulfuron, chlorimuron, chlorsulfuron, cinosulfuron, cyclosulfamuron, ethametsulfuron, ethoxysulfuron, flazasulfuron, flucetosulfuron, flupyrsulfuron, foramsulfuron, halosulfuron, imazosulfuron, iodosulfuron, mesosulfuron, metazosulfuron, metsulfuron, nicosulfuron, orthosulfamuron, oxasulfuron, primisulfuron, propyrisulfuron, prosulfuron, pyrazosulfuron, rimsulfuron, sulfometuron, sulfosulfuron, thifensulfuron, triasulfuron, tribenuron, trifloxysulfuron, triflusulfuron, and tritosulfuron;

[0147] Triazolinones such as flucarbazone, propoxycarbazone, and thiencarbazone; and Triazolopyrimidines of type 1 and 2 such as cloransulam, diclosulam, florasulam, flumetsulam, metosulam, penoxsulam, and pyroxsulam;

[0148] B3) Photosynthesis inhibitors, comprising

[0149] B3.1) Inhbition of Photosynthesis at PSII - Serine 264 binders, comprising:

[0150] Amides such as pentanochlor and propanil;

[0151] Phenylcarbamates such as chlorprocarb, desmedipham, phenisopham, andphenmedipham;

[0152] Pyridazinones such as brompyrazon and chloridazon (pyrazon);

[0153] Triazines such as ametryne, atraton, atrazine, aziprotryne (aziprotryn), chlorazine, CP 17029, cyanazine, cyprazine, desmetryne, dimethametryn, dipropetryn, eglinazine-ethyl, ipazine, methoprotryne (methoprotryn), procyazine, proglinazine-ethyl, prometryne, propazine, sebuthylazine, secbumeton, simazine, simetryne, terbumeton, terbuthylazine, terbutryne and trietazine;

[0154] Triazinones such as ethiozin, hexazinone, isomethiozin, metamitron, and metribuzin;

[0155] Triazolinones such as amicarbazone;

[0156] Uraciles such as bromacil, isocil, lenacil and terbacil;

[0157] Ureas such as benzthiazuron, bromuron, buturon, chlorbromuron, chlorotoluron, chloroxuron, difenoxuron, dimefuron, diuron, ethidimuron, fenuron, fluometuron, fluothiuron, isoproturon, isouron, linuron, methabenzthiazuron, metobenzuron, metobromuron, metoxuron, monolinuron, neburon, parafluron, siduron, tebuthiuron and thiadiazuron;

[0158] B3.2) Inhbition of Photosynthesis at PSII - Histidine 215 binders, comprising Benzothiadiazinone such as bentazon and

[0159] Phenyl-pyridazines such as pyridate;

[0160] B3.3) Inhbition of Photosynthesis at PSII - Histidine 215 Binders and Uncouplers, comprising

[0161] Nitriles such as bromofenoxim, bromoxynil, and ioxynil;

[0162] B3.4) PS I Electron Diversion inhibitors, comprising

[0163] Pyridiniums such as cyperquat, diquat, morfamquat, and paraquat;

[0164] B3.5) others such as 4-hydroxy-1-methoxy-5-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one; (CAS 2023785-78-4), 4-hydroxy-1 ,5-dimethyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 2023785-79-5), 5-ethoxy-4-hydroxy-1-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 1701416-69-4), 4-hydroxy-1-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 1708087-22-2), 4-hydroxy-1 ,5-dimethyl-3-[1-methyl-5-(trifluoromethyl)pyrazol-3-yl]imidazolidin-2-one (CAS 2023785-80-8

[0165] ), and 1 -(5-tert-but

[0166] ylisoxazol-3-yl)-4-ethoxy-5-hydroxy-3-methyl-imidazolidin-2-one (CAS 1844836-64-1), B4) Protoporphyrinogen Oxidase (PPO) inhibitors, comprising

[0167] Diphenyl ethers such as acifluorfen, bifenox, chlomethoxyfen, chlornitrofen, fluorodifen, fluoroglycofen, fluoronitrofen, fomesafen, lactofen, nitrofen, and oxyfluorfen;

[0168] N-Phenyl-imides such as butafenacil, chlorphthalim, epyrifenacil, flufenoximacil, flumiclorac, flumioxazin, flumipropyn, fluthiacet, isoxafenacil, pentoxazone, saflufenacil, tiafenacil, andtrifludimoxazin,

[0169] N-Phenyl-oxadiazolones such as oxadiargyl and oxadiazon;

[0170] N-Phenyl-triazolinones such as azafenidin, carfentrazone, and sulfentrazone;

[0171] Phenylpyrazoles such as pyraflufen; and

[0172] others such as pyraclonil, cyclopyranil, 2-[2-[[3-chloro-6-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-l (2H)-pyrimidinyl]-5-fluoro-2-pyridinyl]oxy]phenoxy]-acetic acid methyl ester (CAS 2158274-96-3), fendioxypyracil, methyl 2-[[3-[2-chloro-5-[4-(difluoromethyl)-3-methyl-5-oxo-1,2,4-triazol-1-yl]-4-fluoro-phenoxy]-2-pyridyl]oxy]acetate (CAS 2271389-22-9), ethyl 2-[[3-[2-chloro-5-[4-(difluoromethyl)-3-methyl-5-oxo-1,2,4-triazol-1-yl]-4-fluoro-phenoxy]-2-pyridyl]oxy]acetate (CAS 2230679-62-4), 2-[[3-[[3-chloro-6-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-l (2H)-pyrimidinyl]-5-fluoro-2-pyridinyl]oxy]-2-pyridinyl]oxy] acetic acid ethyl ester (CAS 2158274-56-5); methyl 2-[2-[2-bromo-5-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1(2H)-pyrimidinyl]-4-fluorophenoxy]phenoxy]-2-methoxyacetate (CAS 2703795-90-6), pyridin-2-ylmethyl [(3-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}pyridin-2-yl)oxy]acetate (CAS 2591611-15-1), 2-methoxyethyl [(3-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}pyridin-2-yl)oxy]acetate (CAS 2591611-05-9), 2-methoxyethyl [(3-{2-cyano-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}pyridin-2-yl)oxy]acetate (CAS 2591611-20-8), cyanomethyl [(3-{2-bromo-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}pyridin-2-yl)oxy]acetate (CAS 2591610-84-1), 2-ethoxy-2-oxoethyl 1-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}cyclopropanecarboxylate (CAS 1101020-13-6), 2-methoxy-2-oxoethyl 1-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}cyclopropanecarboxylate (CAS 1101021-05-9), {[(1-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}cyclopropyl)carbonyl]oxy} acetic acid (CAS 1101020-12-5), cyclopropylmethyl-(2-{2-chlor-4-fluor-5-[3-methyl-2,6-dioxo-4-(trifluormethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}phenoxy)acetat (CAS 3035314-60-1), (2-methoxy-1 ,1-dimethyl-2-oxo-ethyl) 2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)pyrimidin-1-yl]benzoate (CAS 651044-62-1), (2-ethoxy-1 ,1-dimethyl-2-oxo-ethyl) 2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)pyrimidin-1-yl]benzoate (CAS 2786712-36-3),

[0173] B5) Bleacher herbicides, comprising

[0174] B5.1) Phytoene Desaturase (PDS) inhibitors, comprising

[0175] Diphenyl heterocycles such as fluridone and flurtamone;

[0176] N-Phenyl heterocycles such as flurochloridone and norflurazon;Phenyl ethers such as beflubutamid, diflufenican, flufenazopyr and picolinafen; and others such as rimisoxafen and (3S,4S)-N-(5-chloro-1-methyl-1H-pyrazol-4-yl)-4-(3,5-dimethylphenyl)-1-methyl-2-oxo-3-pyrrolidinecarboxamide (CAS 3056779-02-0);

[0177] B5.2) Hydroxyphenyl Pyruvate Dioxygenase (HPPD) inhibitors, comprising Isoxazoles such as isoxaflutole;

[0178] Pyrazoles such as benzofenap, pyrasulfotole, pyrazolynate, pyrazoxyfen, tolpyralate, pyraquinate, prochlorosulfone, and topramezone;

[0179] Triketones such as benzobicyclon, bicyclopyrone, fenquinotrione, mesotrione, sulcotrione, tefuryltrione, and tembotrione;

[0180] others such flusulfinam, iptriazopyrid, oxotrione , bipyrazone, fenpyrazone, cypyrafluone, tripyrasulfone, benquitrione, dioxopyritrione;

[0181] B5.3) Solanesyl Diphosphate Synthase (SDPS) inhibitors, comprising

[0182] Diphenyl ethers such as aclonifen;

[0183] B5.4) Deoxy-D-Xylulose Phosphate Synthase (DXPS) inhibitors, comprising Isoxazolidinones such as bixlozone, clomazone, and broclozone;

[0184] B5.5) others such as flumeturon, and 2-chloro-3-methylsulfanyl-N-(1-methyltetrazol-5-yl)-4-(trifluoromethyl)benzamide (CAS 1361139-71-0); 2-chloro- / V-(5-methyl-1 ,3,4-oxadiazol-2-yl)-3-[(R)-methylsulfinyl]-4-(trifluoromethyl)benzamide (CAS 3084428-80-5), 2-chloro- / V-(5-methyl-1,3,4-oxadiazol-2-yl)-3-[(S)-methylsulfinyl]-4-(trifluormethyl)benzamid (CAS 2833716-54-2);

[0185] B6) Enolpyruvyl Shikimate Phosphate Synthase (EPSPS) inhibitors, comprising Glycines such as glyphosate;

[0186] B7) Glutamine Synthase inhibitors, comprising

[0187] Phosphinic acids such as glufosinate, and glufosinate-P;

[0188] B8) Dihydropteroate Synthase (DHPS) inhibitors, comprising

[0189] Carbamates such as asulam;

[0190] B9) Microtubule Assembly and Organization inhibitors, comprising

[0191] B9.1) Microtubule Assembly inhibitors, comprising:

[0192] Benzamides such as propyzamide (pronamide);

[0193] Benzoic acids such as chlorthal;

[0194] Dinitroanilines such as benfluralin (benefin), butralin, dinitramine, ethalfluralin, fluchloralin, isopropalin, nitralin, oryzalin, pendimethalin, prodiamine, profluralin and trifluralin;

[0195] Phosphoramidates such as butamiphos;

[0196] Pyridines such as dithiopyr;

[0197] Isoxazolines such as icafolin;

[0198] B9.2) Microtubule Organization inhibitors, comprising:Carbamates such as carbetamide, chlorbufam, chlorpropham, propham and swep;

[0199] B10) Very Long-Chain Fatty Acid Synthesis (VLCFA) inhibitors, comprising Azolyl-carboxamides such as cafenstrole, fentrazamide and ipfencarbazone;

[0200] Benzofuranes such as benfuresate and ethofumesate;

[0201] a-Chloroacetamides such as acetochlor, alachlor, butachlor, butenachlor, delachlor, diethatyl-ethyl, dimethachlor, dimethenamid, dimethenamid-P, metazachlor, metolachlor, metolachlor-S, pethoxamid, pretilachlor, propisochlor, prynachlor and thenylchlor;

[0202] Isoxazolines such as fenoxasulfone and pyroxasulfone;

[0203] Oxiranes such as indanofan;

[0204] a-Oxyacetamides such as flufenacet and mefenacet;

[0205] a-Thioacetamides such as anilofos;

[0206] Thiocarbamates such as butylate, cycloate, EPTC, esprocarb, molinate, pebulate, prosulfocarb, thiobencarb (benthiocarb), tiocarbazil, and triallate; and

[0207] others such as dimesulfazet;

[0208] B11) Cellulose synthesis inhibitors, comprising chlorthiamid, dichlobenil, flupoxam, indaziflam, isoxaben, triaziflam, A / 2-(3-Chloro-5,6-difluoro-2-methoxyphenyl)-6-(1 -fluoro- 1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813322-23-3), A / 2-(3-Bromo-5,6-difluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1 ,3,5-triazine-2,4-diamine (CAS 2813322-22-2) and A / 2-(3-Chloro-4,5,6-trifluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813323-76-9);

[0209] B12) Uncouplers, comprising dinosam, dinoterb, etinofen, and medinoterb;

[0210] B13) Auxin mimics, comprising

[0211] 6-Arylpicolinates such as florpyrauxifen, halauxifen, fluchloraminopyr and indolauxipyr;

[0212] 6-Chloropicolinates such as aminopyralid, clopyralid, and picloram;

[0213] Benzoates such as dicamba, and TBA (2,3,6);

[0214] Phenoxy-carboxylates such as 2,4-D, clacyfos, 2,4-DB, clomeprop, dichlorprop, dichlorprop-P, fenoprop, MCPA, MCPB, mecoprop, mecoprop-P, 5-[2-(2,4-dichlorophenoxy)acetyl]-oxypentyl 2-(2,4-dichlorophenoxy)acetate (CAS 3028468-74-5), 2-[2-[2-(2,4-dichlorophenoxy)-acetyl]oxyethoxy]ethyl 2-(2,4-dichlorophenoxy)acetate (CAS 160802-08-4);

[0215] Phenyl carboxylates such as chlorfenac (fenac), and chlorfenprop;

[0216] Pyridyloxy-carboxylates such as fluroxypyr and triclopyr;

[0217] Pyrimidine-carboxylates such as aminocyclopyrachlor;

[0218] Quinoline-carboxylates such as quinclorac and quinmerac; and

[0219] others such as benazolin and flufenauxirim;

[0220] B14) Auxin transport inhibitors, comprisingAryl-carboxylates such as diflufenzopyr;

[0221] B15) Dihydroorotate Dehydrogenase (DHODH) inhibitors, comprising

[0222] Aryl pyrrolidinone anilides such as dimepyrolimet, tetflupyrolimet and 3-ethyl-2-[3-(trifluoromethyl)phenoxy]-6-[3-(trifluoromethyl)-1H-1 ,2,4-triazol-1-yl]pyridine (CAS 3052252-60-2);

[0223] B16) Fatty Acid Thioesterase (FAT) inhibitors, comprising

[0224] Benzyl ethers such as cinmethylin, cinflubrolin and methiozolin;

[0225] Benzamides such as bromobutide, cumyluron, oxaziclomefone, and tebutam;

[0226] B17) Serine-Threonine Protein Phosphatase (STPP) inhibitors such as endothal;

[0227] B18) Homogentisate Solanesyltransferase (HST) inhibitors, comprising cyclopyrimorate;

[0228] B19) other herbicides selected from the group consisting of amitrole, bensulide, dazomet, dymron (daimuron), etobenzanid, flamprop, flamprop-M, flurprimidol, maleic hydrazide, metam, napropamide, napropamide-M, oleic acid, pelargonic acid, perfluidone, pyributicarb, quinoclamine, 6-chloro-4-(2,7-dimethyl-1-naphthyl)-5-hydroxy-2-methyl-pyridazin-3-one (CAS 2414510-21-5);

[0229] Composition components B (collectively herein referred to as herbicides B) and C (safeners) having a carboxyl group can be employed in the form of the acid, in the form of an agriculturally suitable salt as mentioned above or else in the form of an agriculturally acceptable derivative in the compositions according to the invention. Examples of agriculturally acceptable salts and esters of herbicidal compounds B mentioned herein above are listed below:

[0230] 2,3,6-TBA salts: 2,3,6-TBA-dimethylammonium, 2,3,6-TBA-lithium, 2,3,6-TBA-potassium and 2,3,6-TBA-sodium;

[0231] 2.4-D salts: 2,4-D-ammonium, 2,4-D-dimethylammonium, 2,4-D-diethylammonium, 2,4-D-diethanolammonium (2,4-D-diolamine), 2,4-D-triethanolammonium, 2,4-D-isopropylammonium, 2,4-D-triisopropanolammonium, 2,4-D-heptylammonium, 2,4-D-dodecylammonium, 2,4-D-tetradecylammonium, 2,4-D-triethylammonium, 2,4-D-tris(2-hydroxypropyl)ammonium, 2,4-D-tris(isopropyl)ammonium, 2,4-D-trolamine, 2,4-D-lithium, 2.4-D-sodium and 2,4-D-N,N,N-trimethylethanolammonium (2,4-D choline);

[0232] 2.4-D esters: 2,4-D-butotyl, 2,4-D-2-butoxypropyl, 2,4-D- 3- butoxy propyl, 2,4-D-butyl, 2,4-D-ethyl, 2,4-D-ethylhexyl, 2,4-D-isobutyl, 2,4-D-isooctyl, 2,4-D-isopropyl, 2,4-D-meptyl, 2,4-D-methyl, 2,4-D-octyl, 2,4-D-pentyl, 2,4-D-propyl, 2,4-D-tefuryl and clacyfos;

[0233] 2.4-DB salts: 2,4-DB-sodium, 2,4-DB-potassium and 2,4-DB-dimethylammonium;

[0234] 2,4-DB esters: 2,4-DB-butyl and 2,4-DB-isoctyl;

[0235] acifluorfen salts: acifluorfen-sodium;alloxydim salts: alloxydim-sodium;

[0236] aminocyclopyrachlor salts: aminocyclopyrachlor-dimethylammonium, aminocyclopyrachlor-triisopropanolammonium, aminocyclopyrachlor-sodium and aminocyclopyrachlor-potassium;

[0237] aminocyclopyrachlor esters: aminocyclopyrachlor-methyl;

[0238] aminopyralid salts: aminopyralid-potassium, aminopyralid-dimethylammonium, and aminopyralid-tris(2-hydroxypropyl)ammonium (tripromine);

[0239] bentazon salts: bentazon-sodium

[0240] bispyribac salts: bispyribac-sodium

[0241] bromoxynil salts: bromoxynil-potassium and bromoxynil-sodium;

[0242] bromoxynil esters: bromoxynil-butyrate, bromoxynil-heptanoate, and bromoxynil-octanoate;

[0243] chloramben salts: chloramben-ammonium, chloramben-diolamine, chloramben-methylammonium and chloramben-sodium;

[0244] chloramben esters: chloramben-methyl;

[0245] clopyralid salts: clopyralid-potassium, clopyralid-olamine and clopyralid-tris-(2-hydroxypropyl)ammonium;

[0246] clopyralid ester: clopyralid-methyl;

[0247] dicamba salts: dicamba-sodium, dicamba-potassium, dicamba-methylammonium, dicamba-dimethylammonium, dicamba-isopropylammonium, dicamba-diglycolamine, dicamba-olamine, dicamba-diolamine, dicamba-trolamine, dicamba- / V, / V-b / s-(3-aminopropyl)methylamine and dicamba-diethylenetriamine;

[0248] dicamba esters: dicamba-methyl and dicamba-butotyl;

[0249] dichlorprop salts: dichlorprop-sodium, dichlorprop-potassium and dichlorpropdimethylammonium;

[0250] dichlorprop esters: dichlorprop-butotyl and dichlorprop-isoctyl;

[0251] diflufenzopyr salts: diflufenzopyr-sodium;

[0252] diquat salts: diquat-dibromide;

[0253] flucarbazone salts: flucarbazone-sodium

[0254] flupyrsulfuron salts: flupyrsulfuron-methyl-Na

[0255] fluroxypyr esters: fluroxypyr-meptyl and fluroxypyr-2-butoxy-1-methylethyl;

[0256] glufosinate and glufosinate-P salts: glufosinate-ammonium, glufosinate-P-ammonium; glyphosate salts: glyphosate-ammonium, glyphosate-diammonium, glyphoste-dimethylammonium, glyphosate-isopropylammonium, glyphosate-potassium, glyphosate-sodium, glyphosate-trimesium (sulfosate) as well as the ethanolamine and diethanolamine salts;imazamox salts: imazamox-ammonium;

[0257] imazapic salts: imazapic-ammonium and imazapic-isopropylammonium;

[0258] imazapyr salts: imazapyr-ammonium and imazapyr-isopropylammonium;

[0259] imazaquin salts: imazaquin-ammonium;

[0260] imazethapyr salts: imazethapyr-ammonium and imazethapyr-isopropylammonium;

[0261] iodosulfuron salts: iodosulfuron-methyl-Na

[0262] ioxonil salts: ioxonil-potassium and ioxonil-sodium;

[0263] ioxonil ester: ioxonil-octanoate;

[0264] MCPA salts: MCPA-dimethylammonium, MCPA-diolamine, MCPA-isopropylammonium, MCPA-olamine, MCPA-potassium, MCPA-sodium and MCPA-trolamine;

[0265] MCPA esters: MCPA-methyl, MCPA-ethyl, MCPA-thioethyl, MCPA-2-ethylhexyl, MCPA-isobutyl, MCPA-isoctyl, MCPA-isopropyl, MCPA-butotyl, MCPA-butyl;

[0266] MCPB salt: MCPB sodium;

[0267] MCPB ester: MCPB-ethyl;

[0268] Mecoprop salts: mecoprop-dimethylammonium, mecoprop-diolamine, mecoprop-potassium, mecoprop-sodium and mecoprop-trolamine;

[0269] Mecoprop esters: mecoprop-butotyl, mecoprop-ethadyl, mecoprop-2-ethylhexyl, mecoprop-isoctyl, and mecoprop-methyl;

[0270] mecoprop-P salts: mecoprop-P-dimethylammonium, mecoprop-P-potassium and mecoprop-P-sodium;

[0271] mecoprop-P esters: mecoprop-P-butotyl, mecoprop-P-2-ethylhexyl and mecoprop-P-isobutyl;

[0272] naptalam salt: naptalam-sodium;

[0273] paraquat salts: Paraquat-dichloride and paraquat-dimethylsulfate;

[0274] picloram salts: picloram-dimethylammonium, picloram-potassium, picloram-triisopropanolammonium, picloram-triisopropylammonium and picloram-trolamine;

[0275] picloram ester: picloram-isoctyl;

[0276] propoxycarbazone salt: propoxycarbazone-sodium;

[0277] pyrithiobac salt: pyrithiobac-sodium;

[0278] quinclorac salt: quinclorac-dimethylammonium;

[0279] quinmerac salt: quinmerac-dimethylammonium;

[0280] topramezone salt: topramezone-sodium;

[0281] triclopyr salt: triclopyr-triethylammonium;

[0282] triclopyr esters: triclopyr-ethyl and triclopyr-butotyl;

[0283] trifloxysulfuron salt: trifloxysulfuron-sodium;In another preferred aspect the compositions according to the present invention comprise as component A a compound of formula I and a further herbicide B as component B selected from the groups B1a) to B19a) below:

[0284] B1a) clodinafop, clodinafop-propargyl, cyhalofop, cyhalofop-butyl, fenoxaprop, fenoxaprop-P, fluazifop, fluazifop-P, haloxyfop, haloxyfop-P, haloxyfop-P-methyl, quizalofop, quizalofop-P, and quizalofop-P-methyl, clethodim, cycloxydim, profoxydim, sethoxydim, tepraloxydim, metproxybicyclone, pinoxaden;

[0285] B2a) imazamox, imazamox ammonium, imazapic, imazapic ammonium, imazapyr, imazapyr ammonium, imazethapyr, imazethapyr ammonium, bispyribac, pyribenzoxim, pyriftalid, pyriminobac, pyrithiobac, pyrimisulfan and triafamone, amidosulfuron, bensulfuron, chlorimuron, chlorsulfuron, cyclosulfamuron, ethoxysulfuron, flazasulfuron, flucetosulfuron, flupyrsulfuron, foramsulfuron, halosulfuron, imazosulfuron, iodosulfuron, iodosulfuron methyl-na, mesosulfuron, metazosulfuron, metsulfuron, nicosulfuron, orthosulfamuron, oxasulfuron, propyrisulfuron, prosulfuron, pyrazosulfuron, rimsulfuron, sulfometuron, sulfosulfuron, thifensulfuron, triasulfuron, tribenuron, trifloxysulfuron, triflusulfuron, and tritosulfuron, flucarbazone, propoxycarbazone, and thiencarbazone, cloransulam, diclosulam, florasulam, flumetsulam, penoxsulam, and pyroxsulam;

[0286] B3a) propanil, chlorprocarb, desmedipham, phenmedipham, brompyrazon and chloridazon, ametryne, atrazine, cyanazine, prometryne, simazine, terbuthylazine, hexazinone, metamitron, and metribuzin, amicarbazone, bromacil, Lenacil, terbacil, chlorotoluron, diuron, isoproturon, linuron, tebuthiuron, bentazon,

[0287] bentazon-sodium, pyridate, bromoxynil, bromoxynil butyrate, bromoxynil heptanoate, bromoxynil octanoate, ioxynil, diquat, diquat-dibromide, paraquat, paraquat-dichloride, 4-hydroxy-1-methoxy-5-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one; (CAS 2023785-78-4), 4-hydroxy-1 ,5-dimethyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 2023785-79-5), 5-ethoxy-4-hydroxy-1-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 1701416-69-4), 4-hydroxy-1-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 1708087-22-2), 4-hydroxy-1 ,5-dimethyl-3-[1-methyl-5-(trifluoromethyl)pyrazol-3-yl]imidazolidin-2-one (CAS 2023785-80-8

[0288] ), and 1-(5-tert-buty

[0289] lisoxazol-3-yl)-4-ethoxy-5-hydroxy-3-methyl-imidazolidin-2-one (CAS 1844836-64-1);

[0290] B4a) acifluorfen, fomesafen, lactofen, oxyfluorfen, epyrifenacil, flufenoximacil, flumiclorac, flumioxazin, fluthiacet, isoxafenacil, pentoxazone, saflufenacil, tiafenacil, trifludimoxazin, oxadiargyl and oxadiazon, carfentrazone, carfentrazone-ethyl, sulfentrazone, pyraflufen, pyraclonil, , cyclopyranil, 2-[2-[[3-chloro-6-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1(2H)-pyrimidinyl]-5-fluoro-2-pyridinyl]oxy]phenoxy]-acetic acid methyl ester (CAS 2158274-96-3), fendioxypyracil, methyl 2-[[3-[2-chloro-5-[4-(difluoromethyl)-3-methyl-5-oxo-1 ,2,4-triazol-1-yl]-4-fluoro-phenoxy]-2-pyridyl]oxy]acetate (CAS 2271389-22-9), ethyl 2-[[3-[2-chloro-5-[4-(difluoromethyl)-3-methyl-5-oxo-1,2,4-triazol-1-yl]-4-fluoro-phenoxy]-2-pyridyl]oxy]acetate (CAS 2230679-62-4), 2-[[3-[[3-chloro-6-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-l (2H)-pyrimidinyl]-5-fluoro-2-pyridinyl]oxy]-2-pyridinyl]oxy] acetic acid ethyl ester (CAS 2158274-56-5); methyl 2-[2-[2-bromo-5-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1(2H)-pyrimidinyl]-4-fluorophenoxy]phenoxy]-2-methoxyacetate (CAS 2703795-90-6), pyridin-2-ylmethyl [(3-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}pyridin-2-yl)oxy]acetate (CAS 2591611-15-1), 2-methoxyethyl [(3-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}pyridin-2-yl)oxy]acetate (CAS 2591611-05-9), 2-methoxyethyl [(3-{2-cyano-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}pyridin-2-yl)oxy]acetate (CAS 2591611-20-8), cyanomethyl [(3-{2-bromo-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}pyridin-2-yl)oxy]acetate (CAS 2591610-84-1), 2-ethoxy-2-oxoethyl 1-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}cyclopropanecarboxylate (CAS 1101020-13-6), 2-methoxy-2-oxoethyl 1-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}cyclopropanecarboxylate (CAS 1101021-05-9), {[(1-{2-chloro-4-fluoro-5-[3-methyl-2,6-dioxo-4-(trifluoromethyl)-3,6-dihydropyrimidin-1(2H)-yl]phenoxy}cyclopropyl)carbonyl]oxy} acetic acid (CAS 1101020-12-5);

[0291] B5a) flurtamone, flurochloridone, beflubutamid, diflufenican, and picolinafen, rimisoxafen±Isoxaflutole, pyrasulfotole, pyrazolynate, pyraquinate, prochlorosulfone, topramezone, topramezone-sodium, benzobicyclon, bicyclopyrone, fenquinotrione, mesotrione, sulcotrione, tefuryltrione, tembotrione, flusulfinam, iptriazopyrid, oxotrione, aclonifen, bixlozone, clomazone, and broclozone, 2-chloro-3-methylsulfanyl-N-(1-methyltetrazol-5-yl)-4-(trifluoromethyl)benzamide (CAS 1361139-71-0), isoxaflutole; 2-chloro- / V-(5-methyl-1 ,3,4-oxadiazol-2-yl)-3-[(R)-methylsulfinyl]-4-(trifluoromethyl)benzamide (CAS 3084428-80-5); ), 2-chloro- / V-(5-methyl-1,3,4-oxadiazol-2-yl)-3-[(S)-methylsulfinyl]-4-(trifluormethyl)benzamid (CAS 2833716-54-2);

[0292] B6a) glyphosate, glyphosate-ammonium, glyphosate-isopropylammonium, glyphosate-potassium, glyphosate-trimesium (sulfosate);

[0293] B7a) glufosinate, glufosinate-ammonium, glufosinate-P, glufosinate-P-ammonium;

[0294] B9a) propyzamide (also known as pronamide), oryzalin, pendimethalin, prodiamine, trifluralin,

[0295] icafolin, icafolin methyl;B10a) cafenstrole, fentrazamide, ipfencarbazone, benfuresate and ethofumesate, acetochlor, alachlor, butachlor, dimethenamid, dimethenamid-P, metazachlor, metolachlor, metolachlor-S, pethoxamid, pretilachlor, propisochlor, fenoxasulfone and pyroxasulfone, flufenacet and mefenacet, anilofos, prosulfocarb, thiobencarb (also known as benthiocarb), triallate;

[0296] B11a) dichlobenil, flupoxam, indaziflam, isoxaben, triaziflam, / ^-(S-Chloro-S.S-difluoro-2-methoxyphenyl)-6-(1 -fluoro- 1 -methylethyl)- 1, 3, 5-triazine-2,4-diamine (CAS 2813322-23-3), A / 2-(3-Bromo-5,6-difluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813322-22-2) and A / 2-(3-Chloro-4,5,6-trifluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813323-76-9);

[0297] B13a) florpyrauxifen, halauxifen, halauxifen-methyl, fluchloraminopyr and indolauxipyr, dicamba, dicamba-sodium, dicamba-potassium, dicamba-methylammonium, dicamba-dimethylammonium, dicamba-isopropylammonium, dicamba-diglycolamine, dicamba-diolamine, dicamba-trolamine, dicamba-N,N-bis-(3-aminopropyl)methylamine and dicamba-diethylenetriamine, 2,4-D, 2,4-D-ammonium, 2,4-D-diethanolammonium, 2,4-D-choline, 2,4-DB, clomeprop, dichlorprop, dichlorprop-P, MCPA, MCPB, mecoprop, mecoprop-P, fluroxypyr, fluroxypyr-methyl, triclopyr, quinclorac, quinclorac dimethylammonium and quinmerac, benazolin;

[0298] B14a) diflufenzopyr;

[0299] B15a) tetflupyrolimet;

[0300] B16a) cinmethylin, cinflubrolin and methiozolin, bromobutide, oxaziclomefone;

[0301] B18a) cyclopyrimorate;

[0302] B19a) 6-chloro-4-(2,7-dimethyl-1-naphthyl)-5-hydroxy-2-methyl-pyridazin-3-one (CAS 2414510-21-5);

[0303] including their agriculturally acceptable salts and esters.

[0304] In another preferred aspect the compositions according to the present invention comprise as component A a compound of formula I and a further herbicide B as component B selected from herbicides b#1 to b#119 in the groups B1b) to B16b) below:

[0305] B1b) clodinafop (b#1), clodinafop-propargyl (b#2), cyhalofop (b#3), cyhalofop-butyl(b#4), haloxyfop (b#5), haloxyfop-P (b#6), haloxyfop-P-methyl (b#7), quizalofop, quizalofop-P (b#8), and quizalofop-P-methyl (b#9), clethodim (b#10), profoxydim (b#11), sethoxydim (b#12), metproxybicyclone (b#13), pinoxaden (b#14);

[0306] B2b) imazamox (b#15), imazamox ammonium (b#16), imazapic (b#17), imazapic ammonium (b#18), imazapyr (b#19), imazapyr ammonium (b#20), imazethapyr (b#21), imazethapyr ammonium (b#22), chlorimuron (b#23), iodosulfuron (b#24), iodosulfuron methyl-na (b#25),metsulfuron (b#26), nicosulfuron (b#27), thiencarbazone (b#28), cloransulam (b#29), diclosulam (b#30), florasulam (b#31), penoxsulam (b#32), pyroxsulam (b#33);

[0307] B3b) atrazine (b#34), metribuzin (b#35), diuron (b#36), bentazon (b#37), bentazon-sodium (b#38), bromoxynil (b#39), bromoxynil butyrate (b#40), bromoxynil heptanoate (b#41), bromoxynil octanoate (b#42), diquat (b#43), diquat-dibromide (b#44), paraquat (b#45), paraquat-dichloride (b#46);

[0308] B4b) fomesafen (b#47), lactofen (b#48), oxyfluorfen (b#49), epyrifenacil (b#50), flufenoximacil (b#51), flumioxazin (b#52), saflufenacil (b#53), tiafenacil (b#54), trifludimoxazin (b#55), carfentrazone (b#56), carfentrazone-ethyl (b#57), sulfentrazone (b#58), fendioxypyracil (b#59), methyl 2-[2-[2-bromo-5-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1(2H)-pyrimidinyl]-4-fluorophenoxy]phenoxy]-2-methoxyacetate (CAS 2703795-90-6) (b#60);

[0309] B5b) diflufenican (b#61), picolinafen (b#62), rimisoxafen (b#63), topramezone (b#64), topramezone-sodium (b#65), bicyclopyrone (b#66), mesotrione (b#67), tembotrione (b#68), clomazone (b#69), isoxaflutole (b#70); 2-chloro- / V-(5-methyl-1,3,4-oxadiazol-2-yl)-3-[(R)-methylsulfinyl]-4-(trifluoromethyl)benzamide (b#118); ), 2-chloro- / V-(5-methyl-1,3,4-oxadiazol-2-yl)-3-[(S)-methylsulfinyl]-4-(trifluormethyl)benzamid (b#119);

[0310] B6b) glyphosate (b#71), glyphosate-ammonium (b#72), glyphosate-isopropylammonium (b#73), glyphosate-potassium (b#74), glyphosate-trimesium (sulfosate) (b#75);

[0311] B7b) glufosinate (b#76), glufosinate-ammonium (b#77), glufosinate-P (b#78), glufosinate-P-ammonium (b#79);

[0312] B9b) pendimethalin (b#80), icafolin (b#81), icafolin methyl (b#82);

[0313] B10b) acetochlor (b#83), dimethenamid (b#84), dimethenamid-P (b#85), metazachlor (b#86), metolachlor (b#87), metolachlor-S (b#88), pyroxasulfone (b#89), flufenacet (b#90);

[0314] B11b) indaziflam (b#91), A / 2-(3-Chloro-5,6-difluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813322-23-3) (b#92), / ^-(S-Bromo-S.S-difluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813322-22-2) (b#93), A / 2-(3-Chloro-4,5,6-trifluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813323-76-9) (b#94);

[0315] B13b) halauxifen (b#95), halauxifen-methyl (b#96), dicamba (b#97), dicamba-sodium (b#98), dicamba-potassium (b#99), dicamba-methylammonium (b#100), dicamba-dimethylammonium (b#101), dicamba-isopropylammonium (b#102), dicamba-diglycolamine (b#103), dicamba-diolamine (b#104), dicamba-trolamine (b#105), dicamba-N,N-bis-(3-aminopropyl)methylamine, (b#106), dicamba-diethylenetriamine (b#107), 2,4-D (b#108), 2,4-D-ammonium (b#109), 2,4-D-diethanolammonium (b#110), 2,4-D-choline (b#111), fluroxypyr (b#112), fluroxypyr-methyl (b#113), triclopyr (b#114), quinclorac (b#115), quincloracdimethylammonium (b#116);

[0316] B16b) cinmethylin (b#117).

[0317] In another preferred aspect the compositions according to the present invention comprise as component A a compound of formula I and a further herbicide B as component B selected from herbicides b#1 to b#119 in the groups B1c) to B16c) below:

[0318] B1c) haloxyfop (b#5), haloxyfop-P (b#6), haloxyfop-P-methyl (b#7), quizalofop, quizalofop-P (b#8), and quizalofop-P-methyl (b#9), clethodim (b#10), profoxydim (b#11), sethoxydim (b#12), metproxybicyclone (b#13);

[0319] B2c) imazamox (b#15), imazamox ammonium (b#16), imazapic (b#17), imazapic ammonium (b#18), imazapyr (b#19), imazapyr ammonium (b#20), imazethapyr (b#21), imazethapyr ammonium (b#22), chlorimuron (b#23), iodosulfuron (b#24), iodosulfuron methyl-na (b#25), metsulfuron (b#26), nicosulfuron (b#27);

[0320] B3c) atrazine (b#34), metribuzin (b#35), diuron (b#36), bentazon (b#37), bentazon-sodium (b#38), bromoxynil butyrate (b#40), bromoxynil heptanoate (b#41), bromoxynil octanoate (b#42), diquat (b#43), diquat-dibromide (b#44), paraquat (b#45), paraquat-dichloride (b#46);

[0321] B4c) epyrifenacil (b#50), flufenoximacil (b#51), flumioxazin (b#52), saflufenacil (b#53), tiafenacil (b#54), trifludimoxazin (b#55), fendioxypyracil (b#59), methyl 2-[2-[2-bromo-5-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1(2H)-pyrimidinyl]-4-fluorophenoxy]phenoxy]-2-methoxyacetate (CAS 2703795-90-6) (b#60);

[0322] B5c) diflufenican (b#61), picolinafen (b#62), rimisoxafen (b#63), topramezone (b#64), topramezone-sodium (b#65), mesotrione (b#67), tembotrione (b#68), clomazone (b#69), isoxaflutole (b#70); 2-chloro- / V-(5-methyl-1 ,3,4-oxadiazol-2-yl)-3-[(R)-methylsulfinyl]-4-(trifluoromethyl)benzamide (b#118) ), 2-chloro- / V-(5-methyl-1,3,4-oxadiazol-2-yl)-3-[(S)-methylsulfinyl]-4-(trifluormethyl)benzamid (b#119);;

[0323] B6c) glyphosate (b#71), glyphosate-ammonium (b#72), glyphosate-isopropylammonium (b#73), glyphosate-potassium (b#74), glyphosate-trimesium (sulfosate) (b#75);

[0324] B7c) glufosinate (b#76), glufosinate-ammonium (b#77), glufosinate-P (b#78), glufosinate-P-ammonium (b#79);

[0325] B9c) pendimethalin (b#80), icafolin (b#81), icafolin methyl (b#82);

[0326] B10c) acetochlor (b#83), dimethenamid (b#84), dimethenamid-P (b#85), metazachlor (b#86), metolachlor (b#87), metolachlor-S (b#88);

[0327] B11c) / V2-(3-Chloro-5,6-difluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813322-23-3) (b#92), / ^-(S-Bromo-S.e-difluoro^-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1 ,3,5-triazine-2,4-diamine (CAS 2813322-22-2) (b#93), A / 2-(3-Chloro-4,5,6-trifluoro-2-methoxyphenyl)-6-(1-fluoro-1-methylethyl)-1,3,5-triazine-2,4-diamine (CAS 2813323-76-9) (b#94);

[0328] B13c) dicamba (b#97), dicamba-sodium (b#98), dicamba-potassium (b#99), dicamba-methylammonium (b#100), dicamba-dimethylammonium (b#101), dicamba-isopropylammonium (b#102), dicamba-diglycolamine (b#103), dicamba-diolamine (b#104), dicamba-trolamine (b#105), dicamba-N,N-bis-(3-aminopropyl)methylamine, (b#106), dicamba-diethylenetriamine (b#107), 2,4-D (b#108), 2,4-D-ammonium (b#109), 2,4-D-diethanolammonium (b#110), 2,4-D-choline (b#111), fluroxypyr (b#112), fluroxypyr-methyl (b#113), triclopyr (b#114), quinclorac (b#115), quinclo

[0329] rac dimethylammonium (b#116);

[0330] B16c) cinmethylin (b#117).

[0331] In one embodiment the compositions according to the present invention comprise as component B a herbicide selected from the groups B2a, B3a, B5a, B6a, B7a, B13a.

[0332] In another embodiment the compositions according to the present invention comprise as component B a herbicide selected from the groups B2b, B3b, B5b, B6b, B7b, B13b.

[0333] In yet another embodiment the compositions according to the present invention comprise as component B a herbicide selected from the groups B2c, B3c, B5c, B6c, B7c, B13c.

[0334] In another embodiment of the present invention the compositions according to the present invention comprise a compound of formula I and a safenerC. In another embodiment of the present invention the compositions according to the present invention comprise a compound of formula I, a compound B and a safener C.

[0335] Safeners are chemical compounds which prevent or reduce damage on useful plants without having a major impact on the herbicidal action of the herbicidal active components of the present compositions towards unwanted plants. They can be applied either before sowings (e.g. on seed treatments, shoots or seedlings) or in the pre-emergence application or postemergence application of the useful plant. The safeners and the compound of formula I and / or the herbicides B can be applied simultaneously or in succession.

[0336] Examples of preferred safeners C are benoxacor, cloquintocet, cyometrinil, cyprosulfamide, dichlormid, dicyclonon, dietholate, fenchlorazole, fenclorim, flurazole, fluxofenim, furilazole, isoxadifen, mefenpyr, mephenate, naphthalic anhydride, oxabetrinil, 4-(dichloroacetyl)-1-oxa-4-azaspiro[4.5]decane (MON4660, CAS 71526-07-3), 2,2,5-trimethyl-3-(dichloroacetyl)-1 ,3-oxazolidine (R-29148, CAS 52836-31-4), N-(2-Methoxybenzoyl)-4-[(methylaminocarbonyl)amino]benzenesulfonamide (CAS 129531-12-0), MG191 (2-dichloromethyl-2-methyl-1,3-dioxolane) or their salts and esters.

[0337] Especially preferred safeners C are benoxacor, cloquintocet, cyprosulfamide, dichlormid,fenchlorazole, fenclorim, flurazole, fluxofenim, furilazole, isoxadifen, mefenpyr, naphthalic anhydride, oxabetrinil, 4-(dichloroacetyl)-1-oxa-4-azaspiro[4.5]decane (MON4660, CAS 71526-07-3), 2,2,5-trimethyl-3-(dichloroacetyl)-1,3-oxazolidine (R-29148, CAS 52836-31-4) and N-(2-Methoxybenzoyl)-4-[(methylaminocarbonyl)amino]benzenesulfonamide (CAS 129531-12-0) or their salts and esters.

[0338] Particularly preferred safeners C are benoxacor, cloquintocet, cyprosulfamide, dichlormid, fenchlorazole, fenclorim, furilazole, isoxadifen, mefenpyr, naphtalic anhydride, 4-(dichloroacetyl)-1-oxa-4-azaspiro[4.5]decane (MON4660, CAS 71526-07-3), 2,2,5-trimethyl-3-(dichloroacetyl)-1,3-oxazolidine (R-29148, CAS 52836-31-4) and N-(2-Methoxybenzoyl)-4-[(methylaminocarbonyl)amino]benzenesulfonamide (CAS 129531-12-0) or their salts and esters.

[0339] According to a preferred embodiment of the invention, the composition comprises as herbicidal active component B one or more, preferably exactly one herbicide B.

[0340] According to another preferred embodiment of the invention, the composition comprises a safening component C one or more, preferably exactly one safener.

[0341] According to another preferred embodiment of the invention, the composition comprises as component B one or more, preferably exactly one herbicide B, and as component C one or more, preferably exactly one, safener.

[0342] According to another preferred embodiment of the invention, the composition comprises as component A one or more, preferably exactly one compound of formula I, preferably compounds 1-1, I-2, I-7, I-8 and I-9, especially preferred the compound 1-1, and as component B one or more, preferably exactly one, herbicide B.

[0343] According to another preferred embodiment of the invention, the composition comprises as component A one or more, preferably exactly one compound of formula I, preferably compounds 1-1, I-2, I-7, I-8 and I-9, especially preferred the compound 1-1, and two or more, preferably exactly two, herbicides B different from each other.

[0344] According to another preferred embodiment of the invention, the composition comprises as component A one or more, preferably exactly one compound of formula I, preferably compounds 1-1, I-2, I-7, I-8 and I-9, especially preferred the compound 1-1, and as component C one or more, preferably exactly one, safener C.

[0345] According to another preferred embodiment of the invention, the composition comprises as component A one or more, preferably exactly one compound of formula I, preferably compounds 1-1, I-2, I-7, I-8 and I-9, especially preferred the compound 1-1, as component B one or more, preferably exactly one, herbicide B, and as component C one or more, preferably exactly one safener C.In binary compositions comprising one compound of the formula I as component A and as component B one herbicide B, the weight ratio of the active compounds A:B is generally in the range of from 1 : 1000 to 1000: 1 ; or from 1 :500 to 500: 1 ; or from 1 :250 to 250: 1 ; or from 1 :75 to 75: 1 ; or from 1 :50 to 50: 1 ; or from 1 :20 to 20: 1 ; or from 1 : 10 to 10: 1 ; or from 1 :7 to 7:1; or from 1:4 to 4:1; or from 1:3 to 3:1; or from 1:2 to 2:1; or from 1:1000 to 1:1; or from 1:1 to 1 : 1000; or from 1 : 1 to 500: 1 ; or from 1 :500 to 1 : 1 ; or from 1 : 1 to 250: 1 ; or from 1 :250 to 1 : 1 ; or from 1 : 1 to 75: 1 ; or from 1 :75 to 1 : 1 ; or from 1 : 1 to 50: 1 ; or from 1 :50 to 1 : 1 ; or from 1:1 to 20:1; or from 1:20 to 1:1; or from 1:1 to 10:1; or from 1:10 to 1:1; or from 1:1 to 7:1; or from 1 :7 to 1 : 1 ; or from 1:1 to 4:

[0346] 1; or

[0347] from 1 :4 to 1 : 1 ; or from 1:1 to 3: 1 ; or from 1 :3 to 1 : 1 ; or from 1 : 1 to 2: 1 ; or from 1 :2 to 1:1.

[0348] In binary, ternary or quarternary compositions comprising a compound of the formula I as component A and a safener C, the weight ratio of the active compounds A:C is generally in the range of from 1:1000 to 1000:1; or from 1:500 to 500:1; or from 1:250 to 250:1; or from 1 :75 to 75: 1 ; or from 1 :50 to 50: 1 ; or from 1 :20 to 20: 1 ; or from 1 : 10 to 10: 1 ; or from 1 :7 to 7:1; or from 1:4 to 4:1; or from 1:3 to 3:1; or from 1:2 to 2:1; or from 1:1000 to 1:1; or from 1:1 to 1 : 1000; or from 1 : 1 to 500: 1 ; or from 1 :500 to 1 : 1 ; or from 1 : 1 to 250: 1 ; or from 1 :250 to 1:1; or from

[0349] 1:1 to 75:

[0350] 1 ; or from 1 :75 to 1 : 1 ; or from 1 : 1 to 50: 1 ; or from 1 :50 to 1 : 1 ; or from 1 : 1 to 20: 1 ; or from 1:20 to 1:1; or from 1:1 to 10:1; or from 1 : 10 to 1:1; or from 1:1 to 7:1; or from 1:7 to 1:1; or from 1 : 1 to 4: 1 ; or from 1 :4 to 1 : 1 ; or from 1 : 1 to 3: 1 ; or from 1 :3 to 1 : 1 ; or from 1 : 1 to 2: 1 ; or from 1 :2 to 1 : 1 ; or the ratio is 1:1.

[0351] Particularly preferred safeners C, which, as component C, are constituent of the composition according to the invention are the safeners C as defined above; in particular the safeners C.1 to C.17 listed below in table C:

[0352] Table C

[0353]

[0354]

[0355]

[0356]

[0357] Particularly preferred are the binary compositions M1B.1 to M1B.136 mentioned below in Table 1 comprising as component A compound 1-1 and as component B a herbicide B or a safener C.

[0358] Table 1:

[0359] M1B.1: 1-1 + b#1; M1B.2: 1-1 + b#2; M1B.3: 1-1 + b#3; M1B.4: 1-1 + b#4; M1B.5: 1-1 + b#5; M1B.6: 1-1 + b#6; M1B.7: 1-1 + b#7; M1B.8: 1-1 + b#8; M1B.9: 1-1 + b#9; M1B.10: 1-1 + b#10; M1B.11: 1-1 + b#11; M1B.12: 1-1 + b#12; M1B.13: 1-1 + b#13; M1B.14: 1-1 + b#14; M1B.15: I-1 + b#15; M1B.16: 1-1 + b#16; M1B.17: 1-1 + b#17; M1B.18: 1-1 + b#18; M1B.19: 1-1 + b#19; M1B.20: 1-1 + b#20; M1B.21: 1-1 + b#21; M1B.22: 1-1 + b#22; M1B.23: 1-1 + b#23; M1B.24: I-1 + b#24; M1B.25: 1-1 + b#25; M1B.26: 1-1 + b#26; M1B.27: 1-1 + b#27; M1B.28: 1-1 + b#28; M1B.29: 1-1 + b#29; M1B.30: 1-1 + b#30; M1B.31: 1-1 + b#31 ; M1B.32: 1-1 + b#32; M1B.33: I-1 + b#33; M1B.34: 1-1 + b#34; M1B.35: 1-1 + b#35; M1B.36: 1-1 + b#36; M1B.37: 1-1 + b#37; M1B.38: 1-1 + b#38; M1B.39: 1-1 + b#39; M1B.40: 1-1 + b#40; M1B.41: 1-1 + b#41; M1B.42: I-1 + b#42; M1B.43: 1-1 + b#43; M1B.44: 1-1 + b#44; M1B.45: 1-1 + b#45; M1B.46: 1-1 + b#46; M1B.47: 1-1 + b#47; M1B.48: 1-1 + b#48; M1B.49: 1-1 + b#49; M1B.50: 1-1 + b#50; M1B.51: I-1 + b#51 ; M1B.52: 1-1 + b#52; M1B.53: 1-1 + b#53; M1B.54: 1-1 + b#54; M1B.55: 1-1 + b#55; M1B.56: 1-1 + b#56; M1B.57: 1-1 + b#57; M1B.58: 1-1 + b#58; M1B.59: 1-1 + b#59; M1B.60: I-1 + b#60; M1B.61: 1-1 + b#61; M1B.62: 1-1 + b#62; M1B.63: 1-1 + b#63; M1B.64: 1-1 + b#64; M1B.65: 1-1 + b#65; M1B.66: 1-1 + b#66; M1B.67: 1-1 + b#67; M1B.68: 1-1 + b#68; M1B.69: I-1 + b#69; M1B.70: 1-1 + b#70; M1B.71: 1-1 + b#71 ; M1B.72: 1-1 + b#72; M1B.73: 1-1 + b#73; M1B.74: 1-1 + b#74; M1B.75: 1-1 + b#75; M1B.76: 1-1 + b#76; M1B.77: 1-1 + b#77; M1B.78: I-1 + b#78; M1B.79: 1-1 + b#79; M1B.80: 1-1 + b#80; M1B.81: 1-1 + b#81 ; M1B.82: 1-1 + b#82; M1B.83: 1-1 + b#83; M1B.84: 1-1 + b#84; M1B.85: 1-1 + b#85; M1B.86: 1-1 + b#86; M1B.87: I-1 + b#87; M1B.88: 1-1 + b#88; M1B.89: 1-1 + b#89; M1B.90: 1-1 + b#90; M1B.91: 1-1 + b#91 ; M1B.92: 1-1 + b#92; M1B.93: 1-1 + b#93; M1B.94: 1-1 + b#94; M1B.95: 1-1 + b#95; M1B.96: I-1 + b#96; M1B.97: 1-1 + b#97; M1B.98: 1-1 + b#98; M1B.99: 1-1 + b#99; M1B.100: 1-1 + b#100; M1B.101: 1-1 + b#101 ; M1B.102: 1-1 + b#102; M1B.103: 1-1 + b#103; M1B.104: 1-1 +b#104; M1B.105: 1-1 + b#105; M1B.106: 1-1 + b#106; M1B.107: 1-1 + b#107; M1B.108: 1-1 + b#108; M1B.109: 1-1 + b#109; M1B.110: 1-1 + b#110; M1B.111: 1-1 + b#111 ; M1B.112: 1-1 + b#112; M1B.113: 1-1 + b#113; M1B.114: 1-1 + b#114; M1B.115: 1-1 + b#115; M1B.116: 1-1 + b#116; M1B.117: 1-1 + b#117; M1B.118: 1-1 + b#118; M1B.119: 1-1 + b#119; M1B.120: 1-1 + C.1; M1B.121: 1-1 + C.2; M1B.122: 1-1 + C.3; M1B.123: 1-1 + C.4; M1B.124: 1-1 + C.5;

[0360] M1B.125: 1-1 + C.6; M1B.126: 1-1 + C.7; M1B.127: 1-1 + C.8; M1B.128: 1-1 + C.9; M1B.129: I-1 + C.10; M1B.130: 1-1 + C.11 ; M1B.131: 1-1 + C.12; M1B.132: 1-1 + C.13; M1B.133: 1-1 + C.14; M1B.134: 1-1 + C.15; M1B.135: 1-1 + C.16; M1B.136: 1-1 + C.17;

[0361] Also preferred are the ternary compositions M1T.1 to M1T.2023 mentioned below in Table 2 comprising as component A compound 1-1 and as component B one herbicide B and one safener C.

[0362] Table 2:

[0363] M1T.1: 1-1 + b#1 + C.1; M1T.2: 1-1 + b#2 + C.1; M1T.3: 1-1 + b#3 + C.1; M1T.4: 1-1 + b#4 + C.1; M1T.5: 1-1 + b#5 + C.1; M1T.6: 1-1 + b#6 + C.1; M1T.7: 1-1 + b#7 + C.1; M1T.8: 1-1 + b#8 + C.1; M1T.9: 1-1 + b#9 + C.1; M1T.10: 1-1 + b#10 + C.1; M1T.11: 1-1 + b#11 + C.1; M1T.12: 1-1 + b#12 + C.1; M1T.13: 1-1 + b#13 + C.1; M1T.14: 1-1 + b#14 + C.1; M1T.15: 1-1 + b#15 + C.1; M1T.16: 1-1 + b#16 + C.1; M1T.17: 1-1 + b#17 + C.1; M1T.18: 1-1 + b#18 + C.1; M1T.19: 1-1 + b#19 + C.1; M1T.20: 1-1 + b#20 + C.1; M1T.21: 1-1 + b#21 + C.1; M1T.22: 1-1 + b#22 + C.1; M1T.23: 1-1 + b#23 + C.1; M1T.24: 1-1 + b#24 + C.1; M1T.25: 1-1 + b#25 + C.1; M1T.26: 1-1 + b#26 + C.1; M1T.27: 1-1 + b#27 + C.1; M1T.28: 1-1 + b#28 + C.1; M1T.29: 1-1 + b#29 + C.1; M1T.30: 1-1 + b#30 + C.1; M1T.31: 1-1 + b#31 + C.1; M1T.32: 1-1 + b#32 + C.1; M1T.33: 1-1 + b#33 + C.1; M1T.34: 1-1 + b#34 + C.1; M1T.35: 1-1 + b#35 + C.1; M1T.36: 1-1 + b#36 + C.1; M1T.37: 1-1 + b#37 + C.1; M1T.38: 1-1 + b#38 + C.1; M1T.39: 1-1 + b#39 + C.1; M1T.40: 1-1 + b#40 + C.1; M1T.41: 1-1 + b#41 + C.1; M1T.42: 1-1 + b#42 + C.1; M1T.43: 1-1 + b#43 + C.1; M1T.44: 1-1 + b#44 + C.1; M1T.45: 1-1 + b#45 + C.1; M1T.46: 1-1 + b#46 + C.1; M1T.47: 1-1 + b#47 + C.1; M1T.48: 1-1 + b#48 + C.1; M1T.49: 1-1 + b#49 + C.1; M1T.50: 1-1 + b#50 + C.1; M1T.51: 1-1 + b#51 + C.1; M1T.52: 1-1 + b#52 + C.1; M1T.53: 1-1 + b#53 + C.1; M1T.54: 1-1 + b#54 + C.1; M1T.55: 1-1 + b#55 + C.1; M1T.56: 1-1 + b#56 + C.1; M1T.57: 1-1 + b#57 + C.1; M1T.58: 1-1 + b#58 + C.1; M1T.59: 1-1 + b#59 + C.1; M1T.60: 1-1 + b#60 + C.1; M1T.61: 1-1 + b#61 + C.1; M1T.62: 1-1 + b#62 + C.1; M1T.63: 1-1 + b#63 + C.1; M1T.64: 1-1 + b#64 + C.1; M1T.65: 1-1 + b#65 + C.1; M1T.66: 1-1 + b#66 + C.1; M1T.67: 1-1 + b#67 + C.1; M1T.68: 1-1 + b#68 + C.1; M1T.69: 1-1 + b#69 + C.1; M1T.70: 1-1 + b#70 + C.1; M1T.71: 1-1 + b#71 + C.1; M1T.72: 1-1 + b#72 + C.1; M1T.73: 1-1 + b#73 + C.1; M1T.74: 1-1 + b#74 + C.1; M1T.75: 1-1 + b#75 + C.1; M1T.76: 1-1 + b#76 + C.1; M1T.77: 1-1 + b#77 + C.1; M1T.78: 1-1 + b#78 + C.1; M1T.79: 1-1 + b#79 + C.1; M1T.80: 1-1 + b#80 + C.1; M1T.81: 1-1 + b#81 + C.1; M1T.82: 1-1 + b#82 + C.1; M1T.83: 1-1 + b#83 + C.1; M1T.84: 1-1 + b#84 + C.1; M1T.85: 1-1 + b#85 + C.1; M1T.86: 1-1 + b#86 + C.1; M1T.87: 1-1 + b#87 + C.1; M1T.88: 1-1 + b#88 + C.1; M1T.89: 1-1 + b#89 + C.1; M1T.90: 1-1 + b#90 + C.1; M1T.91: 1-1 + b#91 + C.1; M1T.92: 1-1 + b#92 + C.1; M1T.93: 1-1 + b#93 + C.1; M1T.94: 1-1 + b#94 + C.1; M1T.95: 1-1 + b#95 + C.1;M1T.96: 1-1 + b#96 + C.1; M1T.97: 1-1 + b#97 + C.1; M1T.98: 1-1 + b#98 + C.1; M1T.99: 1-1 + b#99 + C.1; M1T.100: 1-1 + b#100 + C.1; M1T.101: 1-1 + b#101 + C.1; M1T.102: 1-1 + b#102 + C.1; M1T.103: 1-1 + b#103 + C.1; M1T.104: 1-1 + b#104 + C.1; M1T.105: 1-1 + b#105 + C.1; M1T.106: 1-1 + b#106 + C.1; M1T.107: 1-1 + b#107 + C.1; M1T.108: 1-1 + b#108 + C.1;

[0364] M1T.109: 1-1 + b#109 + C.1; M1T.110: 1-1 + b#110 + C.1; M1T.111: 1-1 + b#111 + C.1;

[0365] M1T.112: 1-1 + b#112 + C.1; M1T.113: 1-1 + b#113 + C.1; M1T.114: 1-1 + b#114 + C.1;

[0366] M1T.115: 1-1 + b#115 + C.1; M1T.116: 1-1 + b#116 + C.1; M1T.117: 1-1 + b#117 + C.1;

[0367] M1T.118: 1-1 + b#1 + C.2; M1T.119: 1-1 + b#2 + C.2; M1T.120: 1-1 + b#3 + C.2; M1T.121: 1-1 + b#4 + C.2; M1T.122: 1-1 + b#5 + C.2; M1T.123: 1-1 + b#6 + C.2; M1T.124: 1-1 + b#7 + C.2; M1T.125: 1-1 + b#8 + C.2; M1T.126: 1-1 + b#9 + C.2; M1T.127: 1-1 + b#10 + C.2; M1T.128: I-1 + b#11 + C.2; M1T.129: 1-1 + b#12 + C.2; M1T.130: 1-1 + b#13 + C.2; M1T.131: 1-1 + b#14 + C.2; M1T.132: 1-1 + b#15 + C.2; M1T.133: 1-1 + b#16 + C.2; M1T.134: 1-1 + b#17 + C.2; M1T.135: 1-1 + b#18 + C.2; M1T.136: 1-1 + b#19 + C.2; M1T.137: 1-1 + b#20 + C.2; M1T.138: 1-1 + b#21 + C.2; M1T.139: 1-1 + b#22 + C.2; M1T.140: 1-1 + b#23 + C.2; M1T.141: 1-1 + b#24 + C.2; M1T.142: 1-1 + b#25 + C.2; M1T.143: 1-1 + b#26 + C.2; M1T.144: 1-1 + b#27 + C.2; M1T.145: 1-1 + b#28 + C.2; M1T.146: 1-1 + b#29 + C.2; M1T.147: 1-1 + b#30 + C.2; M1T.148: 1-1 + b#31 + C.2; M1T.149: 1-1 + b#32 + C.2; M1T.150: 1-1 + b#33 + C.2; M1T.151: 1-1 + b#34 + C.2; M1T.152: 1-1 + b#35 + C.2; M1T.153: 1-1 + b#36 + C.2; M1T.154: 1-1 + b#37 + C.2; M1T.155: 1-1 + b#38 + C.2; M1T.156: 1-1 + b#39 + C.2; M1T.157: 1-1 + b#40 + C.2; M1T.158: 1-1 + b#41 + C.2; M1T.159: 1-1 + b#42 + C.2; M1T.160: 1-1 + b#43 + C.2; M1T.161: 1-1 + b#44 + C.2; M1T.162: 1-1 + b#45 + C.2; M1T.163: 1-1 + b#46 + C.2; M1T.164: 1-1 + b#47 + C.2; M1T.165: 1-1 + b#48 + C.2; M1T.166: 1-1 + b#49 + C.2; M1T.167: 1-1 + b#50 + C.2; M1T.168: 1-1 + b#51 + C.2; M1T.169: 1-1 + b#52 + C.2; M1T.170: 1-1 + b#53 + C.2; M1T.171: 1-1 + b#54 + C.2; M1T.172: 1-1 + b#55 + C.2; M1T.173: 1-1 + b#56 + C.2; M1T.174: 1-1 + b#57 + C.2; M1T.175: 1-1 + b#58 + C.2; M1T.176: 1-1 + b#59 + C.2; M1T.177: 1-1 + b#60 + C.2; M1T.178: 1-1 + b#61 + C.2; M1T.179: 1-1 + b#62 + C.2; M1T.180: 1-1 + b#63 + C.2; M1T.181: 1-1 + b#64 + C.2; M1T.182: 1-1 + b#65 + C.2; M1T.183: 1-1 + b#66 + C.2; M1T.184: 1-1 + b#67 + C.2; M1T.185: 1-1 + b#68 + C.2; M1T.186: 1-1 + b#69 + C.2; M1T.187: 1-1 + b#70 + C.2; M1T.188: 1-1 + b#71 + C.2; M1T.189: 1-1 + b#72 + C.2; M1T.190: 1-1 + b#73 + C.2; M1T.191: 1-1 + b#74 + C.2; M1T.192: 1-1 + b#75 + C.2; M1T.193: 1-1 + b#76 + C.2; M1T.194: 1-1 + b#77 + C.2; M1T.195: 1-1 + b#78 + C.2; M1T.196: 1-1 + b#79 + C.2; M1T.197: 1-1 + b#80 + C.2; M1T.198: 1-1 + b#81 + C.2; M1T.199: 1-1 + b#82 + C.2; M1T.200: 1-1 + b#83 + C.2; M1T.201: 1-1 + b#84 + C.2; M1T.202: 1-1 + b#85 + C.2; M1T.203: 1-1 + b#86 + C.2; M1T.204: 1-1 + b#87 + C.2; M1T.205: 1-1 + b#88 + C.2; M1T.206: 1-1 + b#89 + C.2; M1T.207: 1-1 + b#90 + C.2; M1T.208: 1-1 + b#91 + C.2; M1T.209: 1-1 + b#92 + C.2; M1T.210: 1-1 + b#93 + C.2; M1T.211: 1-1 + b#94 + C.2; M1T.212: 1-1 + b#95 + C.2; M1T.213: 1-1 + b#96 + C.2; M1T.214: 1-1 + b#97 + C.2; M1T.215: 1-1 + b#98 + C.2; M1T.216: 1-1 + b#99 + C.2; M1T.217: 1-1 + b#100 + C.2; M1T.218: 1-1 + b#101 + C.2; M1T.219: 1-1 + b#102 + C.2; M1T.220: 1-1 + b#103 + C.2; M1T.221: 1-1 + b#104 + C.2; M1T.222: 1-1 + b#105 + C.2; M1T.223: 1-1 + b#106 + C.2; M1T.224: 1-1 + b#107 + C.2; M1T.225: 1-1 + b#108 + C.2; M1T.226: 1-1 + b#109 + C.2; M1T.227: 1-1 + b#110 + C.2; M1T.228: 1-1 + b#111 + C.2; M1T.229: 1-1 + b#112 + C.2; M1T.230: 1-1 + b#113 + C.2; M1T.231: 1-1 +b#114 + C.2; M1T.232: 1-1 + b#115 + C.2; M1T.233: 1-1 + b#116 + C.2; M1T.234: 1-1 + b#117 + C.2; M1T.235: 1-1 + b#1 + C.3; M1T.236: 1-1 + b#2 + C.3; M1T.237: 1-1 + b#3 + C.3; M1T.238: 1-1 + b#4 + C.3; M1T.239: 1-1 + b#5 + C.3; M1T.240: 1-1 + b#6 + C.3; M1T.241: 1-1 + b#7 + C.3; M1T.242: 1-1 + b#8 + C.3; M1T.243: 1-1 + b#9 + C.3; M1T.244: 1-1 + b#10 + C.3; M1T.245: 1-1 + b#11 + C.3; M1T.246: 1-1 + b#12 + C.3; M1T.247: 1-1 + b#13 + C.3; M1T.248: 1-1 + b#14 + C.3; M1T.249: 1-1 + b#15 + C.3; M1T.250: 1-1 + b#16 + C.3; M1T.251: 1-1 + b#17 + C.3; M1T.252: 1-1 + b#18 + C.3; M1T.253: 1-1 + b#19 + C.3; M1T.254: 1-1 + b#20 + C.3; M1T.255: 1-1 + b#21 + C.3; M1T.256: 1-1 + b#22 + C.3; M1T.257: 1-1 + b#23 + C.3; M1T.258: 1-1 + b#24 + C.3; M1T.259: 1-1 + b#25 + C.3; M1T.260: 1-1 + b#26 + C.3; M1T.261: 1-1 + b#27 + C.3; M1T.262: 1-1 + b#28 + C.3; M1T.263: 1-1 + b#29 + C.3; M1T.264: 1-1 + b#30 + C.3; M1T.265: 1-1 + b#31 + C.3; M1T.266: 1-1 + b#32 + C.3; M1T.267: 1-1 + b#33 + C.3; M1T.268: 1-1 + b#34 + C.3; M1T.269: 1-1 + b#35 + C.3; M1T.270: 1-1 + b#36 + C.3; M1T.271: 1-1 + b#37 + C.3; M1T.272: 1-1 + b#38 + C.3; M1T.273: 1-1 + b#39 + C.3; M1T.274: 1-1 + b#40 + C.3; M1T.275: 1-1 + b#41 + C.3; M1T.276: 1-1 + b#42 + C.3; M1T.277: 1-1 + b#43 + C.3; M1T.278: 1-1 + b#44 + C.3; M1T.279: 1-1 + b#45 + C.3; M1T.280: 1-1 + b#46 + C.3; M1T.281: 1-1 + b#47 + C.3; M1T.282: 1-1 + b#48 + C.3; M1T.283: 1-1 + b#49 + C.3; M1T.284: 1-1 + b#50 + C.3; M1T.285: 1-1 + b#51 + C.3; M1T.286: 1-1 + b#52 + C.3; M1T.287: 1-1 + b#53 + C.3; M1T.288: 1-1 + b#54 + C.3; M1T.289: 1-1 + b#55 + C.3; M1T.290: 1-1 + b#56 + C.3; M1T.291: 1-1 + b#57 + C.3; M1T.292: 1-1 + b#58 + C.3; M1T.293: 1-1 + b#59 + C.3; M1T.294: 1-1 + b#60 + C.3; M1T.295: 1-1 + b#61 + C.3; M1T.296: 1-1 + b#62 + C.3; M1T.297: 1-1 + b#63 + C.3; M1T.298: 1-1 + b#64 + C.3; M1T.299: 1-1 + b#65 + C.3; M1T.300: 1-1 + b#66 + C.3; M1T.301: 1-1 + b#67 + C.3; M1T.302: 1-1 + b#68 + C.3; M1T.303: 1-1 + b#69 + C.3; M1T.304: 1-1 + b#70 + C.3; M1T.305: 1-1 + b#71 + C.3; M1T.306: 1-1 + b#72 + C.3; M1T.307: 1-1 + b#73 + C.3; M1T.308: 1-1 + b#74 + C.3; M1T.309: 1-1 + b#75 + C.3; M1T.310: 1-1 + b#76 + C.3; M1T.311: 1-1 + b#77 + C.3; M1T.312: 1-1 + b#78 + C.3; M1T.313: 1-1 + b#79 + C.3; M1T.314: 1-1 + b#80 + C.3; M1T.315: 1-1 + b#81 + C.3; M1T.316: 1-1 + b#82 + C.3; M1T.317: 1-1 + b#83 + C.3; M1T.318: 1-1 + b#84 + C.3; M1T.319: 1-1 + b#85 + C.3; M1T.320: 1-1 + b#86 + C.3; M1T.321: 1-1 + b#87 + C.3; M1T.322: 1-1 + b#88 + C.3; M1T.323: 1-1 + b#89 + C.3; M1T.324: 1-1 + b#90 + C.3; M1T.325: 1-1 + b#91 + C.3; M1T.326: 1-1 + b#92 + C.3; M1T.327: 1-1 + b#93 + C.3; M1T.328: 1-1 + b#94 + C.3; M1T.329: 1-1 + b#95 + C.3; M1T.330: 1-1 + b#96 + C.3; M1T.331: 1-1 + b#97 + C.3; M1T.332: 1-1 + b#98 + C.3; M1T.333: 1-1 + b#99 + C.3; M1T.334: 1-1 + b#100 + C.3; M1T.335: 1-1 + b#101 + C.3; M1T.336: 1-1 + b#102 + C.3; M1T.337: 1-1 + b#103 + C.3; M1T.338: 1-1 + b#104 + C.3; M1T.339: 1-1 + b#105 + C.3; M1T.340: 1-1 + b#106 + C.3; M1T.341: 1-1 + b#107 + C.3;

[0368] M1T.342: 1-1 + b#108 + C.3; M1T.343: 1-1 + b#109 + C.3; M1T.344: 1-1 + b#110 + C.3;

[0369] M1T.345: 1-1 + b#111 + C.3; M1T.346: 1-1 + b#112 + C.3; M1T.347: 1-1 + b#113 + C.3;

[0370] M1T.348: 1-1 + b#114 + C.3; M1T.349: 1-1 + b#115 + C.3; M1T.350: 1-1 + b#116 + C.3;

[0371] M1T.351: 1-1 + b#117 + C.3; M1T.352: 1-1 + b#1 + C.4; M1T.353: 1-1 + b#2 + C.4; M1T.354: 1-1 + b#3 + C.4; M1T.355: 1-1 + b#4 + C.4; M1T.356: 1-1 + b#5 + C.4; M1T.357: 1-1 + b#6 + C.4; M1T.358: 1-1 + b#7 + C.4; M1T.359: 1-1 + b#8 + C.4; M1T.360: 1-1 + b#9 + C.4;

[0372] M1T.361: 1-1 + b#10 + C.4; M1T.362: 1-1 + b#11 + C.4; M1T.363: 1-1 + b#12 + C.4; M1T.364: 1-1 + b#13 + C.4; M1T.365: 1-1 + b#14 + C.4; M1T.366: 1-1 + b#15 + C.4; M1T.367: 1-1 +b#16 + C.4; M1T.368: 1-1 + b#17 + C.4; M1T.369: 1-1 + b#18 + C.4; M1T.370: 1-1 + b#19 + C.4; M1T.371: 1-1 + b#20 + C.4; M1T.372: 1-1 + b#21 + C.4; M1T.373: 1-1 + b#22 + C.4; M1T.374: 1-1 + b#23 + C.4; M1T.375: 1-1 + b#24 + C.4; M1T.376: 1-1 + b#25 + C.4; M1T.377: 1-1 + b#26 + C.4; M1T.378: 1-1 + b#27 + C.4; M1T.379: 1-1 + b#28 + C.4; M1T.380: 1-1 + b#29 + C.4; M1T.381: 1-1 + b#30 + C.4; M1T.382: 1-1 + b#31 + C.4; M1T.383: 1-1 + b#32 + C.4; M1T.384: 1-1 + b#33 + C.4; M1T.385: 1-1 + b#34 + C.4; M1T.386: 1-1 + b#35 + C.4; M1T.387: 1-1 + b#36 + C.4; M1T.388: 1-1 + b#37 + C.4; M1T.389: 1-1 + b#38 + C.4; M1T.390: 1-1 + b#39 + C.4; M1T.391: 1-1 + b#40 + C.4; M1T.392: 1-1 + b#41 + C.4; M1T.393: 1-1 + b#42 + C.4; M1T.394: 1-1 + b#43 + C.4; M1T.395: 1-1 + b#44 + C.4; M1T.396: 1-1 + b#45 + C.4; M1T.397: 1-1 + b#46 + C.4; M1T.398: 1-1 + b#47 + C.4; M1T.399: 1-1 + b#48 + C.4; M1T.400: 1-1 + b#49 + C.4; M1T.401: 1-1 + b#50 + C.4; M1T.402: 1-1 + b#51 + C.4; M1T.403: 1-1 + b#52 + C.4; M1T.404: 1-1 + b#53 + C.4; M1T.405: 1-1 + b#54 + C.4; M1T.406: 1-1 + b#55 + C.4; M1T.407: 1-1 + b#56 + C.4; M1T.408: 1-1 + b#57 + C.4; M1T.409: 1-1 + b#58 + C.4; M1T.410: 1-1 + b#59 + C.4; M1T.411: 1-1 + b#60 + C.4; M1T.412: 1-1 + b#61 + C.4; M1T.413: 1-1 + b#62 + C.4; M1T.414: 1-1 + b#63 + C.4; M1T.415: 1-1 + b#64 + C.4; M1T.416: 1-1 + b#65 + C.4; M1T.417: 1-1 + b#66 + C.4; M1T.418: 1-1 + b#67 + C.4; M1T.419: 1-1 + b#68 + C.4; M1T.420: 1-1 + b#69 + C.4; M1T.421: 1-1 + b#70 + C.4; M1T.422: 1-1 + b#71 + C.4; M1T.423: 1-1 + b#72 + C.4; M1T.424: 1-1 + b#73 + C.4; M1T.425: 1-1 + b#74 + C.4; M1T.426: 1-1 + b#75 + C.4; M1T.427: 1-1 + b#76 + C.4; M1T.428: 1-1 + b#77 + C.4; M1T.429: 1-1 + b#78 + C.4; M1T.430: 1-1 + b#79 + C.4; M1T.431: 1-1 + b#80 + C.4; M1T.432: 1-1 + b#81 + C.4; M1T.433: 1-1 + b#82 + C.4; M1T.434: 1-1 + b#83 + C.4; M1T.435: 1-1 + b#84 + C.4; M1T.436: 1-1 + b#85 + C.4; M1T.437: 1-1 + b#86 + C.4; M1T.438: 1-1 + b#87 + C.4; M1T.439: 1-1 + b#88 + C.4; M1T.440: 1-1 + b#89 + C.4; M1T.441: 1-1 + b#90 + C.4; M1T.442: 1-1 + b#91 + C.4; M1T.443: 1-1 + b#92 + C.4; M1T.444: 1-1 + b#93 + C.4; M1T.445: 1-1 + b#94 + C.4; M1T.446: 1-1 + b#95 + C.4; M1T.447: 1-1 + b#96 + C.4; M1T.448: 1-1 + b#97 + C.4; M1T.449: 1-1 + b#98 + C.4; M1T.450: 1-1 + b#99 + C.4; M1T.451: 1-1 + b#100 + C.4; M1T.452: 1-1 + b#101 + C.4; M1T.453: 1-1 + b#102 + C.4; M1T.454: 1-1 + b#103 + C.4;

[0373] M1T.455: 1-1 + b#104 + C.4; M1T.456: 1-1 + b#105 + C.4; M1T.457: 1-1 + b#106 + C.4;

[0374] M1T.458: 1-1 + b#107 + C.4; M1T.459: 1-1 + b#108 + C.4; M1T.460: 1-1 + b#109 + C.4;

[0375] M1T.461: 1-1 + b#110 + C.4; M1T.462: 1-1 + b#111 + C.4; M1T.463: 1-1 + b#112 + C.4;

[0376] M1T.464: 1-1 + b#113 + C.4; M1T.465: 1-1 + b#114 + C.4; M1T.466: 1-1 + b#115 + C.4;

[0377] M1T.467: 1-1 + b#116 + C.4; M1T.468: 1-1 + b#117 + C.4; M1T.469: 1-1 + b#1 + C.5;

[0378] M1T.470: 1-1 + b#2 + C.5; M1T.471: 1-1 + b#3 + C.5; M1T.472: 1-1 + b#4 + C.5; M1T.473: 1-1 + b#5 + C.5; M1T.474: 1-1 + b#6 + C.5; M1T.475: 1-1 + b#7 + C.5; M1T.476: 1-1 + b#8 + C.5; M1T.477: 1-1 + b#9 + C.5; M1T.478: 1-1 + b#10 + C.5; M1T.479: 1-1 + b#11 + C.5; M1T.480: 1-1 + b#12 + C.5; M1T.481: 1-1 + b#13 + C.5; M1T.482: 1-1 + b#14 + C.5; M1T.483: 1-1 + b#15 + C.5; M1T.484: 1-1 + b#16 + C.5; M1T.485: 1-1 + b#17 + C.5; M1T.486: 1-1 + b#18 + C.5; M1T.487: 1-1 + b#19 + C.5; M1T.488: 1-1 + b#20 + C.5; M1T.489: 1-1 + b#21 + C.5; M1T.490: 1-1 + b#22 + C.5; M1T.491: 1-1 + b#23 + C.5; M1T.492: 1-1 + b#24 + C.5; M1T.493: 1-1 + b#25 + C.5; M1T.494: 1-1 + b#26 + C.5; M1T.495: 1-1 + b#27 + C.5; M1T.496: 1-1 + b#28 + C.5; M1T.497: 1-1 + b#29 + C.5; M1T.498: 1-1 + b#30 + C.5; M1T.499: 1-1 + b#31 + C.5; M1T.500: 1-1 + b#32 + C.5; M1T.501: 1-1 + b#33 + C.5; M1T.502: 1-1 + b#34 + C.5;M1T.503: 1-1 + b#35 + C.5; M1T.504: 1-1 + b#36 + C.5; M1T.505: 1-1 + b#37 + C.5; M1T.506: 1-1 + b#38 + C.5; M1T.507: 1-1 + b#39 + C.5; M1T.508: 1-1 + b#40 + C.5; M1T.509: 1-1 + b#41 + C.5; M1T.510: 1-1 + b#42 + C.5; M1T.511: 1-1 + b#43 + C.5; M1T.512: 1-1 + b#44 + C.5; M1T.513: 1-1 + b#45 + C.5; M1T.514: 1-1 + b#46 + C.5; M1T.515: 1-1 + b#47 + C.5; M1T.516: 1-1 + b#48 + C.5; M1T.517: 1-1 + b#49 + C.5; M1T.518: 1-1 + b#50 + C.5; M1T.519: 1-1 + b#51 + C.5; M1T.520: 1-1 + b#52 + C.5; M1T.521: 1-1 + b#53 + C.5; M1T.522: 1-1 + b#54 + C.5; M1T.523: 1-1 + b#55 + C.5; M1T.524: 1-1 + b#56 + C.5; M1T.525: 1-1 + b#57 + C.5; M1T.526: 1-1 + b#58 + C.5; M1T.527: 1-1 + b#59 + C.5; M1T.528: 1-1 + b#60 + C.5; M1T.529: 1-1 + b#61 + C.5; M1T.530: 1-1 + b#62 + C.5; M1T.531: 1-1 + b#63 + C.5; M1T.532: 1-1 + b#64 + C.5; M1T.533: 1-1 + b#65 + C.5; M1T.534: 1-1 + b#66 + C.5; M1T.535: 1-1 + b#67 + C.5; M1T.536: 1-1 + b#68 + C.5; M1T.537: 1-1 + b#69 + C.5; M1T.538: 1-1 + b#70 + C.5; M1T.539: 1-1 + b#71 + C.5; M1T.540: 1-1 + b#72 + C.5; M1T.541: 1-1 + b#73 + C.5; M1T.542: 1-1 + b#74 + C.5; M1T.543: 1-1 + b#75 + C.5; M1T.544: 1-1 + b#76 + C.5; M1T.545: 1-1 + b#77 + C.5; M1T.546: 1-1 + b#78 + C.5; M1T.547: 1-1 + b#79 + C.5; M1T.548: 1-1 + b#80 + C.5; M1T.549: 1-1 + b#81 + C.5; M1T.550: 1-1 + b#82 + C.5; M1T.551: 1-1 + b#83 + C.5; M1T.552: 1-1 + b#84 + C.5; M1T.553: 1-1 + b#85 + C.5; M1T.554: 1-1 + b#86 + C.5; M1T.555: 1-1 + b#87 + C.5; M1T.556: 1-1 + b#88 + C.5; M1T.557: 1-1 + b#89 + C.5; M1T.558: 1-1 + b#90 + C.5; M1T.559: 1-1 + b#91 + C.5; M1T.560: 1-1 + b#92 + C.5; M1T.561: 1-1 + b#93 + C.5; M1T.562: 1-1 + b#94 + C.5; M1T.563: 1-1 + b#95 + C.5; M1T.564: 1-1 + b#96 + C.5; M1T.565: 1-1 + b#97 + C.5; M1T.566: 1-1 + b#98 + C.5; M1T.567: 1-1 + b#99 + C.5; M1T.568: 1-1 + b#100 + C.5; M1T.569: 1-1 + b#101 + C.5; M1T.570: 1-1 + b#102 + C.5;

[0379] M1T.571: 1-1 + b#103 + C.5; M1T.572: 1-1 + b#104 + C.5; M1T.573: 1-1 + b#105 + C.5;

[0380] M1T.574: 1-1 + b#106 + C.5; M1T.575: 1-1 + b#107 + C.5; M1T.576: 1-1 + b#108 + C.5;

[0381] M1T.577: 1-1 + b#109 + C.5; M1T.578: 1-1 + b#110 + C.5; M1T.579: 1-1 + b#111 + C.5;

[0382] M1T.580: 1-1 + b#112 + C.5; M1T.581: 1-1 + b#113 + C.5; M1T.582: 1-1 + b#114 + C.5;

[0383] M1T.583: 1-1 + b#115 + C.5; M1T.584: 1-1 + b#116 + C.5; M1T.585: 1-1 + b#117 + C.5;

[0384] M1T.586: 1-1 + b#1 + C.6; M1T.587: 1-1 + b#2 + C.6; M1T.588: 1-1 + b#3 + C.6; M1T.589: 1-1 + b#4 + C.6; M1T.590: 1-1 + b#5 + C.6; M1T.591: 1-1 + b#6 + C.6; M1T.592: 1-1 + b#7 + C.6; M1T.593: 1-1 + b#8 + C.6; M1T.594: 1-1 + b#9 + C.6; M1T.595: 1-1 + b#10 + C.6; M1T.596: I- 1 + b#11 + C.6; M1T.597: 1-1 + b#12 + C.6; M1T.598: 1-1 + b#13 + C.6; M1T.599: 1-1 + b#14 + C.6; M1T.600: 1-1 + b#15 + C.6; M1T.601: 1-1 + b#16 + C.6; M1T.602: 1-1 + b#17 + C.6; M1T.603: 1-1 + b#18 + C.6; M1T.604: 1-1 + b#19 + C.6; M1T.605: 1-1 + b#20 + C.6; M1T.606: 1-1 + b#21 + C.6; M1T.607: 1-1 + b#22 + C.6; M1T.608: 1-1 + b#23 + C.6; M1T.609: 1-1 + b#24 + C.6; M1T.610: 1-1 + b#25 + C.6; M1T.611: 1-1 + b#26 + C.6; M1T.612: 1-1 + b#27 + C.6; M1T.613: 1-1 + b#28 + C.6; M1T.614: 1-1 + b#29 + C.6; M1T.615: 1-1 + b#30 + C.6; M1T.616: 1-1 + b#31 + C.6; M1T.617: 1-1 + b#32 + C.6; M1T.618: 1-1 + b#33 + C.6; M1T.619: 1-1 + b#34 + C.6; M1T.620: 1-1 + b#35 + C.6; M1T.621: 1-1 + b#36 + C.6; M1T.622: 1-1 + b#37 + C.6; M1T.623: 1-1 + b#38 + C.6; M1T.624: 1-1 + b#39 + C.6; M1T.625: 1-1 + b#40 + C.6; M1T.626: 1-1 + b#41 + C.6; M1T.627: 1-1 + b#42 + C.6; M1T.628: 1-1 + b#43 + C.6; M1T.629: 1-1 + b#44 + C.6; M1T.630: 1-1 + b#45 + C.6; M1T.631: 1-1 + b#46 + C.6; M1T.632: 1-1 + b#47 + C.6; M1T.633: 1-1 + b#48 + C.6; M1T.634: 1-1 + b#49 + C.6; M1T.635: 1-1 + b#50 + C.6; M1T.636: 1-1 + b#51 + C.6; M1T.637: 1-1 + b#52 + C.6; M1T.638: 1-1 + b#53 +C.6; M1T.639: 1-1 + b#54 + C.6; M1T.640: 1-1 + b#55 + C.6; M1T.641: 1-1 + b#56 + C.6; M1T.642: 1-1 + b#57 + C.6; M1T.643: 1-1 + b#58 + C.6; M1T.644: 1-1 + b#59 + C.6; M1T.645: 1-1 + b#60 + C.6; M1T.646: 1-1 + b#61 + C.6; M1T.647: 1-1 + b#62 + C.6; M1T.648: 1-1 + b#63 + C.6; M1T.649: 1-1 + b#64 + C.6; M1T.650: 1-1 + b#65 + C.6; M1T.651: 1-1 + b#66 + C.6; M1T.652: 1-1 + b#67 + C.6; M1T.653: 1-1 + b#68 + C.6; M1T.654: 1-1 + b#69 + C.6; M1T.655: 1-1 + b#70 + C.6; M1T.656: 1-1 + b#71 + C.6; M1T.657: 1-1 + b#72 + C.6; M1T.658: 1-1 + b#73 + C.6; M1T.659: 1-1 + b#74 + C.6; M1T.660: 1-1 + b#75 + C.6; M1T.661: 1-1 + b#76 + C.6; M1T.662: 1-1 + b#77 + C.6; M1T.663: 1-1 + b#78 + C.6; M1T.664: 1-1 + b#79 + C.6; M1T.665: 1-1 + b#80 + C.6; M1T.666: 1-1 + b#81 + C.6; M1T.667: 1-1 + b#82 + C.6; M1T.668: 1-1 + b#83 + C.6; M1T.669: 1-1 + b#84 + C.6; M1T.670: 1-1 + b#85 + C.6; M1T.671: 1-1 + b#86 + C.6; M1T.672: 1-1 + b#87 + C.6; M1T.673: 1-1 + b#88 + C.6; M1T.674: 1-1 + b#89 + C.6; M1T.675: 1-1 + b#90 + C.6; M1T.676: 1-1 + b#91 + C.6; M1T.677: 1-1 + b#92 + C.6; M1T.678: 1-1 + b#93 + C.6; M1T.679: 1-1 + b#94 + C.6; M1T.680: 1-1 + b#95 + C.6; M1T.681: 1-1 + b#96 + C.6; M1T.682: 1-1 + b#97 + C.6; M1T.683: 1-1 + b#98 + C.6; M1T.684: 1-1 + b#99 + C.6; M1T.685: 1-1 + b#100 + C.6; M1T.686: 1-1 + b#101 + C.6; M1T.687: 1-1 + b#102 + C.6; M1T.688: 1-1 + b#103 + C.6; M1T.689: 1-1 + b#104 + C.6; M1T.690: 1-1 + b#105 + C.6; M1T.691: 1-1 + b#106 + C.6; M1T.692: 1-1 + b#107 + C.6; M1T.693: 1-1 + b#108 + C.6; M1T.694: 1-1 + b#109 + C.6; M1T.695: 1-1 + b#110 + C.6; M1T.696: 1-1 + b#111 + C.6; M1T.697: 1-1 + b#112 + C.6; M1T.698: 1-1 + b#113 + C.6; M1T.699: 1-1 + b#114 + C.6; M1T.700: 1-1 + b#115 + C.6; M1T.701: 1-1 + b#116 + C.6; M1T.702: 1-1 + b#117 + C.6; M1T.703: 1-1 + b#1 + C.7; M1T.704: 1-1 + b#2 + C.7; M1T.705: 1-1 + b#3 + C.7; M1T.706: 1-1 + b#4 + C.7; M1T.707: 1-1 + b#5 + C.7; M1T.708: 1-1 + b#6 + C.7; M1T.709: 1-1 + b#7 + C.7; M1T.710: 1-1 + b#8 + C.7; M1T.711: 1-1 + b#9 + C.7; M1T.712: 1-1 + b#10 + C.7; M1T.713: 1-1 + b#11 + C.7; M1T.714: 1-1 + b#12 + C.7; M1T.715: 1-1 + b#13 + C.7; M1T.716: 1-1 + b#14 + C.7; M1T.717: 1-1 + b#15 + C.7; M1T.718: 1-1 + b#16 + C.7; M1T.719: 1-1 + b#17 + C.7; M1T.720: 1-1 + b#18 + C.7; M1T.721: 1-1 + b#19 + C.7; M1T.722: 1-1 + b#20 + C.7; M1T.723: 1-1 + b#21 + C.7; M1T.724: 1-1 + b#22 + C.7; M1T.725: 1-1 + b#23 + C.7; M1T.726: 1-1 + b#24 + C.7; M1T.727: 1-1 + b#25 + C.7; M1T.728: 1-1 + b#26 + C.7; M1T.729: 1-1 + b#27 + C.7; M1T.730: 1-1 + b#28 + C.7; M1T.731: 1-1 + b#29 + C.7; M1T.732: 1-1 + b#30 + C.7; M1T.733: 1-1 + b#31 + C.7; M1T.734: 1-1 + b#32 + C.7; M1T.735: 1-1 + b#33 + C.7; M1T.736: 1-1 + b#34 + C.7; M1T.737: 1-1 + b#35 + C.7; M1T.738: 1-1 + b#36 + C.7; M1T.739: 1-1 + b#37 + C.7; M1T.740: 1-1 + b#38 + C.7; M1T.741: 1-1 + b#39 + C.7; M1T.742: 1-1 + b#40 + C.7; M1T.743: 1-1 + b#41 + C.7; M1T.744: 1-1 + b#42 + C.7; M1T.745: 1-1 + b#43 + C.7; M1T.746: 1-1 + b#44 + C.7; M1T.747: 1-1 + b#45 + C.7; M1T.748: 1-1 + b#46 + C.7; M1T.749: 1-1 + b#47 + C.7; M1T.750: 1-1 + b#48 + C.7; M1T.751: 1-1 + b#49 + C.7; M1T.752: 1-1 + b#50 + C.7; M1T.753: 1-1 + b#51 + C.7; M1T.754: 1-1 + b#52 + C.7; M1T.755: 1-1 + b#53 + C.7; M1T.756: 1-1 + b#54 + C.7; M1T.757: 1-1 + b#55 + C.7; M1T.758: 1-1 + b#56 + C.7; M1T.759: 1-1 + b#57 + C.7; M1T.760: 1-1 + b#58 + C.7; M1T.761: 1-1 + b#59 + C.7; M1T.762: 1-1 + b#60 + C.7; M1T.763: 1-1 + b#61 + C.7; M1T.764: 1-1 + b#62 + C.7; M1T.765: 1-1 + b#63 + C.7; M1T.766: 1-1 + b#64 + C.7; M1T.767: 1-1 + b#65 + C.7; M1T.768: 1-1 + b#66 + C.7; M1T.769: 1-1 + b#67 + C.7; M1T.770: 1-1 + b#68 + C.7; M1T.771: 1-1 + b#69 + C.7; M1T.772: 1-1 + b#70 + C.7; M1T.773: 1-1 + b#71 + C.7; M1T.774: 1-1 +b#72 + C.7; M1T.775: 1-1 + b#73 + C.7; M1T.776: 1-1 + b#74 + C.7; M1T.777: 1-1 + b#75 + C.7; M1T.778: 1-1 + b#76 + C.7; M1T.779: 1-1 + b#77 + C.7; M1T.780: 1-1 + b#78 + C.7; M1T.781: 1-1 + b#79 + C.7; M1T.782: 1-1 + b#80 + C.7; M1T.783: 1-1 + b#81 + C.7; M1T.784: 1-1 + b#82 + C.7; M1T.785: 1-1 + b#83 + C.7; M1T.786: 1-1 + b#84 + C.7; M1T.787: 1-1 + b#85 + C.7; M1T.788: 1-1 + b#86 + C.7; M1T.789: 1-1 + b#87 + C.7; M1T.790: 1-1 + b#88 + C.7; M1T.791: 1-1 + b#89 + C.7; M1T.792: 1-1 + b#90 + C.7; M1T.793: 1-1 + b#91 + C.7; M1T.794: 1-1 + b#92 + C.7; M1T.795: 1-1 + b#93 + C.7; M1T.796: 1-1 + b#94 + C.7; M1T.797: 1-1 + b#95 + C.7; M1T.798: 1-1 + b#96 + C.7; M1T.799: 1-1 + b#97 + C.7; M1T.800: 1-1 + b#98 + C.7; M1T.801: 1-1 + b#99 + C.7; M1T.802: 1-1 + b#100 + C.7; M1T.803: 1-1 + b#101 + C.7; M1T.804: 1-1 + b#102 + C.7; M1T.805: 1-1 + b#103 + C.7; M1T.806: 1-1 + b#104 + C.7; M1T.807: 1-1 + b#105 + C.7; M1T.808: 1-1 + b#106 + C.7; M1T.809: 1-1 + b#107 + C.7;

[0385] M1T.810: 1-1 + b#108 + C.7; M1T.811: 1-1 + b#109 + C.7; M1T.812: 1-1 + b#110 + C.7;

[0386] M1T.813: 1-1 + b#111 + C.7; M1T.814: 1-1 + b#112 + C.7; M1T.815: 1-1 + b#113 + C.7;

[0387] M1T.816: 1-1 + b#114 + C.7; M1T.817: 1-1 + b#115 + C.7; M1T.818: 1-1 + b#116 + C.7;

[0388] M1T.819: 1-1 + b#117 + C.7; M1T.820: 1-1 + b#1 + C.8; M1T.821: 1-1 + b#2 + C.8; M1T.822: 1-1 + b#3 + C.8; M1T.823: 1-1 + b#4 + C.8; M1T.824: 1-1 + b#5 + C.8; M1T.825: 1-1 + b#6 + C.8; M1T.826: 1-1 + b#7 + C.8; M1T.827: 1-1 + b#8 + C.8; M1T.828: 1-1 + b#9 + C.8;

[0389] M1T.829: 1-1 + b#10 + C.8; M1T.830: 1-1 + b#11 + C.8; M1T.831: 1-1 + b#12 + C.8; M1T.832: 1-1 + b#13 + C.8; M1T.833: 1-1 + b#14 + C.8; M1T.834: 1-1 + b#15 + C.8; M1T.835: 1-1 + b#16 + C.8; M1T.836: 1-1 + b#17 + C.8; M1T.837: 1-1 + b#18 + C.8; M1T.838: 1-1 + b#19 + C.8; M1T.839: 1-1 + b#20 + C.8; M1T.840: 1-1 + b#21 + C.8; M1T.841: 1-1 + b#22 + C.8; M1T.842: 1-1 + b#23 + C.8; M1T.843: 1-1 + b#24 + C.8; M1T.844: 1-1 + b#25 + C.8; M1T.845: 1-1 + b#26 + C.8; M1T.846: 1-1 + b#27 + C.8; M1T.847: 1-1 + b#28 + C.8; M1T.848: 1-1 + b#29 + C.8; M1T.849: 1-1 + b#30 + C.8; M1T.850: 1-1 + b#31 + C.8; M1T.851: 1-1 + b#32 + C.8; M1T.852: 1-1 + b#33 + C.8; M1T.853: 1-1 + b#34 + C.8; M1T.854: 1-1 + b#35 + C.8; M1T.855: 1-1 + b#36 + C.8; M1T.856: 1-1 + b#37 + C.8; M1T.857: 1-1 + b#38 + C.8; M1T.858: 1-1 + b#39 + C.8; M1T.859: 1-1 + b#40 + C.8; M1T.860: 1-1 + b#41 + C.8; M1T.861: 1-1 + b#42 + C.8; M1T.862: 1-1 + b#43 + C.8; M1T.863: 1-1 + b#44 + C.8; M1T.864: 1-1 + b#45 + C.8; M1T.865: 1-1 + b#46 + C.8; M1T.866: 1-1 + b#47 + C.8; M1T.867: 1-1 + b#48 + C.8; M1T.868: 1-1 + b#49 + C.8; M1T.869: 1-1 + b#50 + C.8; M1T.870: 1-1 + b#51 + C.8; M1T.871: 1-1 + b#52 + C.8; M1T.872: 1-1 + b#53 + C.8; M1T.873: 1-1 + b#54 + C.8; M1T.874: 1-1 + b#55 + C.8; M1T.875: 1-1 + b#56 + C.8; M1T.876: 1-1 + b#57 + C.8; M1T.877: 1-1 + b#58 + C.8; M1T.878: 1-1 + b#59 + C.8; M1T.879: 1-1 + b#60 + C.8; M1T.880: 1-1 + b#61 + C.8; M1T.881: 1-1 + b#62 + C.8; M1T.882: 1-1 + b#63 + C.8; M1T.883: 1-1 + b#64 + C.8; M1T.884: 1-1 + b#65 + C.8; M1T.885: 1-1 + b#66 + C.8; M1T.886: 1-1 + b#67 + C.8; M1T.887: 1-1 + b#68 + C.8; M1T.888: 1-1 + b#69 + C.8; M1T.889: 1-1 + b#70 + C.8; M1T.890: 1-1 + b#71 + C.8; M1T.891: 1-1 + b#72 + C.8; M1T.892: 1-1 + b#73 + C.8; M1T.893: 1-1 + b#74 + C.8; M1T.894: 1-1 + b#75 + C.8; M1T.895: 1-1 + b#76 + C.8; M1T.896: 1-1 + b#77 + C.8; M1T.897: 1-1 + b#78 + C.8; M1T.898: 1-1 + b#79 + C.8; M1T.899: 1-1 + b#80 + C.8; M1T.900: 1-1 + b#81 + C.8; M1T.901: 1-1 + b#82 + C.8; M1T.902: 1-1 + b#83 + C.8; M1T.903: 1-1 + b#84 + C.8; M1T.904: 1-1 + b#85 + C.8; M1T.905: 1-1 + b#86 + C.8; M1T.906: 1-1 + b#87 + C.8; M1T.907: 1-1 + b#88 + C.8; M1T.908: 1-1 + b#89 + C.8; M1T.909: 1-1 + b#90 + C.8; M1T.910:1-1 + b#91 + C.8; M1T.911: 1-1 + b#92 + C.8; M1T.912: 1-1 + b#93 + C.8; M1T.913: 1-1 + b#94 + C.8; M1T.914: 1-1 + b#95 + C.8; M1T.915: 1-1 + b#96 + C.8; M1T.916: 1-1 + b#97 + C.8; M1T.917: 1-1 + b#98 + C.8; M1T.918: 1-1 + b#99 + C.8; M1T.919: 1-1 + b#100 + C.8; M1T.920: 1-1 + b#101 + C.8; M1T.921: 1-1 + b#102 + C.8; M1T.922: 1-1 + b#103 + C.8;

[0390] M1T.923: 1-1 + b#104 + C.8; M1T.924: 1-1 + b#105 + C.8; M1T.925: 1-1 + b#106 + C.8;

[0391] M1T.926: 1-1 + b#107 + C.8; M1T.927: 1-1 + b#108 + C.8; M1T.928: 1-1 + b#109 + C.8;

[0392] M1T.929: 1-1 + b#110 + C.8; M1T.930: 1-1 + b#111 + C.8; M1T.931: 1-1 + b#112 + C.8;

[0393] M1T.932: 1-1 + b#113 + C.8; M1T.933: 1-1 + b#114 + C.8; M1T.934: 1-1 + b#115 + C.8;

[0394] M1T.935: 1-1 + b#116 + C.8; M1T.936: 1-1 + b#117 + C.8; M1T.937: 1-1 + b#1 + C.9;

[0395] M1T.938: 1-1 + b#2 + C.9; M1T.939: 1-1 + b#3 + C.9; M1T.940: 1-1 + b#4 + C.9; M1T.941: 1-1 + b#5 + C.9; M1T.942: 1-1 + b#6 + C.9; M1T.943: 1-1 + b#7 + C.9; M1T.944: 1-1 + b#8 + C.9; M1T.945: 1-1 + b#9 + C.9; M1T.946: 1-1 + b#10 + C.9; M1T.947: 1-1 + b#11 + C.9; M1T.948: 1-1 + b#12 + C.9; M1T.949: 1-1 + b#13 + C.9; M1T.950: 1-1 + b#14 + C.9; M1T.951: 1-1 + b#15 + C.9; M1T.952: 1-1 + b#16 + C.9; M1T.953: 1-1 + b#17 + C.9; M1T.954: 1-1 + b#18 + C.9; M1T.955: 1-1 + b#19 + C.9; M1T.956: 1-1 + b#20 + C.9; M1T.957: 1-1 + b#21 + C.9; M1T.958: 1-1 + b#22 + C.9; M1T.959: 1-1 + b#23 + C.9; M1T.960: 1-1 + b#24 + C.9; M1T.961: 1-1 + b#25 + C.9; M1T.962: 1-1 + b#26 + C.9; M1T.963: 1-1 + b#27 + C.9; M1T.964: 1-1 + b#28 + C.9; M1T.965: 1-1 + b#29 + C.9; M1T.966: 1-1 + b#30 + C.9; M1T.967: 1-1 + b#31 + C.9; M1T.968: 1-1 + b#32 + C.9; M1T.969: 1-1 + b#33 + C.9; M1T.970: 1-1 + b#34 + C.9; M1T.971: 1-1 + b#35 + C.9; M1T.972: 1-1 + b#36 + C.9; M1T.973: 1-1 + b#37 + C.9; M1T.974: 1-1 + b#38 + C.9; M1T.975: 1-1 + b#39 + C.9; M1T.976: 1-1 + b#40 + C.9; M1T.977: 1-1 + b#41 + C.9; M1T.978: 1-1 + b#42 + C.9; M1T.979: 1-1 + b#43 + C.9; M1T.980: 1-1 + b#44 + C.9; M1T.981: 1-1 + b#45 + C.9; M1T.982: 1-1 + b#46 + C.9; M1T.983: 1-1 + b#47 + C.9; M1T.984: 1-1 + b#48 + C.9; M1T.985: 1-1 + b#49 + C.9; M1T.986: 1-1 + b#50 + C.9; M1T.987: 1-1 + b#51 + C.9; M1T.988: 1-1 + b#52 + C.9; M1T.989: 1-1 + b#53 + C.9; M1T.990: 1-1 + b#54 + C.9; M1T.991: 1-1 + b#55 + C.9; M1T.992: 1-1 + b#56 + C.9; M1T.993: 1-1 + b#57 + C.9; M1T.994: 1-1 + b#58 + C.9; M1T.995: 1-1 + b#59 + C.9; M1T.996: 1-1 + b#60 + C.9; M1T.997: 1-1 + b#61 + C.9; M1T.998: 1-1 + b#62 + C.9; M1T.999: 1-1 + b#63 + C.9;

[0396] M1T.1000: 1-1 + b#64 + C.9; M1T.1001: 1-1 + b#65 + C.9; M1T.1002: 1-1 + b#66 + C.9;

[0397] M1T.1003: 1-1 + b#67 + C.9; M1T.1004: 1-1 + b#68 + C.9; M1T.1005: 1-1 + b#69 + C.9;

[0398] M1T.1006: 1-1 + b#70 + C.9; M1T.1007: 1-1 + b#71 + C.9; M1T.1008: 1-1 + b#72 + C.9;

[0399] M1T.1009: 1-1 + b#73 + C.9; M1T.1010: 1-1 + b#74 + C.9; M1T.1011: 1-1 + b#75 + C.9;

[0400] M1T.1012: 1-1 + b#76 + C.9; M1T.1013: 1-1 + b#77 + C.9; M1T.1014: 1-1 + b#78 + C.9;

[0401] M1T.1015: 1-1 + b#79 + C.9; M1T.1016: 1-1 + b#80 + C.9; M1T.1017: 1-1 + b#81 + C.9;

[0402] M1T.1018: 1-1 + b#82 + C.9; M1T.1019: 1-1 + b#83 + C.9; M1T.1020: 1-1 + b#84 + C.9;

[0403] M1T.1021: 1-1 + b#85 + C.9; M1T.1022: 1-1 + b#86 + C.9; M1T.1023: 1-1 + b#87 + C.9;

[0404] M1T.1024: 1-1 + b#88 + C.9; M1T.1025: 1-1 + b#89 + C.9; M1T.1026: 1-1 + b#90 + C.9;

[0405] M1T.1027: 1-1 + b#91 + C.9; M1T.1028: 1-1 + b#92 + C.9; M1T.1029: 1-1 + b#93 + C.9;

[0406] M1T.1030: 1-1 + b#94 + C.9; M1T.1031: 1-1 + b#95 + C.9; M1T.1032: 1-1 + b#96 + C.9;

[0407] M1T.1033: 1-1 + b#97 + C.9; M1T.1034: 1-1 + b#98 + C.9; M1T.1035: 1-1 + b#99 + C.9;

[0408] M1T.1036: 1-1 + b#100 + C.9; M1T.1037: 1-1 + b#101 + C.9; M1T.1038: 1-1 + b#102 + C.9; M1T.1039: 1-1 + b#103 + C.9; M1T.1040: 1-1 + b#104 + C.9; M1T.1041: 1-1 + b#105 + C.9;M1T.1042: 1-1 + b#106 + C.9; M1T.1043: 1-1 + b#107 + C.9; M1T.1044: 1-1 + b#108 + C.9; M1T.1045: 1-1 + b#109 + C.9; M1T.1046: 1-1 + b#110 + C.9; M1T.1047: 1-1 + b#111 + C.9; M1T.1048: 1-1 + b#112 + C.9; M1T.1049: 1-1 + b#113 + C.9; M1T.1050: 1-1 + b#114 + C.9; M1T.1051: 1-1 + b#115 + C.9; M1T.1052: 1-1 + b#116 + C.9; M1T.1053: 1-1 + b#117 + C.9; M1T.1054: 1-1 + b#1 + C.10; M1T.1055: 1-1 + b#2 + C.10; M1T.1056: 1-1 + b#3 + C.10; M1T.1057: 1-1 + b#4 + C.10; M1T.1058: 1-1 + b#5 + C.10; M1T.1059: 1-1 + b#6 + C.10; M1T.1060: 1-1 + b#7 + C.10; M1T.1061: 1-1 + b#8 + C.10; M1T.1062: 1-1 + b#9 + C.10; M1T.1063: 1-1 + b#10 + C.10; M1T.1064: 1-1 + b#11 + C.10; M1T.1065: 1-1 + b#12 + C.10; M1T.1066: 1-1 + b#13 + C.10; M1T.1067: 1-1 + b#14 + C.10; M1T.1068: 1-1 + b#15 + C.10; M1T.1069: 1-1 + b#16 + C.10; M1T.1070: 1-1 + b#17 + C.10; M1T.1071: 1-1 + b#18 + C.10; M1T.1072: 1-1 + b#19 + C.10; M1T.1073: 1-1 + b#20 + C.10; M1T.1074: 1-1 + b#21 + C.10; M1T.1075: 1-1 + b#22 + C.10; M1T.1076: 1-1 + b#23 + C.10; M1T.1077: 1-1 + b#24 + C.10; M1T.1078: 1-1 + b#25 + C.10; M1T.1079: 1-1 + b#26 + C.10; M1T.1080: 1-1 + b#27 + C.10; M1T.1081: 1-1 + b#28 + C.10; M1T.1082: 1-1 + b#29 + C.10; M1T.1083: 1-1 + b#30 + C.10; M1T.1084: 1-1 + b#31 + C.10; M1T.1085: 1-1 + b#32 + C.10; M1T.1086: 1-1 + b#33 + C.10; M1T.1087: 1-1 + b#34 + C.10; M1T.1088: 1-1 + b#35 + C.10; M1T.1089: 1-1 + b#36 + C.10; M1T.1090: 1-1 + b#37 + C.10; M1T.1091: 1-1 + b#38 + C.10; M1T.1092: 1-1 + b#39 + C.10; M1T.1093: 1-1 + b#40 + C.10; M1T.1094: 1-1 + b#41 + C.10; M1T.1095: 1-1 + b#42 + C.10; M1T.1096: 1-1 + b#43 + C.10; M1T.1097: 1-1 + b#44 + C.10; M1T.1098: 1-1 + b#45 + C.10; M1T.1099: 1-1 + b#46 + C.10; M1T.1100: 1-1 + b#47 + C.10; M1T.1101: 1-1 + b#48 + C.10; M1T.1102: 1-1 + b#49 + C.10; M1T.1103: 1-1 + b#50 + C.10; M1T.1104: 1-1 + b#51 + C.10; M1T.1105: 1-1 + b#52 + C.10; M1T.1106: 1-1 + b#53 + C.10; M1T.1107: 1-1 + b#54 + C.10; M1T.1108: 1-1 + b#55 + C.10; M1T.1109: 1-1 + b#56 + C.10; M1T.1110: 1-1 + b#57 + C.10; M1T.1111: 1-1 + b#58 + C.10; M1T.1112: 1-1 + b#59 + C.10; M1T.1113: 1-1 + b#60 + C.10; M1T.1114: 1-1 + b#61 + C.10; M1T.1115: 1-1 + b#62 + C.10; M1T.1116: 1-1 + b#63 + C.10; M1T.1117: 1-1 + b#64 + C.10; M1T.1118: 1-1 + b#65 + C.10; M1T.1119: 1-1 + b#66 + C.10; M1T.1120: 1-1 + b#67 + C.10; M1T.1121: 1-1 + b#68 + C.10; M1T.1122: 1-1 + b#69 + C.10; M1T.1123: 1-1 + b#70 + C.10; M1T.1124: 1-1 + b#71 + C.10; M1T.1125: 1-1 + b#72 + C.10; M1T.1126: 1-1 + b#73 + C.10; M1T.1127: 1-1 + b#74 + C.10; M1T.1128: 1-1 + b#75 + C.10; M1T.1129: 1-1 + b#76 + C.10; M1T.1130: 1-1 + b#77 + C.10; M1T.1131: 1-1 + b#78 + C.10; M1T.1132: 1-1 + b#79 + C.10; M1T.1133: 1-1 + b#80 + C.10; M1T.1134: 1-1 + b#81 + C.10; M1T.1135: 1-1 + b#82 + C.10; M1T.1136: 1-1 + b#83 + C.10; M1T.1137: 1-1 + b#84 + C.10; M1T.1138: 1-1 + b#85 + C.10; M1T.1139: 1-1 + b#86 + C.10; M1T.1140: 1-1 + b#87 + C.10; M1T.1141: 1-1 + b#88 + C.10; M1T.1142: 1-1 + b#89 + C.10; M1T.1143: 1-1 + b#90 + C.10; M1T.1144: 1-1 + b#91 + C.10; M1T.1145: 1-1 + b#92 + C.10; M1T.1146: 1-1 + b#93 + C.10; M1T.1147: 1-1 + b#94 + C.10; M1T.1148: 1-1 + b#95 + C.10; M1T.1149: 1-1 + b#96 + C.10; M1T.1150: 1-1 + b#97 + C.10; M1T.1151: 1-1 + b#98 + C.10; M1T.1152: 1-1 + b#99 + C.10; M1T.1153: 1-1 + b#100 + C.10; M1T.1154: 1-1 + b#101 + C.10; M1T.1155: 1-1 + b#102 + C.10; M1T.1156: 1-1 + b#103 + C.10; M1T.1157: 1-1 + b#104 + C.10; M1T.1158: 1-1 + b#105 + C.10; M1T.1159: 1-1 + b#106 + C.10; M1T.1160: 1-1 + b#107 + C.10; M1T.1161: 1-1 + b#108 + C.10; M1T.1162: 1-1 + b#109 + C.10; M1T.1163: 1-1 + b#110 + C.10; M1T.1164: 1-1 + b#111 + C.10; M1T.1165: 1-1 + b#112 + C.10; M1T.1166: 1-1 + b#113 + C.10; M1T.1167: I-1 + b#114 + C.10; M1T.1168: 1-1 + b#115 + C.10; M1T.1169: 1-1 + b#116 + C.10; M1T.1170: 1-1 + b#117 + C.10; M1T.1171: 1-1 + b#1 + C.11; M1T.1172: 1-1 + b#2 + C.11; M1T.1173: 1-1 + b#3 + C.11; M1T.1174: 1-1 + b#4 + C.11; M1T.1175: 1-1 + b#5 + C.11; M1T.1176: 1-1 + b#6 + C.11; M1T.1177: 1-1 + b#7 + C.11; M1T.1178: 1-1 + b#8 + C.11; M1T.1179: 1-1 + b#9 + C.11; M1T.1180: 1-1 + b#10 + C.11; M1T.1181: 1-1 + b#11 + C.11; M1T.1182: 1-1 + b#12 + C.11; M1T.1183: 1-1 + b#13 + C.11; M1T.1184: 1-1 + b#14 + C.11; M1T.1185: 1-1 + b#15 + C.11; M1T.1186: 1-1 + b#16 + C.11; M1T.1187: 1-1 + b#17 + C.11; M1T.1188: 1-1 + b#18 + C.11; M1T.1189: 1-1 + b#19 + C.11; M1T.1190: 1-1 + b#20 + C.11; M1T.1191: 1-1 + b#21 + C.11; M1T.1192: 1-1 + b#22 + C.11; M1T.1193: 1-1 + b#23 + C.11; M1T.1194: 1-1 + b#24 + C.11; M1T.1195: 1-1 + b#25 + C.11; M1T.1196: 1-1 + b#26 + C.11; M1T.1197: 1-1 + b#27 + C.11; M1T.1198: 1-1 + b#28 + C.11; M1T.1199: 1-1 + b#29 + C.11; M1T.1200: 1-1 + b#30 + C.11; M1T.1201: 1-1 + b#31 + C.11; M1T.1202: 1-1 + b#32 + C.11; M1T.1203: 1-1 + b#33 + C.11; M1T.1204: 1-1 + b#34 + C.11; M1T.1205: 1-1 + b#35 + C.11; M1T.1206: 1-1 + b#36 + C.11; M1T.1207: 1-1 + b#37 + C.11; M1T.1208: 1-1 + b#38 + C.11; M1T.1209: 1-1 + b#39 + C.11; M1T.1210: 1-1 + b#40 + C.11; M1T.1211: 1-1 + b#41 + C.11; M1T.1212: 1-1 + b#42 + C.11; M1T.1213: 1-1 + b#43 + C.11; M1T.1214: 1-1 + b#44 + C.11; M1T.1215: 1-1 + b#45 + C.11; M1T.1216: 1-1 + b#46 + C.11; M1T.1217: 1-1 + b#47 + C.11; M1T.1218: 1-1 + b#48 + C.11; M1T.1219: 1-1 + b#49 + C.11; M1T.1220: 1-1 + b#50 + C.11; M1T.1221: 1-1 + b#51 + C.11; M1T.1222: 1-1 + b#52 + C.11; M1T.1223: 1-1 + b#53 + C.11; M1T.1224: 1-1 + b#54 + C.11; M1T.1225: 1-1 + b#55 + C.11; M1T.1226: 1-1 + b#56 + C.11; M1T.1227: 1-1 + b#57 + C.11; M1T.1228: 1-1 + b#58 + C.11; M1T.1229: 1-1 + b#59 + C.11; M1T.1230: 1-1 + b#60 + C.11; M1T.1231: 1-1 + b#61 + C.11; M1T.1232: 1-1 + b#62 + C.11; M1T.1233: 1-1 + b#63 + C.11; M1T.1234: 1-1 + b#64 + C.11; M1T.1235: 1-1 + b#65 + C.11; M1T.1236: 1-1 + b#66 + C.11; M1T.1237: 1-1 + b#67 + C.11; M1T.1238: 1-1 + b#68 + C.11; M1T.1239: 1-1 + b#69 + C.11; M1T.1240: 1-1 + b#70 + C.11; M1T.1241: 1-1 + b#71 + C.11; M1T.1242: 1-1 + b#72 + C.11; M1T.1243: 1-1 + b#73 + C.11; M1T.1244: 1-1 + b#74 + C.11; M1T.1245: 1-1 + b#75 + C.11; M1T.1246: 1-1 + b#76 + C.11; M1T.1247: 1-1 + b#77 + C.11; M1T.1248: 1-1 + b#78 + C.11; M1T.1249: 1-1 + b#79 + C.11; M1T.1250: 1-1 + b#80 + C.11; M1T.1251: 1-1 + b#81 + C.11; M1T.1252: 1-1 + b#82 + C.11; M1T.1253: 1-1 + b#83 + C.11; M1T.1254: 1-1 + b#84 + C.11; M1T.1255: 1-1 + b#85 + C.11; M1T.1256: 1-1 + b#86 + C.11; M1T.1257: 1-1 + b#87 + C.11; M1T.1258: 1-1 + b#88 + C.11; M1T.1259: 1-1 + b#89 + C.11; M1T.1260: 1-1 + b#90 + C.11; M1T.1261: 1-1 + b#91 + C.11; M1T.1262: 1-1 + b#92 + C.11; M1T.1263: 1-1 + b#93 + C.11; M1T.1264: 1-1 + b#94 + C.11; M1T.1265: 1-1 + b#95 + C.11; M1T.1266: 1-1 + b#96 + C.11; M1T.1267: 1-1 + b#97 + C.11; M1T.1268: 1-1 + b#98 + C.11; M1T.1269: 1-1 + b#99 + C.11; M1T.1270: 1-1 + b#100 + C.11; M1T.1271: 1-1 + b#101 + C.11; M1T.1272: 1-1 + b#102 + C.11; M1T.1273: 1-1 + b#103 + C.11; M1T.1274: 1-1 + b#104 + C.11; M1T.1275: 1-1 + b#105 + C.11; M1T.1276: 1-1 + b#106 + C.11; M1T.1277: 1-1 + b#107 + C.11; M1T.1278: 1-1 + b#108 + C.11; M1T.1279: 1-1 + b#109 + C.11; M1T.1280: 1-1 + b#110 + C.11; M1T.1281: I-1 + b#111 + C.11; M1T.1282: 1-1 + b#112 + C.11; M1T.1283: 1-1 + b#113 + C.11; M1T.1284: 1-1 + b#114 + C.11; M1T.1285: 1-1 + b#115 + C.11; M1T.1286: 1-1 + b#116 + C.11;

[0409] M1T.1287: 1-1 + b#117 + C.11; M1T.1288: 1-1 + b#1 + C.12; M1T.1289: 1-1 + b#2 + C.12; M1T.1290: 1-1 + b#3 + C.12; M1T.1291: 1-1 + b#4 + C.12; M1T.1292: 1-1 + b#5 + C.12;M1T.1293: 1-1 + b#6 + C.12; M1T.1294: 1-1 + b#7 + C.12; M1T.1295: 1-1 + b#8 + C.12; M1T.1296: 1-1 + b#9 + C.12; M1T.1297: 1-1 + b#10 + C.12; M1T.1298: 1-1 + b#11 + C.12; M1T.1299: 1-1 + b#12 + C.12; M1T.1300: 1-1 + b#13 + C.12; M1T.1301: 1-1 + b#14 + C.12; M1T.1302: 1-1 + b#15 + C.12; M1T.1303: 1-1 + b#16 + C.12; M1T.1304: 1-1 + b#17 + C.12; M1T.1305: 1-1 + b#18 + C.12; M1T.1306: 1-1 + b#19 + C.12; M1T.1307: 1-1 + b#20 + C.12; M1T.1308: 1-1 + b#21 + C.12; M1T.1309: 1-1 + b#22 + C.12; M1T.1310: 1-1 + b#23 + C.12; M1T.1311: 1-1 + b#24 + C.12; M1T.1312: 1-1 + b#25 + C.12; M1T.1313: 1-1 + b#26 + C.12; M1T.1314: 1-1 + b#27 + C.12; M1T.1315: 1-1 + b#28 + C.12; M1T.1316: 1-1 + b#29 + C.12; M1T.1317: 1-1 + b#30 + C.12; M1T.1318: 1-1 + b#31 + C.12; M1T.1319: 1-1 + b#32 + C.12; M1T.1320: 1-1 + b#33 + C.12; M1T.1321: 1-1 + b#34 + C.12; M1T.1322: 1-1 + b#35 + C.12; M1T.1323: 1-1 + b#36 + C.12; M1T.1324: 1-1 + b#37 + C.12; M1T.1325: 1-1 + b#38 + C.12; M1T.1326: 1-1 + b#39 + C.12; M1T.1327: 1-1 + b#40 + C.12; M1T.1328: 1-1 + b#41 + C.12; M1T.1329: 1-1 + b#42 + C.12; M1T.1330: 1-1 + b#43 + C.12; M1T.1331: 1-1 + b#44 + C.12; M1T.1332: 1-1 + b#45 + C.12; M1T.1333: 1-1 + b#46 + C.12; M1T.1334: 1-1 + b#47 + C.12; M1T.1335: 1-1 + b#48 + C.12; M1T.1336: 1-1 + b#49 + C.12; M1T.1337: 1-1 + b#50 + C.12; M1T.1338: 1-1 + b#51 + C.12; M1T.1339: 1-1 + b#52 + C.12; M1T.1340: 1-1 + b#53 + C.12; M1T.1341: 1-1 + b#54 + C.12; M1T.1342: 1-1 + b#55 + C.12; M1T.1343: 1-1 + b#56 + C.12; M1T.1344: 1-1 + b#57 + C.12; M1T.1345: 1-1 + b#58 + C.12; M1T.1346: 1-1 + b#59 + C.12; M1T.1347: 1-1 + b#60 + C.12; M1T.1348: 1-1 + b#61 + C.12; M1T.1349: 1-1 + b#62 + C.12; M1T.1350: 1-1 + b#63 + C.12; M1T.1351: 1-1 + b#64 + C.12; M1T.1352: 1-1 + b#65 + C.12; M1T.1353: 1-1 + b#66 + C.12; M1T.1354: 1-1 + b#67 + C.12; M1T.1355: 1-1 + b#68 + C.12; M1T.1356: 1-1 + b#69 + C.12; M1T.1357: 1-1 + b#70 + C.12; M1T.1358: 1-1 + b#71 + C.12; M1T.1359: 1-1 + b#72 + C.12; M1T.1360: 1-1 + b#73 + C.12; M1T.1361: 1-1 + b#74 + C.12; M1T.1362: 1-1 + b#75 + C.12; M1T.1363: 1-1 + b#76 + C.12; M1T.1364: 1-1 + b#77 + C.12; M1T.1365: 1-1 + b#78 + C.12; M1T.1366: 1-1 + b#79 + C.12; M1T.1367: 1-1 + b#80 + C.12; M1T.1368: 1-1 + b#81 + C.12; M1T.1369: 1-1 + b#82 + C.12; M1T.1370: 1-1 + b#83 + C.12; M1T.1371: 1-1 + b#84 + C.12; M1T.1372: 1-1 + b#85 + C.12; M1T.1373: 1-1 + b#86 + C.12; M1T.1374: 1-1 + b#87 + C.12; M1T.1375: 1-1 + b#88 + C.12; M1T.1376: 1-1 + b#89 + C.12; M1T.1377: 1-1 + b#90 + C.12; M1T.1378: 1-1 + b#91 + C.12; M1T.1379: 1-1 + b#92 + C.12; M1T.1380: 1-1 + b#93 + C.12; M1T.1381: 1-1 + b#94 + C.12; M1T.1382: 1-1 + b#95 + C.12; M1T.1383: 1-1 + b#96 + C.12; M1T.1384: 1-1 + b#97 + C.12; M1T.1385: 1-1 + b#98 + C.12; M1T.1386: 1-1 + b#99 + C.12; M1T.1387: 1-1 + b#100 + C.12; M1T.1388: 1-1 + b#101 + C.12; M1T.1389: 1-1 + b#102 + C.12; M1T.1390: 1-1 + b#103 + C.12; M1T.1391: 1-1 + b#104 + C.12; M1T.1392: 1-1 + b#105 + C.12; M1T.1393: 1-1 + b#106 + C.12; M1T.1394: 1-1 + b#107 + C.12; M1T.1395: 1-1 + b#108 + C.12; M1T.1396: 1-1 + b#109 + C.12; M1T.1397: 1-1 + b#110 + C.12; M1T.1398: 1-1 + b#111 + C.12; M1T.1399: 1-1 + b#112 + C.12; M1T.1400: 1-1 + b#113 + C.12; M1T.1401: 1-1 + b#114 + C.12; M1T.1402: 1-1 + b#115 + C.12; M1T.1403: I-1 + b#116 + C.12; M1T.1404: 1-1 + b#117 + C.12; M1T.1405: 1-1 + b#1 + C.13; M1T.1406: I-1 + b#2 + C.13; M1T.1407: 1-1 + b#3 + C.13; M1T.1408: 1-1 + b#4 + C.13; M1T.1409: 1-1 + b#5 + C.13; M1T.1410: 1-1 + b#6 + C.13; M1T.1411: 1-1 + b#7 + C.13; M1T.1412: 1-1 + b#8 + C.13; M1T.1413: 1-1 + b#9 + C.13; M1T.1414: 1-1 + b#10 + C.13; M1T.1415: 1-1 + b#11 + C.13; M1T.1416: 1-1 + b#12 + C.13; M1T.1417: 1-1 + b#13 + C.13; M1T.1418: 1-1 + b#14 +C.13; M1T.1419: 1-1 + b#15 + C.13; M1T.1420: 1-1 + b#16 + C.13; M1T.1421: 1-1 + b#17 + C.13; M1T.1422: 1-1 + b#18 + C.13; M1T.1423: 1-1 + b#19 + C.13; M1T.1424: 1-1 + b#20 + C.13; M1T.1425: 1-1 + b#21 + C.13; M1T.1426: 1-1 + b#22 + C.13; M1T.1427: 1-1 + b#23 + C.13; M1T.1428: 1-1 + b#24 + C.13; M1T.1429: 1-1 + b#25 + C.13; M1T.1430: 1-1 + b#26 + C.13; M1T.1431: 1-1 + b#27 + C.13; M1T.1432: 1-1 + b#28 + C.13; M1T.1433: 1-1 + b#29 + C.13; M1T.1434: 1-1 + b#30 + C.13; M1T.1435: 1-1 + b#31 + C.13; M1T.1436: 1-1 + b#32 + C.13; M1T.1437: 1-1 + b#33 + C.13; M1T.1438: 1-1 + b#34 + C.13; M1T.1439: 1-1 + b#35 + C.13; M1T.1440: 1-1 + b#36 + C.13; M1T.1441: 1-1 + b#37 + C.13; M1T.1442: 1-1 + b#38 + C.13; M1T.1443: 1-1 + b#39 + C.13; M1T.1444: 1-1 + b#40 + C.13; M1T.1445: 1-1 + b#41 + C.13; M1T.1446: 1-1 + b#42 + C.13; M1T.1447: 1-1 + b#43 + C.13; M1T.1448: 1-1 + b#44 + C.13; M1T.1449: 1-1 + b#45 + C.13; M1T.1450: 1-1 + b#46 + C.13; M1T.1451: 1-1 + b#47 + C.13; M1T.1452: 1-1 + b#48 + C.13; M1T.1453: 1-1 + b#49 + C.13; M1T.1454: 1-1 + b#50 + C.13; M1T.1455: 1-1 + b#51 + C.13; M1T.1456: 1-1 + b#52 + C.13; M1T.1457: 1-1 + b#53 + C.13; M1T.1458: 1-1 + b#54 + C.13; M1T.1459: 1-1 + b#55 + C.13; M1T.1460: 1-1 + b#56 + C.13; M1T.1461: 1-1 + b#57 + C.13; M1T.1462: 1-1 + b#58 + C.13; M1T.1463: 1-1 + b#59 + C.13; M1T.1464: 1-1 + b#60 + C.13; M1T.1465: 1-1 + b#61 + C.13; M1T.1466: 1-1 + b#62 + C.13; M1T.1467: 1-1 + b#63 + C.13; M1T.1468: 1-1 + b#64 + C.13; M1T.1469: 1-1 + b#65 + C.13; M1T.1470: 1-1 + b#66 + C.13; M1T.1471: 1-1 + b#67 + C.13; M1T.1472: 1-1 + b#68 + C.13; M1T.1473: 1-1 + b#69 + C.13; M1T.1474: 1-1 + b#70 + C.13; M1T.1475: 1-1 + b#71 + C.13; M1T.1476: 1-1 + b#72 + C.13; M1T.1477: 1-1 + b#73 + C.13; M1T.1478: 1-1 + b#74 + C.13; M1T.1479: 1-1 + b#75 + C.13; M1T.1480: 1-1 + b#76 + C.13; M1T.1481: 1-1 + b#77 + C.13; M1T.1482: 1-1 + b#78 + C.13; M1T.1483: 1-1 + b#79 + C.13; M1T.1484: 1-1 + b#80 + C.13; M1T.1485: 1-1 + b#81 + C.13; M1T.1486: 1-1 + b#82 + C.13; M1T.1487: 1-1 + b#83 + C.13; M1T.1488: 1-1 + b#84 + C.13; M1T.1489: 1-1 + b#85 + C.13; M1T.1490: 1-1 + b#86 + C.13; M1T.1491: 1-1 + b#87 + C.13; M1T.1492: 1-1 + b#88 + C.13; M1T.1493: 1-1 + b#89 + C.13; M1T.1494: 1-1 + b#90 + C.13; M1T.1495: 1-1 + b#91 + C.13; M1T.1496: 1-1 + b#92 + C.13; M1T.1497: 1-1 + b#93 + C.13; M1T.1498: 1-1 + b#94 + C.13; M1T.1499: 1-1 + b#95 + C.13; M1T.1500: 1-1 + b#96 + C.13; M1T.1501: 1-1 + b#97 + C.13; M1T.1502: 1-1 + b#98 + C.13; M1T.1503: 1-1 + b#99 + C.13; M1T.1504: 1-1 + b#100 + C.13; M1T.1505: 1-1 + b#101 + C.13; M1T.1506: 1-1 + b#102 + C.13; M1T.1507: 1-1 + b#103 + C.13; M1T.1508: 1-1 + b#104 + C.13; M1T.1509: 1-1 + b#105 + C.13; M1T.1510: 1-1 + b#106 + C.13; M1T.1511: 1-1 + b#107 + C.13; M1T.1512: 1-1 + b#108 + C.13; M1T.1513: 1-1 + b#109 + C.13; M1T.1514: 1-1 + b#110 + C.13; M1T.1515: 1-1 + b#111 + C.13; M1T.1516: 1-1 + b#112 + C.13; M1T.1517: I-1 + b#113 + C.13; M1T.1518: 1-1 + b#114 + C.13; M1T.1519: 1-1 + b#115 + C.13; M1T.1520: 1-1 + b#116 + C.13; M1T.1521: 1-1 + b#117 + C.13; M1T.1522: 1-1 + b#1 + C.14; M1T.1523: 1-1 + b#2 + C.14; M1T.1524: 1-1 + b#3 + C.14; M1T.1525: 1-1 + b#4 + C.14; M1T.1526: 1-1 + b#5 + C.14; M1T.1527: 1-1 + b#6 + C.14; M1T.1528: 1-1 + b#7 + C.14; M1T.1529: 1-1 + b#8 + C.14; M1T.1530: 1-1 + b#9 + C.14; M1T.1531: 1-1 + b#10 + C.14; M1T.1532: 1-1 + b#11 + C.14; M1T.1533: 1-1 + b#12 + C.14; M1T.1534: 1-1 + b#13 + C.14; M1T.1535: 1-1 + b#14 + C.14; M1T.1536: 1-1 + b#15 + C.14; M1T.1537: 1-1 + b#16 + C.14; M1T.1538: 1-1 + b#17 + C.14; M1T.1539: 1-1 + b#18 + C.14; M1T.1540: 1-1 + b#19 + C.14; M1T.1541: 1-1 + b#20 + C.14; M1T.1542: 1-1 + b#21 + C.14; M1T.1543: 1-1 + b#22 + C.14; M1T.1544: 1-1 + b#23 +C.14; M1T.1545: 1-1 + b#24 + C.14; M1T.1546: 1-1 + b#25 + C.14; M1T.1547: 1-1 + b#26 + C.14; M1T.1548: 1-1 + b#27 + C.14; M1T.1549: 1-1 + b#28 + C.14; M1T.1550: 1-1 + b#29 + C.14; M1T.1551: 1-1 + b#30 + C.14; M1T.1552: 1-1 + b#31 + C.14; M1T.1553: 1-1 + b#32 + C.14; M1T.1554: 1-1 + b#33 + C.14; M1T.1555: 1-1 + b#34 + C.14; M1T.1556: 1-1 + b#35 + C.14; M1T.1557: 1-1 + b#36 + C.14; M1T.1558: 1-1 + b#37 + C.14; M1T.1559: 1-1 + b#38 + C.14; M1T.1560: 1-1 + b#39 + C.14; M1T.1561: 1-1 + b#40 + C.14; M1T.1562: 1-1 + b#41 + C.14; M1T.1563: 1-1 + b#42 + C.14; M1T.1564: 1-1 + b#43 + C.14; M1T.1565: 1-1 + b#44 + C.14; M1T.1566: 1-1 + b#45 + C.14; M1T.1567: 1-1 + b#46 + C.14; M1T.1568: 1-1 + b#47 + C.14; M1T.1569: 1-1 + b#48 + C.14; M1T.1570: 1-1 + b#49 + C.14; M1T.1571: 1-1 + b#50 + C.14; M1T.1572: 1-1 + b#51 + C.14; M1T.1573: 1-1 + b#52 + C.14; M1T.1574: 1-1 + b#53 + C.14; M1T.1575: 1-1 + b#54 + C.14; M1T.1576: 1-1 + b#55 + C.14; M1T.1577: 1-1 + b#56 + C.14; M1T.1578: 1-1 + b#57 + C.14; M1T.1579: 1-1 + b#58 + C.14; M1T.1580: 1-1 + b#59 + C.14; M1T.1581: 1-1 + b#60 + C.14; M1T.1582: 1-1 + b#61 + C.14; M1T.1583: 1-1 + b#62 + C.14; M1T.1584: 1-1 + b#63 + C.14; M1T.1585: 1-1 + b#64 + C.14; M1T.1586: 1-1 + b#65 + C.14; M1T.1587: 1-1 + b#66 + C.14; M1T.1588: 1-1 + b#67 + C.14; M1T.1589: 1-1 + b#68 + C.14; M1T.1590: 1-1 + b#69 + C.14; M1T.1591: 1-1 + b#70 + C.14; M1T.1592: 1-1 + b#71 + C.14; M1T.1593: 1-1 + b#72 + C.14; M1T.1594: 1-1 + b#73 + C.14; M1T.1595: 1-1 + b#74 + C.14; M1T.1596: 1-1 + b#75 + C.14; M1T.1597: 1-1 + b#76 + C.14; M1T.1598: 1-1 + b#77 + C.14; M1T.1599: 1-1 + b#78 + C.14; M1T.1600: 1-1 + b#79 + C.14; M1T.1601: 1-1 + b#80 + C.14; M1T.1602: 1-1 + b#81 + C.14; M1T.1603: 1-1 + b#82 + C.14; M1T.1604: 1-1 + b#83 + C.14; M1T.1605: 1-1 + b#84 + C.14; M1T.1606: 1-1 + b#85 + C.14; M1T.1607: 1-1 + b#86 + C.14; M1T.1608: 1-1 + b#87 + C.14; M1T.1609: 1-1 + b#88 + C.14; M1T.1610: 1-1 + b#89 + C.14; M1T.1611: 1-1 + b#90 + C.14; M1T.1612: 1-1 + b#91 + C.14; M1T.1613: 1-1 + b#92 + C.14; M1T.1614: 1-1 + b#93 + C.14; M1T.1615: 1-1 + b#94 + C.14; M1T.1616: 1-1 + b#95 + C.14; M1T.1617: 1-1 + b#96 + C.14; M1T.1618: 1-1 + b#97 + C.14; M1T.1619: 1-1 + b#98 + C.14; M1T.1620: 1-1 + b#99 + C.14; M1T.1621: 1-1 + b#100 + C.14; M1T.1622: 1-1 + b#101 + C.14; M1T.1623: 1-1 + b#102 + C.14; M1T.1624: 1-1 + b#103 + C.14; M1T.1625: 1-1 + b#104 + C.14; M1T.1626: 1-1 + b#105 + C.14; M1T.1627: 1-1 + b#106 + C.14; M1T.1628: 1-1 + b#107 + C.14; M1T.1629: 1-1 + b#108 + C.14; M1T.1630: 1-1 + b#109 + C.14; M1T.1631: 1-1 + b#110 + C.14; M1T.1632: 1-1 + b#111 + C.14; M1T.1633: 1-1 + b#112 + C.14; M1T.1634: I-1 + b#113 + C.14; M1T.1635: 1-1 + b#114 + C.14; M1T.1636: 1-1 + b#115 + C.14; M1T.1637: 1-1 + b#116 + C.14; M1T.1638: 1-1 + b#117 + C.14; M1T.1639: 1-1 + b#1 + C.15; M1T.1640: 1-1 + b#2 + C.15; M1T.1641: 1-1 + b#3 + C.15; M1T.1642: 1-1 + b#4 + C.15; M1T.1643: 1-1 + b#5 + C.15; M1T.1644: 1-1 + b#6 + C.15; M1T.1645: 1-1 + b#7 + C.15; M1T.1646: 1-1 + b#8 + C.15; M1T.1647: 1-1 + b#9 + C.15; M1T.1648: 1-1 + b#10 + C.15; M1T.1649: 1-1 + b#11 + C.15; M1T.1650: 1-1 + b#12 + C.15; M1T.1651: 1-1 + b#13 + C.15; M1T.1652: 1-1 + b#14 + C.15; M1T.1653: 1-1 + b#15 + C.15; M1T.1654: 1-1 + b#16 + C.15; M1T.1655: 1-1 + b#17 + C.15; M1T.1656: 1-1 + b#18 + C.15; M1T.1657: 1-1 + b#19 + C.15; M1T.1658: 1-1 + b#20 + C.15; M1T.1659: 1-1 + b#21 + C.15; M1T.1660: 1-1 + b#22 + C.15; M1T.1661: 1-1 + b#23 + C.15; M1T.1662: 1-1 + b#24 + C.15; M1T.1663: 1-1 + b#25 + C.15; M1T.1664: 1-1 + b#26 + C.15; M1T.1665: 1-1 + b#27 + C.15; M1T.1666: 1-1 + b#28 + C.15; M1T.1667: 1-1 + b#29 + C.15; M1T.1668: 1-1 + b#30 + C.15; M1T.1669: 1-1 + b#31 + C.15; M1T.1670: 1-1 + b#32 +C.15; M1T.1671: 1-1 + b#33 + C.15; M1T.1672: 1-1 + b#34 + C.15; M1T.1673: 1-1 + b#35 + C.15; M1T.1674: 1-1 + b#36 + C.15; M1T.1675: 1-1 + b#37 + C.15; M1T.1676: 1-1 + b#38 + C.15; M1T.1677: 1-1 + b#39 + C.15; M1T.1678: 1-1 + b#40 + C.15; M1T.1679: 1-1 + b#41 + C.15; M1T.1680: 1-1 + b#42 + C.15; M1T.1681: 1-1 + b#43 + C.15; M1T.1682: 1-1 + b#44 + C.15; M1T.1683: 1-1 + b#45 + C.15; M1T.1684: 1-1 + b#46 + C.15; M1T.1685: 1-1 + b#47 + C.15; M1T.1686: 1-1 + b#48 + C.15; M1T.1687: 1-1 + b#49 + C.15; M1T.1688: 1-1 + b#50 + C.15; M1T.1689: 1-1 + b#51 + C.15; M1T.1690: 1-1 + b#52 + C.15; M1T.1691: 1-1 + b#53 + C.15; M1T.1692: 1-1 + b#54 + C.15; M1T.1693: 1-1 + b#55 + C.15; M1T.1694: 1-1 + b#56 + C.15; M1T.1695: 1-1 + b#57 + C.15; M1T.1696: 1-1 + b#58 + C.15; M1T.1697: 1-1 + b#59 + C.15; M1T.1698: 1-1 + b#60 + C.15; M1T.1699: 1-1 + b#61 + C.15; M1T.1700: 1-1 + b#62 + C.15; M1T.1701: 1-1 + b#63 + C.15; M1T.1702: 1-1 + b#64 + C.15; M1T.1703: 1-1 + b#65 + C.15; M1T.1704: 1-1 + b#66 + C.15; M1T.1705: 1-1 + b#67 + C.15; M1T.1706: 1-1 + b#68 + C.15; M1T.1707: 1-1 + b#69 + C.15; M1T.1708: 1-1 + b#70 + C.15; M1T.1709: 1-1 + b#71 + C.15; M1T.1710: 1-1 + b#72 + C.15; M1T.1711: 1-1 + b#73 + C.15; M1T.1712: 1-1 + b#74 + C.15; M1T.1713: 1-1 + b#75 + C.15; M1T.1714: 1-1 + b#76 + C.15; M1T.1715: 1-1 + b#77 + C.15; M1T.1716: 1-1 + b#78 + C.15; M1T.1717: 1-1 + b#79 + C.15; M1T.1718: 1-1 + b#80 + C.15; M1T.1719: 1-1 + b#81 + C.15; M1T.1720: 1-1 + b#82 + C.15; M1T.1721: 1-1 + b#83 + C.15; M1T.1722: 1-1 + b#84 + C.15; M1T.1723: 1-1 + b#85 + C.15; M1T.1724: 1-1 + b#86 + C.15; M1T.1725: 1-1 + b#87 + C.15; M1T.1726: 1-1 + b#88 + C.15; M1T.1727: 1-1 + b#89 + C.15; M1T.1728: 1-1 + b#90 + C.15; M1T.1729: 1-1 + b#91 + C.15; M1T.1730: 1-1 + b#92 + C.15; M1T.1731: 1-1 + b#93 + C.15; M1T.1732: 1-1 + b#94 + C.15; M1T.1733: 1-1 + b#95 + C.15; M1T.1734: 1-1 + b#96 + C.15; M1T.1735: 1-1 + b#97 + C.15; M1T.1736: 1-1 + b#98 + C.15; M1T.1737: 1-1 + b#99 + C.15; M1T.1738: 1-1 + b#100 + C.15; M1T.1739: 1-1 + b#101 + C.15; M1T.1740: 1-1 + b#102 + C.15; M1T.1741: 1-1 + b#103 + C.15; M1T.1742: 1-1 + b#104 + C.15; M1T.1743: 1-1 + b#105 + C.15; M1T.1744: 1-1 + b#106 + C.15; M1T.1745: 1-1 + b#107 + C.15; M1T.1746: 1-1 + b#108 + C.15; M1T.1747: 1-1 + b#109 + C.15; M1T.1748: 1-1 + b#110 + C.15; M1T.1749: 1-1 + b#111 + C.15; M1T.1750: 1-1 + b#112 + C.15; M1T.1751: I-1 + b#113 + C.15; M1T.1752: 1-1 + b#114 + C.15; M1T.1753: 1-1 + b#115 + C.15; M1T.1754: 1-1 + b#116 + C.15; M1T.1755: 1-1 + b#117 + C.15; M1T.1756: 1-1 + b#1 + C.16; M1T.1757: 1-1 + b#2 + C.16; M1T.1758: 1-1 + b#3 + C.16; M1T.1759: 1-1 + b#4 + C.16; M1T.1760: 1-1 + b#5 + C.16; M1T.1761: 1-1 + b#6 + C.16; M1T.1762: 1-1 + b#7 + C.16; M1T.1763: 1-1 + b#8 + C.16; M1T.1764: 1-1 + b#9 + C.16; M1T.1765: 1-1 + b#10 + C.16; M1T.1766: 1-1 + b#11 + C.16; M1T.1767: 1-1 + b#12 + C.16; M1T.1768: 1-1 + b#13 + C.16; M1T.1769: 1-1 + b#14 + C.16; M1T.1770: 1-1 + b#15 + C.16; M1T.1771: 1-1 + b#16 + C.16; M1T.1772: 1-1 + b#17 + C.16; M1T.1773: 1-1 + b#18 + C.16; M1T.1774: 1-1 + b#19 + C.16; M1T.1775: 1-1 + b#20 + C.16; M1T.1776: 1-1 + b#21 + C.16; M1T.1777: 1-1 + b#22 + C.16; M1T.1778: 1-1 + b#23 + C.16; M1T.1779: 1-1 + b#24 + C.16; M1T.1780: 1-1 + b#25 + C.16; M1T.1781: 1-1 + b#26 + C.16; M1T.1782: 1-1 + b#27 + C.16; M1T.1783: 1-1 + b#28 + C.16; M1T.1784: 1-1 + b#29 + C.16; M1T.1785: 1-1 + b#30 + C.16; M1T.1786: 1-1 + b#31 + C.16; M1T.1787: 1-1 + b#32 + C.16; M1T.1788: 1-1 + b#33 + C.16; M1T.1789: 1-1 + b#34 + C.16; M1T.1790: 1-1 + b#35 + C.16; M1T.1791: 1-1 + b#36 + C.16; M1T.1792: 1-1 + b#37 + C.16; M1T.1793: 1-1 + b#38 + C.16; M1T.1794: 1-1 + b#39 + C.16; M1T.1795: 1-1 + b#40 + C.16; M1T.1796: 1-1 + b#41 +C.16; M1T.1797: 1-1 + b#42 + C.16; M1T.1798: 1-1 + b#43 + C.16; M1T.1799: 1-1 + b#44 + C.16; M1T.1800: 1-1 + b#45 + C.16; M1T.1801: 1-1 + b#46 + C.16; M1T.1802: 1-1 + b#47 + C.16; M1T.1803: 1-1 + b#48 + C.16; M1T.1804: 1-1 + b#49 + C.16; M1T.1805: 1-1 + b#50 + C.16; M1T.1806: 1-1 + b#51 + C.16; M1T.1807: 1-1 + b#52 + C.16; M1T.1808: 1-1 + b#53 + C.16; M1T.1809: 1-1 + b#54 + C.16; M1T.1810: 1-1 + b#55 + C.16; M1T.1811: 1-1 + b#56 + C.16; M1T.1812: 1-1 + b#57 + C.16; M1T.1813: 1-1 + b#58 + C.16; M1T.1814: 1-1 + b#59 + C.16; M1T.1815: 1-1 + b#60 + C.16; M1T.1816: 1-1 + b#61 + C.16; M1T.1817: 1-1 + b#62 + C.16; M1T.1818: 1-1 + b#63 + C.16; M1T.1819: 1-1 + b#64 + C.16; M1T.1820: 1-1 + b#65 + C.16; M1T.1821: 1-1 + b#66 + C.16; M1T.1822: 1-1 + b#67 + C.16; M1T.1823: 1-1 + b#68 + C.16; M1T.1824: 1-1 + b#69 + C.16; M1T.1825: 1-1 + b#70 + C.16; M1T.1826: 1-1 + b#71 + C.16; M1T.1827: 1-1 + b#72 + C.16; M1T.1828: 1-1 + b#73 + C.16; M1T.1829: 1-1 + b#74 + C.16; M1T.1830: 1-1 + b#75 + C.16; M1T.1831: 1-1 + b#76 + C.16; M1T.1832: 1-1 + b#77 + C.16; M1T.1833: 1-1 + b#78 + C.16; M1T.1834: 1-1 + b#79 + C.16; M1T.1835: 1-1 + b#80 + C.16; M1T.1836: 1-1 + b#81 + C.16; M1T.1837: 1-1 + b#82 + C.16; M1T.1838: 1-1 + b#83 + C.16; M1T.1839: 1-1 + b#84 + C.16; M1T.1840: 1-1 + b#85 + C.16; M1T.1841: 1-1 + b#86 + C.16; M1T.1842: 1-1 + b#87 + C.16; M1T.1843: 1-1 + b#88 + C.16; M1T.1844: 1-1 + b#89 + C.16; M1T.1845: 1-1 + b#90 + C.16; M1T.1846: 1-1 + b#91 + C.16; M1T.1847: 1-1 + b#92 + C.16; M1T.1848: 1-1 + b#93 + C.16; M1T.1849: 1-1 + b#94 + C.16; M1T.1850: 1-1 + b#95 + C.16; M1T.1851: 1-1 + b#96 + C.16; M1T.1852: 1-1 + b#97 + C.16; M1T.1853: 1-1 + b#98 + C.16; M1T.1854: 1-1 + b#99 + C.16; M1T.1855: 1-1 + b#100 + C.16; M1T.1856: 1-1 + b#101 + C.16; M1T.1857: 1-1 + b#102 + C.16; M1T.1858: 1-1 + b#103 + C.16; M1T.1859: 1-1 + b#104 + C.16; M1T.1860: 1-1 + b#105 + C.16; M1T.1861: 1-1 + b#106 + C.16; M1T.1862: 1-1 + b#107 + C.16; M1T.1863: 1-1 + b#108 + C.16; M1T.1864: 1-1 + b#109 + C.16; M1T.1865: 1-1 + b#110 + C.16; M1T.1866: 1-1 + b#111 + C.16; M1T.1867: 1-1 + b#112 + C.16; M1T.1868: I-1 + b#113 + C.16; M1T.1869: 1-1 + b#114 + C.16; M1T.1870: 1-1 + b#115 + C.16; M1T.1871: 1-1 + b#116 + C.16; M1T.1872: 1-1 + b#117 + C.16; M1T.1873: 1-1 + b#1 + C.17; M1T.1874: 1-1 + b#2 + C.17; M1T.1875: 1-1 + b#3 + C.17; M1T.1876: 1-1 + b#4 + C.17; M1T.1877: 1-1 + b#5 + C.17; M1T.1878: 1-1 + b#6 + C.17; M1T.1879: 1-1 + b#7 + C.17; M1T.1880: 1-1 + b#8 + C.17; M1T.1881: 1-1 + b#9 + C.17; M1T.1882: 1-1 + b#10 + C.17; M1T.1883: 1-1 + b#11 + C.17; M1T.1884: 1-1 + b#12 + C.17; M1T.1885: 1-1 + b#13 + C.17; M1T.1886: 1-1 + b#14 + C.17; M1T.1887: 1-1 + b#15 + C.17; M1T.1888: 1-1 + b#16 + C.17; M1T.1889: 1-1 + b#17 + C.17; M1T.1890: 1-1 + b#18 + C.17; M1T.1891: 1-1 + b#19 + C.17; M1T.1892: 1-1 + b#20 + C.17; M1T.1893: 1-1 + b#21 + C.17; M1T.1894: 1-1 + b#22 + C.17; M1T.1895: 1-1 + b#23 + C.17; M1T.1896: 1-1 + b#24 + C.17; M1T.1897: 1-1 + b#25 + C.17; M1T.1898: 1-1 + b#26 + C.17; M1T.1899: 1-1 + b#27 + C.17; M1T.1900: 1-1 + b#28 + C.17; M1T.1901: 1-1 + b#29 + C.17; M1T.1902: 1-1 + b#30 + C.17; M1T.1903: 1-1 + b#31 + C.17; M1T.1904: 1-1 + b#32 + C.17; M1T.1905: 1-1 + b#33 + C.17; M1T.1906: 1-1 + b#34 + C.17; M1T.1907: 1-1 + b#35 + C.17; M1T.1908: 1-1 + b#36 + C.17; M1T.1909: 1-1 + b#37 + C.17; M1T.1910: 1-1 + b#38 + C.17; M1T.1911: 1-1 + b#39 + C.17; M1T.1912: 1-1 + b#40 + C.17; M1T.1913: 1-1 + b#41 + C.17; M1T.1914: 1-1 + b#42 + C.17; M1T.1915: 1-1 + b#43 + C.17; M1T.1916: 1-1 + b#44 + C.17; M1T.1917: 1-1 + b#45 + C.17; M1T.1918: 1-1 + b#46 + C.17; M1T.1919: 1-1 + b#47 + C.17; M1T.1920: 1-1 + b#48 + C.17; M1T.1921: 1-1 + b#49 + C.17; M1T.1922: 1-1 + b#50 +C.17; M1T.1923: 1-1 + b#51 + C.17; M1T.1924: 1-1 + b#52 + C.17; M1T.1925: 1-1 + b#53 + C.17; M1T.1926: 1-1 + b#54 + C.17; M1T.1927: 1-1 + b#55 + C.17; M1T.1928: 1-1 + b#56 + C.17; M1T.1929: 1-1 + b#57 + C.17; M1T.1930: 1-1 + b#58 + C.17; M1T.1931: 1-1 + b#59 + C.17; M1T.1932: 1-1 + b#60 + C.17; M1T.1933: 1-1 + b#61 + C.17; M1T.1934: 1-1 + b#62 + C.17; M1T.1935: 1-1 + b#63 + C.17; M1T.1936: 1-1 + b#64 + C.17; M1T.1937: 1-1 + b#65 + C.17; M1T.1938: 1-1 + b#66 + C.17; M1T.1939: 1-1 + b#67 + C.17; M1T.1940: 1-1 + b#68 + C.17; M1T.1941: 1-1 + b#69 + C.17; M1T.1942: 1-1 + b#70 + C.17; M1T.1943: 1-1 + b#71 + C.17; M1T.1944: 1-1 + b#72 + C.17; M1T.1945: 1-1 + b#73 + C.17; M1T.1946: 1-1 + b#74 + C.17; M1T.1947: 1-1 + b#75 + C.17; M1T.1948: 1-1 + b#76 + C.17; M1T.1949: 1-1 + b#77 + C.17; M1T.1950: 1-1 + b#78 + C.17; M1T.1951: 1-1 + b#79 + C.17; M1T.1952: 1-1 + b#80 + C.17; M1T.1953: 1-1 + b#81 + C.17; M1T.1954: 1-1 + b#82 + C.17; M1T.1955: 1-1 + b#83 + C.17; M1T.1956: 1-1 + b#84 + C.17; M1T.1957: 1-1 + b#85 + C.17; M1T.1958: 1-1 + b#86 + C.17; M1T.1959: 1-1 + b#87 + C.17; M1T.1960: 1-1 + b#88 + C.17; M1T.1961: 1-1 + b#89 + C.17; M1T.1962: 1-1 + b#90 + C.17; M1T.1963: 1-1 + b#91 + C.17; M1T.1964: 1-1 + b#92 + C.17; M1T.1965: 1-1 + b#93 + C.17; M1T.1966: 1-1 + b#94 + C.17; M1T.1967: 1-1 + b#95 + C.17; M1T.1968: 1-1 + b#96 + C.17; M1T.1969: 1-1 + b#97 + C.17; M1T.1970: 1-1 + b#98 + C.17; M1T.1971: 1-1 + b#99 + C.17; M1T.1972: 1-1 + b#100 + C.17; M1T.1973: 1-1 + b#101 + C.17; M1T.1974: 1-1 + b#102 + C.17; M1T.1975: 1-1 + b#103 + C.17; M1T.1976: 1-1 + b#104 + C.17; M1T.1977: 1-1 + b#105 + C.17; M1T.1978: 1-1 + b#106 + C.17; M1T.1979: 1-1 + b#107 + C.17; M1T.1980: 1-1 + b#108 + C.17; M1T.1981: 1-1 + b#109 + C.17; M1T.1982: 1-1 + b#110 + C.17; M1T.1983: 1-1 + b#111 + C.17; M1T.1984: 1-1 + b#112 + C.17; M1T.1985: I-1 + b#113 + C.17; M1T.1986: 1-1 + b#114 + C.17; M1T.1987: 1-1 + b#115 + C.17; M1T.1988: 1-1 + b#116 + C.17; M1T.1989: 1-1 + b#117 + C.17; M1T.1990: 1-1 + b#118 + C.1 M1T.1991: 1-1 + b#118 + C.2; M1T.1992: 1-1 + b#118 + C.3; M1T.1993: 1-1 + b#118 + C.4; M1T.1994: 1-1 + b#118 + C.5; M1T.1995: 1-1 + b#118 + C.6; M1T.1996: 1-1 + b#118 + C.7; M1T.1997: 1-1 + b#118 + C.8; M1T.1998: 1-1 + b#118 + C.9; M1T.1999: 1-1 + b#118 + C.10; M1T.2000: 1-1 + b#118 + C.11 ; M1T.2001: 1-1 + b#118 + C.12; M1T.2002: 1-1 + b#118 + .13; M1T.2003: 1-1 + b#118 + C.14; M1T.2004: 1-1 + b#118 + C.15; M1T.2005: 1-1 + b#118 + .16; M1T.2006: 1-1 + b#118 + C.17; M1T.2007: 1-1 + b#119 + C.1; M1T.2008: 1-1 + b#119 + C.2; M1T.2009: 1-1 + b#119 + C.3; M1T.2010: 1-1 + b#119 + C.4; M1T.2011: 1-1 + b#119 + C.5; M1T.2012: 1-1 + b#119 + C.6; M1T.2013: 1-1 + b#119 + C.7; M1T.2014: 1-1 + b#119 + C.8; M1T.2015: 1-1 + b#119 + C.9; M1T.2016: 1-1 + b#119 + C.10; M1T.2017: 1-1 + b#119 + C.11 ; M1T.2018: 1-1 + b#119 + C.12; M1T.2019: 1-1 + b#119 + C.13; M1T.2020: 1-1 + b#119 + C.14; M1T.2021: 1-1 + b#119 + C.15; M1T.2022: 1-1 + b#119 + C.16; M1T.2023: 1-1 + b#119 + C.17.

[0410] Also preferred are the quarternary compositions M1Q1.1 to M1Q117.2023 mentioned below in Table 3. These compositions comprise as component A compound 1-1 and as component B two herbicides B, whereas the first herbicide B is as identified in the corresponding tertiary compositions and a second, additional herbicide B, and one safener C.

[0411] Table 3:Compositions M1Q1.1 to M1Q1.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#1.

[0412] Compositions M1Q2.1 to M1Q2.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#2.

[0413] Compositions M1Q3.1 to M1Q3.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#3.

[0414] Compositions M1Q4.1 to M1Q4.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#4.

[0415] Compositions M1Q5.1 to M1Q5.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#5.

[0416] Compositions M1Q6.1 to M1Q6.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#6.

[0417] Compositions M1Q7.1 to M1Q7.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#7.

[0418] Compositions M1Q8.1 to M1Q8.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#8.

[0419] Compositions M1Q9.1 to M1Q9.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#9.

[0420] Compositions M1Q10.1 to M1Q10.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#10.

[0421] Compositions M1Q11.1 to M1Q11.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#11.

[0422] Compositions M1Q12.1 to M1Q12.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#12.Compositions M1Q13.1 to M1Q13.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#13.

[0423] Compositions M1Q14.1 to M1Q14.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#14.

[0424] Compositions M1Q15.1 to M1Q15.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#15.

[0425] Compositions M1Q16.1 to M1Q16.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#16.

[0426] Compositions M1Q17.1 to M1Q17.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#17.

[0427] Compositions M1Q18.1 to M1Q18.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#18.

[0428] Compositions M1Q19.1 to M1Q19.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#19.

[0429] Compositions M1Q20.1 to M1Q20.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#20.

[0430] Compositions M1Q21.1 to M1Q21.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#21.

[0431] Compositions M1Q22.1 to M1Q22.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#22.

[0432] Compositions M1Q23.1 to M1Q23.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#23.

[0433] Compositions M1Q24.1 to M1Q24.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#24.Compositions M1Q25.1 to M1Q25.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#25.

[0434] Compositions M1Q26.1 to M1Q26.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#26.

[0435] Compositions M1Q27.1 to M1Q27.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#27.

[0436] Compositions M1Q28.1 to M1Q28.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#28.

[0437] Compositions M1Q29.1 to M1Q29.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#29.

[0438] Compositions M 1 Q30.1 to M 1 Q30.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#30.

[0439] Compositions M1Q31.1 to M1Q31.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#31.

[0440] Compositions M1Q32.1 to M1Q32.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#32.

[0441] Compositions M 1 Q33.1 to M 1 Q33.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#33.

[0442] Compositions M1Q34.1 to M1Q34.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#34.

[0443] Compositions M 1 Q35.1 to M 1 Q35.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#35.

[0444] Compositions M1Q36.1 to M1Q36.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#36.Compositions M 1 Q37.1 to M 1 Q37.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#37.

[0445] Compositions M 1 Q38.1 to M 1 Q38.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#38.

[0446] Compositions M 1 Q39.1 to M 1 Q39.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#39.

[0447] Compositions M1Q40.1 to M1Q40.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#40.

[0448] Compositions M1Q41.1 to M1Q41.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#41.

[0449] Compositions M1Q42.1 to M1Q42.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#42.

[0450] Compositions M1Q43.1 to M1Q43.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#43.

[0451] Compositions M1Q44.1 to M1Q44.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#44.

[0452] Compositions M1Q45.1 to M1Q45.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#45.

[0453] Compositions M1Q46.1 to M1Q46.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#46.

[0454] Compositions M1Q47.1 to M1Q47.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#47.

[0455] Compositions M1Q48.1 to M1Q48.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#48.Compositions M1Q49.1 to M1Q49.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#49.

[0456] Compositions M 1 Q50.1 to M 1 Q50.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#50.

[0457] Compositions M1Q51.1 to M1Q51.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#51.

[0458] Compositions M1Q52.1 to M1Q52.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#52.

[0459] Compositions M 1 Q53.1 to M 1 Q53.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#53.

[0460] Compositions M1Q54.1 to M1Q54.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#54.

[0461] Compositions M 1 Q55.1 to M 1 Q55.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#55.

[0462] Compositions M1Q56.1 to M1Q56.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#56.

[0463] Compositions M 1 Q57.1 to M 1 Q57.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#57.

[0464] Compositions M 1 Q58.1 to M 1 Q58.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#58.

[0465] Compositions M 1 Q59.1 to M 1 Q59.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#59.

[0466] Compositions M1Q60.1 to M1Q60.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#60.Compositions M1Q61.1 to M1Q61.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#61.

[0467] Compositions M1Q62.1 to M1Q62.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#62.

[0468] Compositions M1Q63.1 to M1Q63.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#63.

[0469] Compositions M1Q64.1 to M1Q64.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#64.

[0470] Compositions M1Q65.1 to M1Q65.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#65.

[0471] Compositions M1Q66.1 to M1Q66.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#66.

[0472] Compositions M1Q67.1 to M1Q67.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#67.

[0473] Compositions M1Q68.1 to M1Q68.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#68.

[0474] Compositions M1Q69.1 to M1Q69.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#69.

[0475] Compositions M 1 Q70.1 to M 1 Q70.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#70.

[0476] Compositions M 1 Q71.1 to M 1 Q71.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#71.

[0477] Compositions M 1 Q72.1 to M 1 Q72.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#72.Compositions M 1 Q73.1 to M 1 Q73.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#73.

[0478] Compositions M 1 Q74.1 to M 1 Q74.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#74.

[0479] Compositions M 1 Q75.1 to M 1 Q75.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#75.

[0480] Compositions M 1 Q76.1 to M 1 Q76.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#76.

[0481] Compositions M 1 Q77.1 to M 1 Q77.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#77.

[0482] Compositions M 1 Q78.1 to M 1 Q78.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#78.

[0483] Compositions M 1 Q79.1 to M 1 Q79.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#79.

[0484] Compositions M 1 Q80.1 to M 1 Q80.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#80.

[0485] Compositions M1Q81.1 to M1Q81.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#81.

[0486] Compositions M1Q82.1 to M1Q82.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#82.

[0487] Compositions M 1 Q83.1 to M 1 Q83.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#83.

[0488] Compositions M1Q84.1 to M1Q84.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#84.Compositions M 1 Q85.1 to M 1 Q85.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#85.

[0489] Compositions M1Q86.1 to M1Q86.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#86.

[0490] Compositions M 1 Q87.1 to M 1 Q87.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#87.

[0491] Compositions M 1 Q88.1 to M 1 Q88.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#88.

[0492] Compositions M 1 Q89.1 to M 1 Q89.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#89.

[0493] Compositions M 1 Q90.1 to M 1 Q90.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#90.

[0494] Compositions M1Q91.1 to M1Q91.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#91.

[0495] Compositions M1Q92.1 to M1Q92.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#92.

[0496] Compositions M 1 Q93.1 to M 1 Q93.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#93.

[0497] Compositions M1Q94.1 to M1Q94.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#94.

[0498] Compositions M 1 Q95.1 to M 1 Q95.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#95.

[0499] Compositions M1Q96.1 to M1Q96.2023 differ from the compositions M1T.1 to M1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#96.Compositions M 1 Q97.1 to M 1 Q97.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#97.

[0500] Compositions M 1 Q98.1 to M 1 Q98.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#98.

[0501] Compositions M 1 Q99.1 to M 1 Q99.2023 differ from the compositions M 1 T.1 to M 1 T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#99.

[0502] Compositions M1Q100.1 to M1Q100.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#100.

[0503] Compositions M1Q101.1 to M1Q101.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#101.

[0504] Compositions M1Q102.1 to M1Q102.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#102.

[0505] Compositions M1Q103.1 to M1Q103.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#103.

[0506] Compositions M1Q104.1 to M1Q104.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#104.

[0507] Compositions M1Q105.1 to M1Q105.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#105.

[0508] Compositions M1Q106.1 to M1Q106.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#106.

[0509] Compositions M1Q107.1 to M1Q107.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#107.

[0510] Compositions M1Q108.1 to M1Q108.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#108.Compositions M1Q109.1 to M1Q109.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#109.

[0511] Compositions M1Q110.1 to M1Q110.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#110.

[0512] Compositions M1Q111.1 to M1Q111.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#111.

[0513] Compositions M1Q112.1 to M1Q112.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#112.

[0514] Compositions M1Q113.1 to M1Q113.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#113.

[0515] Compositions M1Q114.1 to M1Q114.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#114.

[0516] Compositions M1Q115.1 to M1Q115.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#115.

[0517] Compositions M1Q116.1 to M1Q116.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#116.

[0518] Compositions M1Q117.1 to M1Q117.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#117.

[0519] Compositions M1Q118.1 to M1Q118.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#118.

[0520] Compositions M1Q119.1 to M1Q119.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component B two herbicides B, which are not identical, and whereas the second, additional herbicide B is b#119.

[0521] Compositions M2B.1 to M2B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of the compound of formula 1-1 , thecompound of formula I-2.

[0522] Compositions M3B.1 to M3B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-3.

[0523] Compositions M4B.1 to M4B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-4.

[0524] Compositions M5B.1 to M5B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-5.

[0525] Compositions M6B.1 to M6B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-6.

[0526] Compositions M7B.1 to M7B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-7.

[0527] Compositions M8B.1 to M8B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-8.

[0528] Compositions M9B.1 to M9B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-9.

[0529] Compositions M 10B.1 to M 10B.136 differ from the compositions M 1 B.1 to M 1 B.136 of T able 1 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula 1-10.

[0530] Compositions M 11 B.1 to M 11 B.136 differ from the compositions M 1 B.1 to M 1 B.136 of T able 1 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula 1-11.

[0531] Compositions M 12B.1 to M 12B.136 differ from the compositions M 1 B.1 to M 1 B.136 of T able 1 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula 1-12.

[0532] Compositions M 13B.1 to M 13B.136 differ from the compositions M 1 B.1 to M 1 B.136 of T able 1 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula 1-13.

[0533] Also preferred are compositions M14B.1 to M14B.136 differ from the compositions M1B.1 to M1B.136 of Table 1 in that they comprise as the active component A, instead of thecompound of formula 1-1, the compound of formula 1-14.

[0534] Compositions M2T.1 to M2T.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-2.

[0535] Compositions M3T.1 to M3T.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-3.

[0536] Compositions M4T.1 to M4T.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-4.

[0537] Compositions M5T.1 to M5T.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-5.

[0538] Compositions M6T.1 to M6T.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-6.

[0539] Compositions M7T.1 to M7T.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-7.

[0540] Compositions M8T.1 to M8T.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-8.

[0541] Compositions M9T.1 to M9T.2023 differ from the compositions M1T.1 to M1T.2023 of Table 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula I-9.

[0542] Compositions M10T.1 to M10T.2023 differ from the compositions M1T.1 to M1T.2023 of T able 2 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula 1-10.

[0543] Compositions M11T.1 to M11T.2023 differ from the compositions M1T.1 to M1T.2023 of T able 2 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula 1-11.

[0544] Compositions M12T.1 to M12T.2023 differ from the compositions M1T.1 to M1T.2023 of T able 2 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula 1-12.

[0545] Compositions M13T.1 to M13T.2023 differ from the compositions M1T.1 to M1T.2023 ofT able 2 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula 1-13.

[0546] Also preferred are compositions M14T.1 to M14T.2023 differ from the compositions M1T.1 to M 1 T.2023 of T able 2 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula 1-14.

[0547] Compositions M2Q1.1 to M2Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-2.

[0548] Compositions M3Q1.1 to M3Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-3.

[0549] Compositions M4Q1.1 to M4Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-4.

[0550] Compositions M5Q1.1 to M5Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-5.

[0551] Compositions M6Q1.1 to M6Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-6.

[0552] Compositions M7Q1.1 to M7Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-7.

[0553] Compositions M8Q1.1 to M8Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-8.

[0554] Compositions M9Q1.1 to M9Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula I-9.

[0555] Compositions M10Q1.1 to M10Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula 1-10.

[0556] Compositions M11Q1.1 to M11Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1 , the compound of formula 1-11.Compositions M12Q1.1 to M12Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula 1-12.

[0557] Compositions M13Q1.1 to M13Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of T able 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula 1-13.

[0558] Also preferred are compositions M14Q1.1 to M14Q117.2023 differ from compositions M1Q1.1 to M1Q117.2023 of Table 3 in that they comprise as the active component A, instead of the compound of formula 1-1, the compound of formula 1-14.

[0559] In a further aspect the weight ratio of component A to component B, or the weight ratio of component Ato safenerC in compositions M1B.1 to M1B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 1000:1 to 1:1000.

[0560] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 500:1 to 1:500.

[0561] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 andM14T.1 to M14T.2023 is 250:1 to 1:250.

[0562] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 75:1 to 1:75.

[0563] In a further aspect the weight ratio of component A to component B, or the weight ratio of component Ato safenerC in compositions M1B.1 to M1B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 50:1 to 1:50.

[0564] In a further aspect the weight ratio of component A to component B, or the weight ratio of component Ato safenerC in compositions M1B.1 to M1B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M 14T.1 to M 14T.2023 is 20: 1 to 1 :20.

[0565] In a further aspect the weight ratio of component A to component B, or the weight ratio of component Ato safenerC in compositions M1B.1 to M1B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 andM14T.1 to M14T.2023 is 10:1 to 1:10.

[0566] In a further aspect the weight ratio of component A to component B, or the weight ratio of component Ato safenerC in compositions M1B.1 to M1B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 4:1 to 1:4.

[0567] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 3:1 to 1:3.

[0568] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 2:1 to 1:2.

[0569] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 andM14T.1 to M14T.2023 is 250:1 to 1:1.

[0570] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 75:1 to 1:1.

[0571] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 50:1 to 1:1.

[0572] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 20:1 to 1:1.

[0573] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 andM14T.1 to M14T.2023 is 10:1 to 1:1.

[0574] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 4:1 to 1:1.

[0575] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 3:1 to 1:1.

[0576] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 2:1 to 1:1.

[0577] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 andM14T.1 to M14T.2023 is 1:1 to 1:250.

[0578] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 1:1 to 1:75.

[0579] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 1:1 to 1:50.

[0580] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 1:1 to 1:20.

[0581] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 andM14T.1 to M14T.2023 is 1:1 to 1:10.

[0582] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 1:1 to 1:4.

[0583] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 1:1 to 1:3.

[0584] In a further aspect the weight ratio of component A to component B, or the weight ratio of component A to safener C in compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 to M10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023 is 1:1 to 1:2.

[0585] The skilled person will acknowledge that the preferred ratio of component A to component B for any of the compositions M 1 B.1 to M 1 B.136, M2B.1 to M2B.136, M3B.1 to M3B.136, M4B.1 to M4B.136, M5B.1 to M5B.136, M6B.1 to M6B.136, M7B.1 to M7B.136, M8B.1 to M8B.136, M9B.1 to M9B.136, M10B.1 to M10B.136, M11B.1 to M11B.136, M12B.1 to M12B.136, M13B.1 to M13B.136 and M14B.1 to M14B.136, M1T.1 to M1T.2023, M2T.1 to M2T.2023, M3T.1 to M3T.2023, M4T.1 to M4T.2023, M5T.1 to M5T.2023, M6T.1 to M6T.2023, M7T.1 to M7T.2023, M8T.1 to M8T.2023, M9T.1 to M9T.2023, M10T.1 toM10T.2023, M11T.1 to M11T.2023, M12T.1 to M12T.2023, M13T.1 to M13T.2023 and M14T.1 to M14T.2023, may be as follows: 19:1, 18:1, 17:1, 16:1, 15:1, 14:1, 13:1, 12:1, 11:1, 9:1, 8:1; 7:1, 6:1, 5:1, 5:2, 3:2, 5:3, 1:1, 3:5, 2:3, 2:5, 1:5, 1:6, 1:7, 1:8, 1:9, 1:10, 1:11, 1:12, 1:13, 1:14, 1:15, 1:16, 1:17, 1:18, 1:19.

[0586] In a further aspect the weight ratio of component A to component B in composition M1B.108 is in the range from 1 : 15 to 1 :3, 1 : 10 to 1 :4, or 1 :8 to 1 :5.

[0587] In a further aspect the weight ratio of component A to component B in composition M1B.37 is in the range from 1:50 to 1:2, 1:20 to 1:2, 1:15 to 1:2, 1:10 to 1:2, or 1:5 to 1:2.

[0588] In a further aspect the weight ratio of component A to component B in composition M1B.71 is in the range from 1:50 to 1:2, 1:20 to 1:2, 1:15 to 1:2, 1:10 to 1:2, or 1:5 to 1:2.

[0589] In a further aspect the weight ratio of component A to component B in composition M1B.77 is in the range from 1:50 to 2:1, 1:20 to 2:1, 1:15 to 2:1, 1 :10 to 2:1 , or 1 :5 to 2:1.

[0590] In a further aspect the weight ratio of component A to component B in composition M1B.67 is in the range from 1:50 to 1:2, 1:20 to 1:2, 1:15 to 1:2, 1:10 to 1:2, or 1:5 to 1:2.

[0591] In a further aspect the weight ratio of component A to component B in composition M1B.64 is in the range from 20: 1 to 1:2, 20: 1 to 1:1, or 20: 1 to 5: 1.

[0592] In a further aspect the weight ratio of component A to component B in composition M1B.15 is in the range from 20: 1 to 1:2, 10:1 to 1:2, 5:1 to 1:2, or 5: 1 to 1:1.

[0593] In a further aspect the weight ratio of component A to component B in composition M1B.26 is in the range from 20:1 to 1:2, 20:1 to 2:1, 10:1 to 1:2, 10:1 to 2:1, 5:1 to 1:2, or 5:1 to 2:1.

[0594] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 100:1 to 1:100 and the ratio between component A to the second herbicide B is 100: 1 to 1 : 100.

[0595] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0596] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 50:1 to 1:50 and the ratio between component A to the second herbicide B is 50:1 to 1 :50.In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0597] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 20:1 to 1:20 and the ratio between component A to the second herbicide B is 20:1 to 1 :20.

[0598] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0599] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 10:1 to 1:10 and the ratio between component A to the second herbicide B is 10: 1 to 1 : 10.

[0600] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0601] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 7:1 to 1:7 and the ratio between component A to the second herbicide B is 7:1 to 1 :7.

[0602] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0603] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 3:1 to 1:3 and the ratio between component A to the second herbicide B is 3:1 to 1 :3.

[0604] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0605] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 2:1 to 1:2 and the ratio between component A to the second herbicide B is 2:1 to 1 :2.

[0606] In one aspect the weight ratio of component A to the first herbicide B of component B incompositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0607] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 10:1 to 1:10 and the ratio between component A to the second herbicide B is 7:1 to 1 :7.

[0608] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0609] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 10:1 to 1:10 and the ratio between component A to the second herbicide B is 3:1 to 1 :3.

[0610] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0611] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 10:1 to 1:10 and the ratio between component A to the second herbicide B is 2:1 to 1 :2.

[0612] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0613] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 7:1 to 1:7 and the ratio between component A to the second herbicide B is 3:1 to 1 :3.

[0614] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 to M3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0615] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 7:1 to 1:7 and the ratio between component A to the second herbicide B is 2:1 to 1 :2.

[0616] In one aspect the weight ratio of component A to the first herbicide B of component B in compositions of Table 3, i.e. M1Q1.1 to M1Q117.2023, M2Q1.1 to M2Q117.2023, M3Q1.1 toM3Q117.2023, M4Q1.1 to M4Q117.2023, M5Q1.1 to M5Q117.2023, M6Q1.1 to

[0617] M6Q117.2023, M7Q1.1 to M7Q117.2023, M8Q1.1 to M8Q117.2023, M9Q1.1 to M9Q117.2023, M10Q1.1 to M10Q117.2023, M11Q1.1 to M11Q117.2023, M12Q1.1 to M12Q117.2023, M13Q1.1 to M13Q117.2023, M14Q1.1 to M14Q117.2023 is 1:1 and the ratio between component A to the second herbicide B is 1 :1 to 1 :1.

[0618] In a further aspect of the present invention component A is compound 1-1, which is used in an amount as specified for each entry H.1 to H.960 in Table H below, and whereas component B is used in another specified amount.

[0619] Table H

[0620]

[0621]

[0622]

[0623]

[0624]

[0625]

[0626]

[0627]

[0628]

[0629]

[0630]

[0631]

[0632]

[0633]

[0634]

[0635]

[0636]

[0637]

[0638]

[0639]

[0640]

[0641]

[0642] The invention also relates to agrochemical compositions. The term agrochemical composition in the context of the present invention relates to compositions comprising, in addition to a pesticidally effective amount of components A and B, an auxiliary and a composition according to the invention. The term "effective amount" denotes an amount of the active ingredients, which is sufficient for controlling unwanted plants, especially for controlling unwanted plants in cultivated plants and which does not result in a substantial damage to the treated plants. Such an amount can vary in a broad range and is dependent on various factors, such as the plants to be controlled, the treated cultivated plant or material, the climatic conditions and the specific composition according to the invention used.

[0643] The compounds A and optionally B and / or C, their agriculturally acceptable salts or derivatives can be converted into customary types of agrochemical compositions, e. g.solutions, emulsions, suspensions, dusts, powders, pastes, granules, pressings, capsules, and mixtures thereof. Examples for agrochemical composition types are suspensions (e.g. SC, OD, FS), emulsifiable concentrates (e.g. EC), emulsions (e.g. EW, EO, ES, ME), capsules (e.g. CS, ZC), pastes, pastilles, wettable powders or dusts (e.g. WP, SP, WS, DP, DS), pressings (e.g. BR, TB, DT), granules (e.g. WG, SG, GR, FG, GG, MG), insecticidal articles (e.g. LN), as well as gel formulations for the treatment of plant propagation materials such as seeds (e.g. GF). These and further agrochemical compositions types are defined in the “Catalogue of pesticide formulation types and international coding system”, Technical Monograph No. 2, 6th Ed. May 2008, CropLife International. The formulations are prepared in a known manner, such as described by Mollet and Grubemann, Formulation technology, Wiley VCH, Weinheim, 2001; or Knowles, New developments in crop protection product formulation, Agrow Reports DS243, T&F Informa, London, 2005. Reference is also made to US 3,060,084, EP-A 707445 for liquid concentrates, Browning: ’’Agglomeration”, Chemical Engineering, Dec. 4, 1967, 147-48, Perry’s Chemical Engineer’s Handbook, 4th Ed., McGraw-Hill, New York, 1963, S. 8-57 und ff. WO 91 / 13546, US 4,172,714, US 4,144,050, US 3,920,442, US 5,180,587, US 5,232,701, US 5,208,030, GB 2,095,558, US 3,299,566, Klingman: Weed Control as a Science (J. Wiley & Sons, New York, 1961), Hance et al.: Weed Control Handbook (8th Ed., Blackwell Scientific, Oxford, 1989) and Mollet, H. and Grubemann, A.: Formulation technology (Wiley VCH Verlag, Weinheim, 2001).

[0644] Suitable auxiliaries are solvents, liquid carriers, solid carriers or fillers, surfactants, dispersants, emulsifiers, wetters, adjuvants, solubilizers, penetration enhancers, protective colloids, adhesion agents, thickeners, humectants, repellents, attractants, feeding stimulants, compatibilizers, bactericides, anti-freezing agents, anti-foaming agents, colorants, tackifiers and binders.

[0645] Suitable solvents and liquid carriers are water and organic solvents, such as mineral oil fractions of medium to high boiling point, e.g. kerosene, diesel oil; oils of vegetable or animal origin; aliphatic, cyclic and aromatic hydrocarbons, e. g. toluene, paraffin, tetrahydronaphthalene, alkylated naphthalenes; alcohols, e.g. ethanol, propanol, butanol, benzylalcohol, cyclohexanol; glycols; DMSO; ketones, e.g. cyclohexanone; esters, e.g. lactates, carbonates, fatty acid esters, gamma-butyrolactone; fatty acids; phosphonates; amines; amides, e.g. N-methylpyrrolidone, fatty acid dimethylamides; and mixtures thereof. Suitable solid carriers or fillers are mineral earths, e.g. silicates, silica gels, talc, kaolins, limestone, lime, chalk, clays, dolomite, diatomaceous earth, bentonite, calcium sulfate, magnesium sulfate, magnesium oxide; polysaccharides, e.g. cellulose, starch; fertilizers, e.g. ammonium sulfate, ammonium phosphate, ammonium nitrate, ureas; products of vegetableorigin, e.g. cereal meal, tree bark meal, wood meal, nutshell meal, and mixtures thereof. Suitable surfactants are surface-active compounds, such as anionic, cationic, nonionic and amphoteric surfactants, block polymers, polyelectrolytes, and mixtures thereof. Such surfactants can be used as emulsifier, dispersant, solubilizer, wetter, penetration enhancer, protective colloid, or adjuvant. Examples of surfactants are listed in McCutcheon’s, Vol.1: Emulsifiers & Detergents, McCutcheon’s Directories, Glen Rock, USA, 2008 (International Ed. or North American Ed.).

[0646] Suitable anionic surfactants are alkali, alkaline earth or ammonium salts of sulfonates, sulfates, phosphates, carboxylates, and mixtures thereof. Examples of sulfonates are alkylarylsulfonates, diphenylsulfonates, alpha-olefin sulfonates, lignine sulfonates, sulfonates of fatty acids and oils, sulfonates of ethoxylated alkylphenols, sulfonates of alkoxylated arylphenols, sulfonates of condensed naphthalenes, sulfonates of dodecyl- and tridecylbenzenes, sulfonates of naphthalenes and alkylnaphthalenes, sulfosuccinates or sulfosuccinamates. Examples of sulfates are sulfates of fatty acids and oils, of ethoxylated alkylphenols, of alcohols, of ethoxylated alcohols, or of fatty acid esters. Examples of phosphates are phosphate esters. Examples of carboxylates are alkyl carboxylates, and carboxylated alcohol or alkylphenol ethoxylates.

[0647] Suitable nonionic surfactants are alkoxylates, N-substituted fatty acid amides, amine oxides, esters, sugar-based surfactants, polymeric surfactants, and mixtures thereof. Examples of alkoxylates are compounds such as alcohols, alkylphenols, amines, amides, arylphenols, fatty acids or fatty acid esters which have been alkoxylated with 1 to 50 equivalents. Ethylene oxide and / or propylene oxide may be employed for the alkoxylation, preferably ethylene oxide. Examples of N-substituted fatty acid amides are fatty acid glucamides or fatty acid alkanolamides. Examples of esters are fatty acid esters, glycerol esters or monoglycerides. Examples of sugar-based surfactants are sorbitans, ethoxylated sorbitans, sucrose and glucose esters or alkylpolyglucosides. Examples of polymeric surfactants are home- or copolymers of vinylpyrrolidone, vinylalcohols, or vinylacetate.

[0648] Suitable cationic surfactants are quaternary surfactants, for example quaternary ammonium compounds with one or two hydrophobic groups, or salts of long-chain primary amines. Suitable amphoteric surfactants are alkylbetains and imidazolines. Suitable block polymers are block polymers of the A-B or A-B-A type comprising blocks of polyethylene oxide and polypropylene oxide, or of the A-B-C type comprising alkanol, polyethylene oxide and polypropylene oxide. Suitable polyelectrolytes are polyacids or polybases. Examples of polyacids are alkali salts of polyacrylic acid or polyacid comb polymers. Examples of polybases are polyvinylamines or polyethyleneamines.Suitable adjuvants are compounds, which have a neglectable or even no pesticidal activity themselves, and which improve the biological performance of the compound I on the target. Examples are surfactants, mineral or vegetable oils, and other auxiliaries. Further examples are listed by Knowles, Adjuvants and additives, Agrow Reports DS256, T&F Informa UK, 2006, chapter 5.

[0649] Suitable thickeners are polysaccharides (e.g. xanthan gum, carboxymethylcellulose), inorganic clays (organically modified or unmodified), polycarboxylates, and silicates.

[0650] Suitable bactericides are bronopol and isothiazolinone derivatives such as alkylisothiazolinones and benzisothiazolinones.

[0651] Suitable anti-freezing agents are ethylene glycol, propylene glycol, urea and glycerin.

[0652] Suitable anti-foaming agents are silicones, long chain alcohols, and salts of fatty acids. Suitable colorants (e.g. in red, blue, or green) are pigments of low water solubility and water-soluble dyes. Examples are inorganic colorants (e.g. iron oxide, titan oxide, iron hexacyanoferrate) and organic colorants (e.g. alizarin-, azo- and phthalocyanine colorants). Suitable tackifiers or binders are polyvinylpyrrolidons, polyvinylacetates, polyvinyl alcohols, polyacrylates, biological or synthetic waxes, and cellulose ethers.

[0653] Examples for agrochemical composition types and their preparation are:

[0654] i) Water-soluble concentrates (SL, LS)

[0655] 10-60 wt% of a compostion according to the invention and 5-15 wt% wetting agent (e.g. alcohol alkoxylates) are dissolved in water and / or in a water-soluble solvent (e.g. alcohols) ad 100 wt%. The active substance dissolves upon dilution with water.

[0656] ii) Dispersible concentrates (DC)

[0657] 5-25 wt% of a composition according to the invention and 1-10 wt% dispersant (e. g. polyvinylpyrrolidone) are dissolved in organic solvent (e.g. cyclohexanone) ad 100 wt%. Dilution with water gives a dispersion.

[0658] iii) Emulsifiable concentrates (EC)

[0659] 15-70 wt% of a composition according to the invention and 5-10 wt% emulsifiers (e.g. calcium dodecylbenzenesulfonate and castor oil ethoxylate) are dissolved in water-insoluble organic solvent (e.g. aromatic hydrocarbon) ad 100 wt%. Dilution with water gives an emulsion.

[0660] iv) Emulsions (EW, EO, ES)

[0661] 5-40 wt% of a composition according to the invention and 1-10 wt% emulsifiers (e.g. calcium dodecylbenzenesulfonate and castor oil ethoxylate) are dissolved in 20-40 wt% waterinsoluble organic solvent (e.g. aromatic hydrocarbon). This mixture is introduced into water ad 100 wt% by means of an emulsifying machine and made into a homogeneous emulsion.Dilution with water gives an emulsion.

[0662] v) Suspensions (SC, OD, FS)

[0663] In an agitated ball mill, 20-60 wt% of a composition according to the invention are comminuted with addition of 2-10 wt% dispersants and wetting agents (e.g. sodium lignosulfonate and alcohol ethoxylate), 0,1-2 wt% thickener (e.g. xanthan gum) and water ad 100 wt% to give a fine active substance suspension. Dilution with water gives a stable suspension of the active substance. For FS type composition up to 40 wt% binder (e.g. polyvinylalcohol) is added.

[0664] vi) Water-dispersible granules and water-soluble granules (WG, SG)

[0665] 50-80 wt% of a composition according to the invention are ground finely with addition of dispersants and wetting agents (e.g. sodium lignosulfonate and alcohol ethoxylate) ad 100 wt% and prepared as water-dispersible or water-soluble granules by means of technical appliances (e. g. extrusion, spray tower, fluidized bed). Dilution with water gives a stable dispersion or solution of the active substance.

[0666] vii) Water-dispersible powders and water-soluble powders (WP, SP, WS)

[0667] 50-80 wt% of a composition according to the invention are ground in a rotor-stator mill with addition of 1-5 wt% dispersants (e.g. sodium lignosulfonate), 1-3 wt% wetting agents (e.g. alcohol ethoxylate) and solid carrier (e.g. silica gel) ad 100 wt%. Dilution with water gives a stable dispersion or solution of the active substance.

[0668] viii) Gel (GW, GF)

[0669] In an agitated ball mill, 5-25 wt% of a composition according to the invention are comminuted with addition of 3-10 wt% dispersants (e.g. sodium lignosulfonate), 1-5 wt% thickener (e.g. carboxymethylcellulose) and water ad 100 wt% to give a fine suspension of the active substance. Dilution with water gives a stable suspension of the active substance.

[0670] ix) Microemulsion (ME)

[0671] 5-20 wt% of a composition according to the invention are added to 5-30 wt% organic solvent blend (e.g. fatty acid dimethylamide and cyclohexanone), 10-25 wt% surfactant blend (e.g. alcohol ethoxylate and arylphenol ethoxylate), and water ad 100 %. This mixture is stirred for 1 h to produce spontaneously a thermodynamically stable microemulsion.

[0672] x) Microcapsules (CS)

[0673] An oil phase comprising 5-50 wt% of a composition according to the invention, 0-40 wt% water insoluble organic solvent (e.g. aromatic hydrocarbon), 2-15 wt% acrylic monomers (e.g. methylmethacrylate, methacrylic acid and a di- or triacrylate) are dispersed into an aqueous solution of a protective colloid (e.g. polyvinyl alcohol). Radical polymerization initiated by a radical initiator results in the formation of poly(meth)acrylate microcapsules. Alternatively, an oil phase comprising 5-50 wt% of a compound I according to the invention,0-40 wt% water insoluble organic solvent (e.g. aromatic hydrocarbon), and an isocyanate monomer (e.g. diphenylmethene-4,4’-diisocyanate) are dispersed into an aqueous solution of a protective colloid (e.g. polyvinyl alcohol). The addition of a polyamine (e.g. hexamethylenediamine) results in the formation of polyurea microcapsules. The monomers amount to 1-10 wt%. The wt% relate to the total CS composition.

[0674] xi) Dustable powders (DP, DS)

[0675] 1-10 wt% of a composition according to the invention are ground finely and mixed intimately with solid carrier (e.g. finely divided kaolin) ad 100 wt%.

[0676] xii) Granules (GR, FG)

[0677] 0.5-30 wt% of a composition according to the invention is ground finely and associated with solid carrier (e.g. silicate) ad 100 wt%. Granulation is achieved by extrusion, spray-drying or the fluidized bed.

[0678] xiii) Ultra-low volume liquids (UL)

[0679] 1-50 wt% of a composition according to the invention are dissolved in organic solvent (e.g. aromatic hydrocarbon) ad 100 wt%.

[0680] The agrochemical composition types i) to xiii) may optionally comprise further auxiliaries, such as 0,1-1 wt% bactericides, 5-15 wt% anti-freezing agents, 0,1-1 wt% anti-foaming agents, and 0,1-1 wt% colorants.

[0681] The agrochemical compositions generally comprise between 0.01 and 95%, preferably between 0.1 and 90%, and in particular between 0.5 and 75%, by weight of active substance. The active substances are employed in a purity of from 90% to 100%, preferably from 95% to 100% (according to NMR spectrum).

[0682] Solutions for seed treatment (LS), suspoemulsions (SE), flowable concentrates (FS), powders for dry treatment (DS), water-dispersible powders for slurry treatment (WS), water-soluble powders (SS), emulsions (ES), emulsifiable concentrates (EC) and gels (GF) are usually employed for the purposes of treatment of plant propagation materials, particularly seeds. The compositions in question give, after two-to-tenfold dilution, active substance concentrations of from 0.01 to 60% by weight, preferably from 0.1 to 40% by weight, in the ready-to-use preparations. Application can be carried out before or during sowing.

[0683] Methods for applying compounds of formula I and compositions comprising them, respectively, on to plant propagation material, especially seeds include dressing, coating, pelleting, dusting, soaking and in-furrow application methods of the propagation material. Preferably, compound I or the compositions thereof, respectively, are applied on to the plantpropagation material by a method such that germination is not induced, e. g. by seed dressing, pelleting, coating and dusting.

[0684] Various types of oils, wetters, adjuvants, fertilizer, or micronutrients, and further pesticides (e.g. herbicides, insecticides, fungicides, growth regulators, safeners) may be added to the active substances or the compositions comprising them as premix or, if appropriate not until immediately prior to use (tank mix). These agents can be admixed with the compositions according to the invention in a weight ratio of 1 : 100 to 100: 1 , preferably 1 : 10 to 10:1.

[0685] The user applies the agrochemical composition according to the invention usually from a predosage device, a knapsack sprayer, a spray tank, a spray plane, or an irrigation system. Usually, the agrochemical composition is made up with water, buffer, and / or further auxiliaries to the desired application concentration and the ready-to-use spray liquor or the agrochemical composition according to the invention is thus obtained. Usually, 20 to 2000 liters, preferably 50 to 400 liters, of the ready-to-use spray liquor are applied per hectare of agricultural useful area.

[0686] According to one embodiment, either individual components of the agrochemical composition according to the invention or partially premixed components, e. g. agrochemical components comprising a compound of formula I and / or active substances from the groups B and / or C may be mixed by the user in a spray tank and further auxiliaries and additives may be added, if appropriate.

[0687] In a further embodiment, individual components of the agrochemical composition according to the invention such as parts of a kit or parts of a binary or ternary mixture may be mixed by the user himself in a spray tank and further auxiliaries may be added, if appropriate.

[0688] In a further embodiment, either individual components of the agrochemical composition according to the invention or partially premixed components, e. g. components comprising a compound of formula I and active substances from the groups B and / or C, can be applied jointly (e.g. after tank mix) or consecutively.

[0689] Accordingly, a first embodiment of the invention relates to compositions in the form of an agrochemical composition formulated as a 1 -component composition comprising a compound of formula I (component A) and as component B a further active compound selected from the herbicides B, and, if desired, the safeners C and a solid or liquid carrier and, if appropriate, one or more surfactants.

[0690] Accordingly, a second embodiment of the invention relates to compositions in the form of a agrochemical composition formulated as a 2-component composition comprising a first formulation (component) comprising the a compound of formula I (component A), a solid orliquid carrier and, if appropriate, one or more surfactants, and as component B a further herbicide B and safeners C, a solid or liquid carrier and, if appropriate, one or more surfactants.

[0691] The compound of formula I (component A) and the a further active herbicide B (component B) and / or C can be formulated and applied jointly or separately, simultaneously or in succession, before, during or after the emergence of the plants. In case of separate application, the order of the application of the components A, B and / or C is of minor importance. The only thing that is important is that the compound of formula I and the a further herbicide B and / or C are present simultaneously at the site of action, i.e. are at the same time in contact with or taken up by the plant to be controlled.

[0692] The compositions according to the invention control vegetation on non-crop areas very efficiently, especially at high rates of application. They act against broad-leafed weeds and grass weeds in crops such as wheat, rice, corn, soybeans and cotton without causing any significant damage to the crop plants. This effect is mainly observed at low rates of application.

[0693] The compositions according to the invention are applied to the plants mainly by spraying the leaves. Here, the application can be carried out using, for example, water as carrier by customary spraying techniques using spray liquor amounts of from about 100 to 1000 l / ha (for example from 300 to 400 l / ha). The herbicidal compositions may also be applied by the low-volume or the ultra-low-volume method, or in the form of microgranules.

[0694] Application of the herbicidal compositions according to the present invention can be done before, during and / or after, preferably during and / or after, the emergence of the undesirable plants.

[0695] The herbicidal compositions according to the present invention can be applied pre- or postemergence or together with the seed of a crop plant. In a preferred aspect the herbicidal compositions according to the present invention are applied post-emergence. It is also possible to apply the compounds and compositions by applying seed, pretreated with a composition of the invention, of a crop plant. If the active components A and B, and, if appropriate, C, are less well tolerated by certain crop plants, application techniques may be used in which the herbicidal compositions are sprayed, with the aid of the spraying equipment, in such a way that as far as possible they do not come into contact with the leaves of the sensitive crop plants, while the active compounds reach the leaves of undesirable plants growing underneath, or the bare soil surface (post-directed, lay-by). In a further embodiment, the composition according to the invention can be applied by treating seed. The treatment of seed comprises essentially all procedures familiar to theperson skilled in the art (seed dressing, seed coating, seed dusting, seed soaking, seed film coating, seed multilayer coating, seed encrusting, seed dripping and seed pelleting) based on the compound of formula I according to the invention or the compositions prepared therefrom. Here, the herbicidal compositions can be applied diluted or undiluted.

[0696] The term “seed” comprises seed of all types, such as, for example, corns, seeds, fruits, tubers, seedlings and similar forms. Here, preferably, the term seed describes corns and seeds. The seed used can be seed of the useful plants mentioned above, but also the seed of transgenic plants or plants obtained by customary breeding methods.

[0697] Moreover, it may be advantageous to apply the compositions of the present invention on their own or jointly in combination with other crop protection agents, for example with agents for controlling pests or phytopathogenic fungi or bacteria or with groups of active compounds which regulate growth. Also of interest is the miscibility with mineral salt solutions which are employed for treating nutritional and trace element deficiencies. Non-phytotoxic oils and oil concentrates can also be added.

[0698] When employed in plant protection, the amounts of active substances applied, i.e. components A and B, and, if appropriate, C, without formulation auxiliaries, are, depending on the kind of effect desired, from 0.001 to 3 kg / ha, preferably from 0.005 to 2.5 kg / ha and from 0.01 to 2 kg / ha of active substance (a.s.).

[0699] In another preferred embodiment of the invention, the rates of application of a compound of formula I according to the present invention (total amount of compound of formula I) are from 0.1 g / ha to 3000 g / ha, or 1 g / ha to 1000 g / ha, or 5 to 500 g / ha, or 20 to 300 g / ha, particularly 100 g / ha, 125 g / ha or 150 g / ha, depending on the control target, the season, the target plants and the growth stage.

[0700] The required application rates of herbicides B are generally in the range of from 0.0005 kg / ha to 2.5 kg / ha and preferably in the range of from 0.005 kg / ha to 2 kg / ha or 0.01 kg / ha to 1.5 kg / h of a.s.

[0701] The required application rates of safeners C are generally in the range of from 0.0005 kg / ha to 2.5 kg / ha and preferably in the range of from 0.005 kg / ha to 2 kg / ha or 0.01 kg / ha to 1.5 kg / h of a.s.

[0702] In treatment of plant propagation materials such as seeds, e. g. by dusting, coating or drenching seed, amounts of active substance of from 0.1 to 1000 g, preferably from 1 to 1000 g, more preferably from 1 to 100 g and most preferably from 5 to 100 g, per 100kilogram of plant propagation material (preferably seeds) are generally required.

[0703] In another embodiment of the invention, to treat the seed, the amounts of composition components applied, i.e. A and B, and, if appropriate, C, are generally employed in amounts of from 0.001 to 10 kg per 100 kg of seed.

[0704] The application rate of the compositions comprising a compound (I) and a herbicide B and / or a safener C, in particular in the combinations of the tables 1, 2, 3, table H depends on the density of the undesired vegetation, on the development stage of the plants, on the climatic conditions of the location where the combination is used and on the application method. In general, the compositions are used at an application rate of from 0.1 to 1000 g / ha, or from 0.1 to 750 g / ha, or from 1 to 500 g / ha, or from 1 to 475 g / ha, or from 1 to 450 g / ha, or from 1 to 425 g / ha, or from 1 to 400 g / ha, or from 1 to 375 g / ha, or from 1 to 350 g / ha, or from 1 to 325 g / ha, or from 1 to 300 g / ha, or from 1 to 275 g / ha, or from 1 to 250 g / ha, or from 1 to 225 g / ha, or from 1 to 200 g / ha, or from 1 to 175 g / ha or from 1 to 150 g / ha, or from 1 to 125 g / ha or from 1 to 100 g / ha, or from 1 to 75 g / ha or from 1 to 50 g / ha, or from 1 to 25 g / ha, or from 1 to 15 g / ha of the active substances.

[0705] The compositions can be used at the application rates of at least 0.1 g / ha, 1 g / ha, 5 g / ha, 10 g / ha, 20 g / ha, 30 g / ha, 40 g / ha, 50 g / ha, 60 g / ha, 70 g / ha, 80 g / ha, 90 g / ha, 100 g / ha, 110 g / ha, 120 g / ha, 130 g / ha, 140 g / ha, 150 g / ha, 160 g / ha, 170 g / ha, 180 g / ha, 190 g / ha, 200 g / ha, 210 g / ha, 220 g / ha, 230 g / ha, 240 g / ha, 250 g / ha, 260 g / ha, 270 g / ha, 280 g / ha, 290 g / ha, 300 g / ha, 310 g / ha, 320 g / ha, 330 g / ha, 340 g / ha, 350 g / ha, 360 g / ha, 370 g / ha, 380 g / ha, 390 g / ha, 400 g / ha, 410 g / ha, 420 g / ha, 430 g / ha, 440 g / ha, 450 g / ha, 460 g / ha, 470 g / ha, 480 g / ha, 490 g / ha, 500 g / ha of the active substances.

[0706] When used in the protection of materials or stored products, the amount of composition components applied depends on the kind of application area and on the desired effect. Amounts customarily applied in the protection of materials are 0.001 g to 2 kg, preferably 0.005 g to 1 kg, of active substance per cubic meter of treated material.

[0707] In the methods of the present invention it is immaterial whether the compound of formula I, and the further herbicide B and / or the safener C are formulated and applied jointly or separately.

[0708] In the case of separate application it is of minor importance, in which order the application takes place. It is only necessary, that the compound of formula I and the herbicide B and / or the herbicide safener C are applied in a time frame that allows simultaneous action of theactive ingredients on the plants, preferably within a time-frame of at most 14 days, in particular at most 7 days.

[0709] The compounds (I) and the agrochemical formulations containing them may be applied in combination with, or by utilizing smart agricultural technologies, such as precision agriculture, remote and proximate imaging and image recognition, or smart agricultural site management programs. Such technologies typically include models, e.g. computer programs, that support the user by considering information from a variety of sources to increase quality and yield of harvested material, reduce damage by pests including the prediction of pest

[0710] pressure and smart applic

[0711] ation of crop protection products, secure environmental protection, support quick and reliable agronomic decision making, reduce usage of fertilizers and crop protection products, reduce product residues in consumables, increase spatial and temporal precision of agronomical measures, automate processes, and enable traceability of measures. Commercially available systems which include agronomic models are e.g. FieldScripts™ (The Climate Corporation), Xarvio™ (BASF) and AGLogic™ (Joh

[0712] n Deere).

[0713] Information input for these models includes, but is not limited to, soil data, information on: the plants that are currently growing or that may grow at the area of interest including crops and / or unwanted vegetation, weather, the location of the area and directly derivable information thereof, pest pressure, beneficial organisms; comprising forecast, present and I or historic information of any of the aforementioned.

[0714] The information usable for precision agriculture may be based on input by at least one use r, be accessible from external data sources and databases, or be based on sensor data. Data sources typically include proximate-detection systems like soil-borne sensors and remote sensing as may be achieved by imaging with unmanned airborne vehicles like drones, or satellites. Sensors may be included in an Internet-of-Things system and may be directly or indirectly connected to the processing unit, e.g. via a wirele

[0715] ss network and / or cloud applications. The information is typically taken into account by at least one processing unit and used to provide recommendations, and to generate control signals.

[0716] Typical technologies that are used in smart agricultural technologies include self-steering robots (such as tractors, harvesters, drones), artificial intelligence (e.g. machine learning), imaging technologies (e.g. image segmentation technologies), big data analysis, model generation, cloud computing, and machine-to-machine communication.Precision agriculture or farming is characterized by spatially and / or temporally resolved, targeted application of active ingredients like pesticides, plant-growth-regulators, fertilizers, and / or water including the variation of application rates over the agronomic site, zone or spot application, and of the spatially and / or temporally resolved, targeted planting or seeding of desired plant propagation material to an agronomic site. Precision farming typically includes the use of geo-positioning technologies like GPS for gaining information on the location and boundaries of the area of interest, the utilized application equipment, sensing equipment and recorded data, and to control the actions of farm vehicles such as spraying. By combining geo-positioning data with (digital) maps, it is possible to (semi)-automate agricultural measures at the site of interest, e.g. by using (semi)-autonomous spraying or seeding equipment. Precision farming typically includes the application of smart spraying equipment, e.g. spot spraying, and precision spraying, e.g. by irrigation systems, tractors, robots, helicopters, airplanes, unmanned aerial vehicles, such as drones. Such equipment usu ally includes input sensors (e.g. camera) and a processing unit configured to analyze the input data and configured to provide a recommendation or decision based on the analysis of input data to apply the compounds I or compositions comprising them to the agronomic site, e.g. the soil, the crop plants, or to control pests in a specific and

[0717] precise manner. Pests may be detected, identified, and / or classified from imagery acquired by a camera. Such identification and classification can make use of image pr

[0718] ocessing algorithms, which may utilize artificial intelligence (e.g. machine learning algorithms), or decision trees. In this manner, the compounds I or compositions described herein can be applied only at the required location, point in time and dose rate.

[0719] Depending on the application method in question, the compounds according to the invention can additionally be employed in a further number of crop plants for eliminating undesirable plants.

[0720] According to the invention all of the above cultivated plants are understood to comprise all species, subspecies, variants, varieties and / or hybrids which belong to the respective cultivated plants, including but not limited to winter and spring varieties, in particular in cereals such as wheat and barley, as well as oilseed rape, e.g. winter wheat, spring wheat, winter barley etc, further including dwarf, semi-dwarf and full-dwarf varieties and / or hybrids with reduced height and thicker and shorter stems, e.g. short stature corn (also called ‘smart corn’), semi-dwarf wheat and dwarf rice.

[0721] For example, corn is also known as Indian corn or maize (Zea mays) which comprises all kinds of corn such as field corn and sweet corn. According to the invention all maize or corn subspecies and / or varieties are comprised, in particular flour corn (Zea mays var. amylacea),popcorn (Zea mays var. everta), dent corn (Zea mays var. indentata), flint corn (Zea mays var. indurata), sweet corn (Zea mays var. saccharata and var. rugosa), waxy corn (Zea mays var. ceratina), amylomaize (high amylose Zea mays varie

[0722] t

[0723] ies), pod corn or wild maize (Zea mays var. tunicata) and striped maize (Zea mays var. japonica).

[0724] Further, most soybean cultivars are classifiable into indeterminate and determinate growth habit, whereas Glycine soja, the wild progenitor of soybean, is indeterminate (PNAS 2010, 107 (19) 8563-856). The indeterminate growth habit (Maturity Group, MG 00 to MG 4.9) is characterized by a continuation of vegetative growth after flowering begins whereas determinate soybean varieties (Maturity Group, (MG) 5 to MG 8

[0725] ) characteristically have finished most of their vegetative growth when flowering begins. Accord in

[0726] g to the invention all soybean cultivars or varieties are comprised, in particular indeterminate and determinate cultivars or varieties.

[0727] Examples of suitable crops are the following:

[0728] peanuts (groundnuts), soybeans (indeterminate growth habit, determinate growth habit, semi-determinate growth habit), lentils, alfalfa (lucerne), limabeans, common bean, tick beans, English peas, corn (field corn, dent corn, flint corn, flour corn, popcorn, waxy corn, sweet corn), wheat (soft wheat, hard wheat, medium wheat, red wheat, white wheat, durum wheat, spelt wheat, club wheat; winter habit and spring habit), rye, triticale, barley (two-row barley, six-row barley, hulless barley, hulless waxy barley; winter habit and spring habit), rice, sorghum, oat, cotton (upland cotton, levant cotton, pima cotton, tree cotton), flax, oilseed rape, canola (winter habit, spring habit), sugarcane, sugar beet, sunflower;

[0729] solanaceae vegetables (eggplant, tomato, green pepper, chili pepper, potatos, etc.), sweet potatos, cucurbitaceae vegetables (cucumber, pumpkin, zucchini, watermelon, melon, etc.), cruciferous vegetables (radish, turnip, horseradish, kohlrabi, Chinese cabbage, cabbage, mustard, broccoli, cauliflower, etc.), asteraceae vegetables (burdock, crown daisy, artichoke, lettuce, etc.), liliaceae vegetables (welsh onion, onion, garlic, asparagus, etc.), umbelliferae vegetables (carrot, parsley, celery, parsnip, etc.), chenopodiaceae vegetables (spinach, beet, etc.), lamiaceae vegetables (perilla, mint, basil, lavender, etc.), cassava;

[0730] pomaceous fruits (apple, pear, Japanese pear, Chinese quince, quince, etc.), stone fruits (peach, plum, nectarine, Japanese apricot, yellow peach, apricot, prune, cherry (sweetcherry), sour cherry, etc.), citrus fruits (citrus unshiu, orange, lemon, lime, grapefruit, mandarins etc.), nut trees (chestnut, walnut, hazelnut, pecan, almond, pistachio, cashew nut, macadamia nut, etc.), berry fruits (grape, blueberry, cranberry, blackberry, raspberry, strawberry, blackcurrant, redcurrant, etc.), pineapples, persimmon, olive trees, oil palms, castor-oil plants, loquat, coffee (arabica coffee, robusta coffee, liberica coffee), cacao plants, tea plants, banana, tobacco, turf, Bermuda grass (couch grass), hop, natural rubber plants; or ornamental and forestry plants, (e.g. flowers, shrubs, broad-leaved trees, or evergreens (conifer, eucalypt, pine, Norway spruce, etc.));

[0731] The compositions comprising a compound (I) and a herbicide B and / or a safener C are particularly suitable for controlling weeds in the following cultivated plants:

[0732] Arachis hypogaea, Beta vulgaris spec, altissima, Brassica napus var. napus, Brassica oleracea, Citrus limon, Citrus sinensis, Coffea arabica (Coffea canephora, Coffea liberica), Cynodon dactylon, Glycine max, Gossypium hirsutum, (Gossypium arboreum, Gossypium herbaceum, Gossypium vitifolium), Helianthus annuus, Hordeum vulgare, Juglans regia, Lens culinaris, Linum usitatissimum, Lycopersicon lycopersicum, Malus spec., Medicago sativa, Nicotiana tabacum (N.rustica), Olea europaea, Oryza s

[0733] ativa , Phaseolus lu

[0734] natus, Phaseolus vulgaris, Pistacia vera, Pisum sativum, Prunus dulcis, Saccharum officinarum, Secale cereale, Solanum tuberosum, Sorghum bicolor (s. vulgare), Triticale, Triticum aestivum, Triticum durum, Vicia faba, Vitis vinifera and Zea mays

[0735] Especially preferred crops are crops of cereals, corn, soybeans, rice, millets, oilseed rape, cotton, sugarcane, potatoes, legumes, turf or permanent crops; most preferred are corn, soybeans, or rice.

[0736] The compositions according to the invention can also be used in crops which have been modified by mutagenesis or genetic engineering to provide a new trait to a plant or to modify an already present trait.

[0737] The term "crops" as used herein includes also (crop) plants which have been modified by mutagenesis or genetic engineering to provide a new trait to a plant or to modify an already present trait.

[0738] Mutagenesis includes techniques of random mutagenesis using X-rays or mutagenic chemicals, but also techniques of targeted mutagenesis, to create mutations at a specific locus of a plant genome. Targeted mutagenesis techniques frequently use oligonucleotides or proteins like CRISPR / Cas, zinc-finger nucleases, TALENs or meganucleases to achieve the targeting effect.Genetic engineering usually uses recombinant DNA techniques to create modifications in a plant genome which under natural circumstances cannot readily be obtained by cross breeding, mutagenesis or natural recombination. Typically, one or more genes are integrated into the genome of a plant to add a trait or improve a trait. These integrated genes are also referred to as transgenes in the art, while plant comprising such transgenes are referred to as transgenic plants. The process of plant transformation usually produces several transformation events, wich differ in the genomic locus in which a transgene has been integrated. Plants comprising a specific transgene on a specific genomic locus are usually described as comprising a specific “event”, which is referred to by a specific event name. Traits which have been introduced in plants or have been modified include in particular herbicide tolerance, insect resistance, increased yield and tolerance to abiotic conditions, like drought.

[0739] Herbicide tolerance has been created by using mutagenesis as well as using genetic engineering. Plants which have been rendered tolerant to acetolactate synthase (ALS) inhibitor herbicides by conventional methods of mutagenesis and breeding comprise plant varieties commercially available under the name Clearfield®. However, most of the herbicide tolerance traits have been created via the use of transgenes.

[0740] Herbicide tolerance has been created to glyphosate, glufosinate, 2,4-D, dicamba, oxynil herbicides, like bromoxynil and ioxynil, sulfonylurea herbicides, ALS inhibitor herbicides and 4-hydroxyphenylpyruvate dioxygenase (HPPD) inhibitors, like isoxaflutole and mesotrione. Transgenes wich have been used to provide herbicide tolerance traits comprise: for tolerance to glyphosate: cp4 epsps, epsps grg23ace5, mepsps, 2mepsps, gat4601, gat4621 and goxv247, for tolerance to glufosinate: pat and bar, for tolerance

[0741] to 2,4-D: aad-1 and aad-12, for tolerance to dicamba: dmo, for tolerance to oxynil herbicies: bxn, for tolerance to sulfonylurea herbicides: zm-hra, csr1-2, gm-hra, S4-HrA, for tolerance to ALS inhibitor herbicides: csr1-2, for tolerance to HPPD inhibitor herbicides: hppd

[0742] PF, W336 and avhppd-03.

[0743] Transgenic corn events comprising herbicide tolerance genes are for example, but not excluding others, DAS40278, MON801, MON802, MON809, MON810, MON832, MON87411, MON87419, MON87427, MON88017, MON89034, NK603, GA21, MZHGOJG, HCEM485, VCO-01981-5, 676, 678, 680, 33121, 4114, 59122, 98140, Bt10, Bt176, CBH-351, DBT418, DLL25, MS3, MS6, MZIR098, T25, TC1507 and TC6275.

[0744] Transgenic soybean events comprising herbicide tolerance genes are for example, but not excluding others, GTS 40-3-2, MON87705, MON87708, MON87

[0745] 712, MON87769, MON89788, A2704-12, A2704-21 , A5547-127, A5547-35, DP356043, DAS44406-6, DAS68416-4, DAS-81419-2, GU262, SYHT0H2, W62, W98, FG72 andCV127.

[0746] Transgenic cotton events comprising herbicide tolerance genes are for example, but not excluding others, 19-51 a, 31707, 42317, 81910, 281-24-236, 3006-210-23, BXN10211, BXN10215, BXN10222, BXN10224, MON1445, MON1698, MON88701, MON88913, GHB119, GHB614, LLCotton25, T303-3 and T304-40.

[0747] Transgenic canola events comprising herbicide tolerance genes are for example, but not excluding others, MON88302, HCR-1, HCN10, HCN28, HCN92, MS1, MS8, PHYU, PHY23, PHY35, PHY36, RF1, RF2 and RF3.

[0748] Insect resistance has mainly been created by transferring bacterial genes for insecticidal proteins to plants. Transgenes which have most frequently been used are toxin genes of Bacillus spec, and synthetic variants thereof, like cry1A, crylAb, cry1 Ab-Ac, crylAc, cry1A.1O5, cry1F, cry1Fa2, cry2Ab2, cry2Ae, mcry3A, ecry3.1Ab, cry3Bb1, cry34Ab1, cry35Ab1, cry9C, vip3A(a), vip3Aa20. However, also genes of plant origin have been transferred to other plants. In particular genes coding for protease inhibitors, like CpTI and pin 11. A further approach uses transgenes to produce double stranded RNA in plants to target and downregulate insect genes. An example for such a transgene is dvsnf7.

[0749] Transgenic corn events comprising genes for insecticidal proteins or double stranded RNA are for example, but not excluding others, Bt10, Bt11 , Bt176, MON801, MON802, MON809, MON810, MON863, MON87411, MON88017, MON89034, 33121, 4114, 5307, 59122, TC1507, TC6275, CBH-351, MIR162, DBT418 and MZIR098.

[0750] Transgenic soybean events comprising genes for insecticidal proteins are for example, but not excluding others, MON87701, MON87751 and DAS-81419.

[0751] Transgenic cotton events comprising genes for insecticidal proteins are for example, but not excluding others, SGK321, MON531, MON757, MON1076, MON15985, 31707, 31803, 31807, 31808, 42317, BNLA-601, Eventl , COT67B, COT102, T303-3, T304-40, GFM Cry1A, GK12, MLS 9124, 281-24-236, 3006-210-23, GHB119 and SGK321.

[0752] Increased yield has been created by increasing ear biomass using the transgene athb17, being present in corn event MON87403, or by enhancing photosynthesis using the transgene bbx32, being present in t

[0753] he soybean event MON87712.

[0754] Crops comprising a modified oil content have been created by using the transgenes: gm-fad2-1, Pj.D6D, Nc.Fad3, fad2-1A and fatb1-A. Soybean events comprising at least one of these genes are: 260-05, MON87705 and MON87769.

[0755] Tolerance to abiotic conditions, in particular to tolerance to drought, has been created by using the transgene cspB, comprised by the corn event MON87460 and by using the transgene Hahb-4, comprised by soybean event IND-00410-5.Traits are frequently combined by combining genes in a transformation event or by combining different events during the breeding process. Preferred combinations of traits are herbicide tolerance to different groups of herbicides, insect tolerance to different kind of insects, in particular tolerance to lepidopteran and coleopteran insects, herbicide tolerance with one or several types of insect resistance, herbicide tolerance with increased yield as well as a combination of herbicide tolerance and tolerance to abiotic conditions.

[0756] Plants comprising singular or stacked traits as well as the genes and events providing these traits are well known in the art. For example, detailed information as to the mutagenized or integrated genes and the respective events are available from websites of the organizations “International Service for the Acquisition of Agri-biotech Applications (ISAAA)” (http: / / www.isaaa.org / gmapprovaldatabase) and the “Center for Environmental Risk Assessment (CERA)” (http: / / cera-qmc.org / GMCropDatabase), as well as in patent applications, like EP3028573 and WO2017 / 011288.

[0757] The use of compositions according to the invention on crops may result in effects which are specific to a crop comprising a certain gene or event. These effects might involve changes in growth behavior or changed resistance to biotic or abiotic stress factors. Such effects may in particular comprise enhanced yield, enhanced resistance or tolerance to insects, nematodes, fungal, bacterial, mycoplasma, viral or viroid pathogens as well as early vigour, early or delayed ripening, cold or heat tolerance as well

[0758] as changed amino acid or fatty acid spectrum or content.

[0759] Furthermore, plants are also covered that contain using recombinant DNA techniques a modified amount of ingredients or new ingredients, specifically to improve raw material production, e.g., potatoes that produce increased amounts of amylopectin (e.g. Amflora® potato, BASF SE, Germany).

[0760] Furthermore, it has been found that the the compositions according to the invention are also suitable for the defoliation and / or desiccation of plant parts, for which crop plants such as cotton, potato, oilseed rape, sunflower, soybean or field beans, in particular cotton, are s uitable. In this regard compositions have been found for the desiccation and / or defoliation of plants, processes for preparing these compositions, and methods for desiccating and / or defoliating plants using the compositions according

[0761] to the invention.

[0762] As desiccants, the compositions according to the invention are suitable in particular for desiccating the above-ground parts of crop plants such as potato, oilseed rape, sunflower and soybean, but also cereals. This makes possible the fully mechanical harvesting of these important crop plants.Also of economic interest is the facilitation of harvesting, which is made possible by concentrating within a certain period of time the dehiscence, or reduction of adhesion to the tree, in citrus fruit, olives and ot

[0763] her species and varieties of pomaceous fruit, stone fruit and nuts. The same mechanism, i.e. the promotion of the development of abscission tissue between fruit part or leaf part and shoot part of the plants is also essential for the controlled defoliation of useful plants, in particular cotton

[0764] Moreover, a shortening of the time interval in which the individual cotton plants mature leads to an increased fiber quality after harvesting.

[0765] The compounds I and compositions comprising compounds I have an outstanding herbicidal activity against undesired vegetation, i.e. against a broad spectrum of economically important harmful monocotyledonous and dicotyledonous weeds.

[0766] According to one embodiment, the compounds I or compositions comprising compounds of formula I are used to control monocotyledonous weeds, such as weeds from the genera Aegilops spp., Agropyron spp., Agrostis spp., AHsma spp., Alopecurus spp., Aneilema spp., Apera spp., Asphodelus spp., Avena spp., Axonopus spp., Bolboschoenus spp., Brachiaria spp., Bromus spp., Cenchrus spp., Chloris spp., Commelina spp., Cynodon spp., Cyperus spp., Dactyloctenium spp., Digitaria spp., Echinochloa spp., Echinodorus spp., Eichhornia spp., Eleocharis spp., Eleusine spp., Elymus spp., Eragrostis spp., Eriochloa spp., Fimbristylis spp., Heteranthera spp., Hordeum spp., Hydrilla spp., Imperata spp., Ischaemum spp., Kyllinga spp., Leersia spp., Leptochloa spp., Limnobium spp., Limnocharis spp., Lolium spp., Luziola spp., Melinis spp., Monochoria spp., Murdannia spp., Najas spp., Oryza spp., Ottochloa spp.,Panicum spp., Paspalum spp., Pennisetum spp., Phalaris spp., Phleum spp., Phragmites spp., Pistia spp., Poa spp., Puccinellia spp., Rottboellia spp., Sagittaria spp., Scirpus spp., Sclerochloa spp., Schoenoplectiella spp., Secale spp., Setaria spp., Sorghum spp., Spirodela spp., Urochloa spp., Zea spp..

[0767] Preferred examples of monocotyledonous weeds on which compounds I or compositions comprising compounds I act efficiently are selected from the species Aegilops cylindrica, Agropyron repens, AHsma canaliculatum, AHsma plantago-aquatica, AHsma lanceolatum, Alopecurus myosuroides, Apera spica-venti, Avena fatua, Avena sativa, Avena sterilis , Axonopus affinis, Bolboschoenus fluviatilis, Bolboschoenus koshevnikovii, Brachiaria decumbens, Brachiaria plantaginea, Brachiaria platyphylla, Bromus arvensis, Bromus diandrus, Bromus commutatus, Bromus inermis, Bromus japonicus, Bromus mollis, Bromusrigidus, Bromus rubens L., Bromus scoparius, Bromus secalinus L., Bromus sterilis, Bromus tectorum, Cenchrus echinatus, Chloris virgata, Commelina benghalensis, Commelina communis, Commelina diffusa, Commelina erecta, Commelina latifolia, Commelina virginica, Cynodon dactylon, Cyperus compressus, Cyperus difformis, Cyperus esculentus, Cyperus flaccidus, Cyperus globosus, Cyperus ferax, Cyperus iria, Cyperus kylingia, Cyperus malaccensis, Cyperus microiria, Cyperus nipponicus, Cyperus odoratus, Cyperus rotundus, Cyperus serotinus, Dactyloctenium aegyptium, Digitaria horizontalis, Digitaria insularis, Digitaria ischaemum, Digitaria sanguinalis, Eleocharis acicularis, Eleocharis kuroguwai, Eleusine indica, Elymus repens, Eragrostis pectinacea, Eriochloa acuminata, Eriochloa gracilis, Echinochloa coIonum, Echinochloa crus-galli, Eriochloa villosa, Hordeum murinum, Hordeum vulgare, Hydrilla verticillata, Kyllinga brevifolia, Kyllinga gracillima, Leptochloa filiformis, Leptochloa fusca, Leptochloa uninervia, Limnobium spongia, Limnocharis flava, Lolium multiflorum, Lolium perenne, Lolium rigidum, Melinis repens, Murdannia keisak, Najas guadalupensis, Oryza sativa, Ottochloa nodosa, Panicum capillare, Panicum dichotomiflorum, Panicum maximum, Panicum miliaceum, Pennisetum clandestinum, Pennisetum glaucum, Pistia stratiotes, Poa annua, Poa trivialis L, Sagittaria aginashi, Sagittaria montevidensis, Sagittaria pygmaea, Sagittaria sagittifolia, Sagittaria trifolia, Schoenoplectiella hotarui, Schoenoplectiella juncoides, Schoenoplectiella mucronatus, Schoenoplectiella nipponicus, Schoenoplectiella triangulatus, Schoenoplectiella triqueter, Schoenoplectiella wallichii, Secale cereale, Setaria faberi, Setaria glauca, Setaria italica, Setaria lutescens, Setaria palmifolia, Setaria pumila, Setaria verticillata, Setaria viridis, Sorghum halepense, Sorghum vulgare, Spirodela polyrhiza, Urochloa paricoides, Urochloa or Brachiaria platyphylla, Zea mays.

[0768] Especially preferred examples of monocotyledonous weeds on which compounds I or compositions comprising compounds I act efficiently are selected from the species Alopecurus spp., Echinochloa spp., Digitaria spp., Setaria spp., Eleusine spp. and Brachiarium spp..

[0769] According to another embodiment, the compounds I or compositions comprising compounds I are used to control dicotyledonous weeds, such as weeds selected from the genera Abutilon spp., Acalypha spp., Acanthospermum spp., Aeschynomene spp., Aethusa spp., Ageratum spp., Alternanthera spp., Amaranthus spp., Ambrosia spp., Ammannia spp., Ammi spp., Amsinckia spp., Anagallis spp., Anchusa spp., Andropogon spp., Anoda spp., Anthemis spp., Aphanes spp., Arabidopsis spp., Arenaria spp., Arctotheca spp., Argemone spp., Artemisia spp., Asclepias spp., Atriplex spp., AzoIla spp., Bacopa spp., Bidens spp., Borreria spp., Brassica spp., Buglossoides spp., Calandrinia spp., Callitriche spp., Calystegia spp., Camelina spp., Caperonia spp., Capsella spp., Cardamine spp., Cardiospermum spp.,Carduus spp., Cassia spp., Celosia spp., Centaurea spp., Cerastium spp., Ceratophyllum spp., Chenopodium spp., Chrysanthemum spp., Cirsium spp., Cleome spp., Conium spp., Consolida spp., Convolvulus spp., Conyza spp., Coronopus spp., Crassula spp., Crepisspp., Croton spp., Cyclospermum spp., Datura spp., Daucus spp., Descurainia spp., Desmodium spp., Draba spp., Echinocystis spp., Echium spp., Eclipta spp., Elatine spp., Emex spp., Emilia spp., Epilobium spp., Epimedium spp., Equisetum spp., Erechtites spp., Erigeron spp., Erodium spp., Erucastrum spp., Eupatorium spp., Euphorbia spp., Fallopia spp., Fumaria spp., Galeopsis spp., Galinsoga spp., Galium spp., Gamochaeta spp., Geranium spp., Glycine spp., Gnaphalium spp., Gossypium spp., Helianthus spp., Heliotropium spp., Hibiscus spp., Hydrocotyle spp., Hyoscyamus spp., Hypochaeris spp., Hyptis spp., Indigofera spp., Ipomoea spp., Jussiaea spp., Iva spp., Kallstroemia spp., Kochia spp., Lactuca spp., Lamium spp., Lapsana spp., Lathyrus spp., Leonotis spp., Leonurus spp., Lepidium spp., Lindernia spp., Ludwigia spp., Lupinus spp., Lythrum spp., Malva spp., Malvastrum spp., Marchantia spp., Matricaria spp., Medicago spp., Melilotus spp., Mercurialis spp., Mollugo spp., Momordica spp., Myagrum spp., Myosotis spp., Myriophyllum spp., Nicandra spp., Oenanthe spp., Oenothera spp., Orobanche spp., Oxalisspp., Papaver spp., Parietaria spp., Parthenium spp., Persicaria spp., Phyllanthus spp., Physalis spp., Pieris spp., Plantago spp., Polygonum spp., Portulaca spp., Potamogeton spp., Pueraria spp., Raphanus spp., Rapistrum spp., Richardia spp., Ricinus spp., Rorippa spp., Rotala spp., Rumex spp., Sagina spp., Salsola spp., Salvinia spp., Senecio spp., Senna spp., Sesbania spp., Sicyosspp., Sida spp., Silene spp., Silybum spp., Sinapis spp., Sisymbrium spp., Solanum spp., Solidago spp., Soliva spp., Sonchus spp., Spergula spp., Spermacoce spp., Sphenoclea spp., Stachys spp., Stellaria spp., Tagetes spp., Taraxacum spp., Thlaspi spp., Trianthema spp., Trib ulus spp., Tridax spp., Trifolium spp., Tripleurospermum spp., Urtica spp., Vaccaria spp., Veronica spp., Vicia spp., Vigna spp., Viola spp., Waltheria spp., Wedelia spp., Xanthium spp..

[0770] Preferred examples of dicotyledonous weeds on which the compounds I or compositions comprising compounds I act efficiently are selected from the species Abutilon theophrasti, Acalypha australis, Acalypha virginica, Acanthospermum australe, Acanthospermum hispidum, Aeschynomene indica, Aeschynomene rudis, Aethusa cynapium, Ageratum conyzoides, Alternanthera philoxeroides, Alternanthera repens, Alternanthera sess / 7 / s, Alternanthera tenella, Amaranthus albus, Amaranthus blitoides, Amaranthus blitum, Amaranthus chlorostachys, Amaranthus cruentus, Amaranthus deflexus, Amaranthus hybridus, Amaranthus lividus, Amaranthus palmer!, Amaranthus patulus, Amaranthus powellii, Amaranthus quitensis, Amaranthus retroflexus, Amaranthus rudis, Amaranthus spinosus, Amaranthus tamariscina, Amaranthus tuberculatus, Amaranthus viridis, Ambrosia artemisiifolia, Ambrosia elatior, Ambrosia trifida, Ammannia auriculata, Ammannia coccinea,Ammannia multiflora, Amsinckia intermedia, Amsinckia menziesii, Anagallis arvensis, Anchusa arvensis, Anchusa officinalis, Andropogon bicornis, Anoda cristata, Anthemis arvensis, Anthemis cotula, Aphanes arvensis, Arabidopsis arenosa, Arabidopsis thaliana, Arctotheca calendula, Argemone mexicana, Artemisia princeps, Artemisia verlotorum, Artemisia vulgaris, Asclepias syriaca, Atriplex patula, AzoIla japonica, AzoIla pinnata, Bidens bipinnata, Bidens frondosa, Bidens pilosa, Bidens subalternans, Bidens tripartita, Borreria alata, Brassica juncea, Brassica napus, Brassica nigra, Brassica rapa, Buglossoides arvensis, Calandrinia caulescens, Callitriche palustris, Calystegia hederacea, Calystegia japonica, Calystegia sepium, Camelina microcarpa, Caperonia palustris, Capsella bursa-pastoris, Cardamine pennsylvanica, Cardiospermum halicacabum, Carduus nutans, Carduus pycnocephalus , Cassia obtusifolia, Cassia occidentalis, Centaurea cyanus, Cerastium arvense, Cerastium glomeratum, Cerastium holosteoides, Cerastium vulgatum, Ceratophyllum demersum, Chenopodium album, Chenopodium ambrosioides, Chenopodium ficifolium, Chenopodium hybridum, Chenopodium pratericola, Chrysanthemum segetum, Cirsium arvense, Cirsium vulgare, Cleome affmis, Conium maculatum, Consolida regalis, Convolvulus althaeoides L, Convolvulus arvensis, Convolvulus equitans, Convolvulus japonicus, Convolvulus pellitus, Convolvulus sepium L, Conyza bonariensis, Conyza canadensis, Conyza sumatrensis, Coronopus didymus, Crassula colorata, Crassula sieberiana, Crepis tectorum, Croton capitatus, Croton glandulosus, Croton lobatus, Cyclospermum leptophyllum, Datura stramonium, Daucus carota, Descurainia pinnata, Descurainia sophia, Desmodium adscendens, Desmodium illinoense, Desmodium tortuosum, Draba verna, Echinocystis lobata, Echium plantagineum, Eclipta alba, Eclipta prostrata, Elatine californica, Elatine triandra, Emex australis, Emilia sonchifolia, Epilobium adenocaulon, Epilobium angustifolium, Epilobium paniculatum, Equisetum arvense, Equisetum palustre, Erechtites hieracifolia, Erigeron canadensis, Erigeron strigosus, Erodium cicutarium, Erodium moschatum, Erucastrum gallicum, Eupatorium perfoliatum, Euphorbia brasiliensis, Euphorbia cyparissias, Euphorbia esula, Euphorbia helioscopia, Euphorbia heterophylla, Euphorbia hirta, Euphorbia humistrata, Euphorbia maculata, Euphorbia supina, Fallopia convolvulus, Fumaria officinalis, Galeopsis ladanum, Galeopsis tetrahit, Galinsoga ciliata, Galinsoga parviflora, Galinsoga quadriradiata, Galium aparine, Galium spurium var. Echinospermon, Gamochaeta spicata, Geranium carolinense, Geranium carolinianum, Geranium dissectum, Geranium pusilium, Geranium rotundifolium, Glycine max, Gnaphalium obtusifolium, Gnaphalium purpureum, Gnaphalium spicatum, Gossypium hirsutum, Helianthus annuus, Heliotropium europaeum, Hibiscus trionum, Hydrocotyle ranunculoides, Hydrocotyle sibthorpioides, Hyoscyamus niger, Hypochaeris radicata, Hyptis lophanta, Hyptis suaveolens, Indigofera hirsuta, Indigofera truxillensis, Ipomoea acuminata, Ipomoeaaristolochiaefolia, Ipomoea cairica, Ipomoea coccinea, Ipomoea grandifolia, Ipomoea hederacea, Ipomoea hederifolia, Ipomoea lacunosa, Ipomoea nil, Ipomoea purpurea, Ipomoea quamodit, Ipomoea triloba, Ipomoea wrightii, Iva xanthifolia, Kochia scoparia, Lactuca serriola, Lamium amplexicaule, Lamium purpureum, Lapsana communis, Leonotis nepetaefolia, Leonurus sibiricus, Lepidium virginicum, Ludwigia decurrens, Ludwigia epilobioides, Ludwigia octovalvis, Lupinus angustifolius, Lythrum salicaria, Malva neglecta, Malva parviflora, Malvastrum coromandelianum, Marsilea quadrifolia, Matricaria chamomilla, Matricaria discoidea, Matricaria matricarioides, Matricaria perforata, Medicago polymorpha, Mercurialis annua, Mollugo verticillata, Momordica charantia, Myagrum perfoliatum, Myosotis arvensis, Myriophyllum aquaticum, Myriophyllum verticillatum, Oenanthe javanica, Oenothera biennis, Oenothera laciniata, Oxalis corniculata, Oxalis oxyptera, Oxalis stricta, Papaver dubium, Papaver rhoeas, Parthenium hysterophorus, Persicaria lapathifolia, Persicaria maculosa, Phyllanthus corcovadensis, Physalis angulata, Pieris echioides, Plantago asiatica, Plantago lanceolata, Plantago major, Polygonum aviculare, Polygonum convolvulus, Polygonum pensylvanicum, Polygonum persicaria, Portulaca oleracea, Pueraria lobata, Raphanus raphanistrum, Raphanus sativus, Rapistrum rugosum, Richardia brasiliensis, Richardia scabra, Ricinus communis, Rorippa islandica, Rorippa sylvestris, Rotala indica, Rumex acetosella, Rumex crispus, Rumex obtusifolius, Sagina procumbens, Salsola kali, Salsola tragus, Salvinia natans, Senecio brasiliensis, Senecio glabellus, Senecio vulgaris, Senna obtusifolia, Sesbania exaltata, Sesbania herbacea, Sicyos angulatus, Sida cordifolia, Sida glaziovii, Sida rhombifolia, Sida santaremnensis, Sida spinosa, Silene gallica, Silene noctiflora, Silybum marianum, Sinapis arvensis, Sisymbrium altissimum, Sisymbrium irio, Sisymbrium oficinale, Solanum nigrum, Solanum ptycanthum, Solanum saccharoides, Solanum triflorum, Solidago altissima, Soliva sess / 7 / s, Sonchus arvensis, Sonchus asper, Sonchus oleraceus, Spergula arvensis, Spermacoce latifolia, Spermacoce verticillata, Stachys arvensis, Stellaria aquatica, Stellaria media, Tagetes minuta, Taraxacum officinale, Thlaspi arvense, Tribulus terrestris, Tridax procumbens, Trifolium repens, Tripleurospermum inodorum, Urtica dioica, Urtica urens, Vaccaria pyramidata, Veronica hederifolia, Veronica persica, Vicia angustifolia, Vida benghalensis L, Vida cracca, Vicia sativa, Vicia villosa, Vigna sinensis, Viola arvensis, Waltheria indica, Wedelia glauca, Xanthium italicum, Xanthium ocddentale, Xanthium pensylvanicum, Xanthium strumarium.

[0771] Especially preferred examples of dicotyledonous weeds on which the compounds I or compositions comprising compounds I act efficiently are selected from the species Amaranthus spp., Erigeron spp., Conyza spp., Kochia spp. and Abutilon spp.Use examples

[0772] The following examples serve to illustrate the invention.

[0773] The herbicidal action of the compositions according to the invention was demonstrated by the following greenhouse experiments:

[0774] The culture containers used were plastic pots containing medium loamy sand with approximately 4.6% of humus and 69.9% sand as substrate. The seeds of the test plants were sown separately for each species.

[0775] For the post-emergence treatment, the test plants were grown to a plant height of from 1 to 18 cm, depending on the plant habit, and only then treated with the active compounds which had been formulated in water. To this end, the test plants were either sown directly, and grown in the same containers, or they were first grown separately as seedlings and transplanted into the test containers a few days prior to treatment.

[0776] Depending on the species, the plants were kept at 10 - 25°C and 20 - 35°C, respectively

[0777] The test period extended over 1 to 3 weeks. During this time, the plants were tended and their response to the individual treatments was evaluated 7-20 days after treatment.

[0778] Evaluation was carried out using a scale from 0 to 100%. 100% means dead plants and 0 means no damage or normal course of growth.

[0779] The expected efficacies of active compound combinations may be determined using Colby's formula (Colby, S.R. "Calculating synergistic and antagonistic responses of herbicide combinations", Weeds, 15, pp. 20-22, 1967) and compared with the observed efficacies. Colby's formula:

[0780] E = x + y - x ■ y / 100

[0781] E expected efficacy, expressed in % of the untreated control, when using the mixture of the active compounds A and B at the concentrations a and b. x efficacy, expressed in % of the untreated control, when using the active compound A at the concentration a.

[0782] y efficacy, expressed in % of the untreated control, when using the active compound B at the concentration b.If the value found experimentally is higher than the value E calculated according to Colby, a synergistic effect is present.

[0783] The plants used in the greenhouse experiments were of the following species:

[0784]

[0785] The results of these tests are given below in the use examples and demonstrate the synergistic effect of the mixtures comprising a compound of the formula I and a herbicide B. In this context, “ai” means herbicidal active ingrendient. “GS” means growth stage according to the BBCH-scale, whereas BBCH growth stages are as defined in “Growth stages of mono-and dicotyledonous plants”, BBCH Monograph edited by Uwe Meier Julius Kuhn-lnstitut (JKI), Open Agrar Repositorium, Quedlinburg 2018 DOI: 10.5073 / 20180906-074619 ISBN: 978-3-95547-071-5.

[0786] In the use examples below components A and B were separately formulated. The two formulations were then combined in an aqueous spray solution containing 1% MSO Lecitech adjuvant. MSO Lecitech adjuvant is a commercially available adjuvant which comprises methylated vegetable oil, alcohol ethoxylate and phosphatidylcholine. The spray solution was applied with an application volume of 200 L / ha.

[0787] In the use examples below component A was used as a 50 g / L EC formulation comprising compound 1-1 80% cyclohexanone and 20% Wettol EM 31.Use example 1

[0788] Component B: 2,4-D (herbicide b#108) was used as an SL formulation with 456 g / L loading

[0789] Use example 1.1: Synergistic herbicidal action with a mixture of compound 1-1 + 2,4-D (composition M1B.108) applied by the post-emergence method and evaluated 7 days after treatment.

[0790]

[0791] Use example 1.2: Synergistic herbicidal action with a mixture of compound 1-1 + 2,4-D applied by the post-emergence method and evaluated 20 days after treatment.

[0792]

[0793] Use example 2

[0794] Component B: bentazon (herbicide b#37) was used as an SL formulation with 480 g / L loading.

[0795] Use example 2.1 : Synergistic herbicidal action with a mixture of compound 1-1 + bentazon (composition M1B.37) applied by the post-emergence method and evaluated 7 days after treatment.

[0796]

[0797] Use example 2.2: Synergistic herbicidal action with a mixture of compound 1-1 + bentazon applied by the post-emergence method and evaluated 8 days after treatment.

[0798]

[0799]

[0800] Use example 2.3: Synergistic herbicidal action with a mixture of compound 1-1 + bentazon applied by the post-emergence method and evaluated 20 days after treatment.

[0801]

[0802] Use example 3

[0803] Component B: glyphosate (herbicide b#71) was used as an SL formulation with 480 g / L loading.

[0804] Use example 3.1 : Synergistic herbicidal action with a mixture of compound 1-1 + glyphosate (composition M1B.71) applied by the post-emergence method and evaluated 7 days after treatment.

[0805]

[0806] Use example 3.2: Synergistic herbicidal action with a mixture of compound 1-1 + glyphosate applied by the post-emergence method and evaluated 8 days after treatment.

[0807]

[0808] Use example 3.3: Synergistic herbicidal action with a mixture of compound 1-1 + glyphosate applied by the post-emergence method and evaluated 20 days after treatment.

[0809]

[0810] Use example 4

[0811] Component B: L-glufosinate ammonium (L-GA, herbicide b#77) was used as an SL formulation with 211 g / L loading.

[0812] Use example 4.1 : Synergistic herbicidal action with a mixture of compound 1-1 + L-GA (composition M1B.77) applied by the post-emergence method and evaluated 7 days after treatment.

[0813]

[0814] Use example 4.2: Synergistic herbicidal action with a mixture of compound 1-1 + L-GA applied by the post-emergence method and evaluated 8 days after treatment.

[0815]

[0816] Use example 4.3: Synergistic herbicidal action with a mixture of compound 1-1 + L-GA applied by the post-emergence method and evaluated 20 days after treatment.

[0817]

[0818] Use example 5

[0819] Component B: mesotrione (herbicide b#67) was used as an SL formulation with 211 g / L loading.

[0820] Use example 5.1: Synergistic herbicidal action with a mixture of compound 1-1 + mesotrione (composititon M1B.67) applied by the post-emergence method and evaluated 20 days after treatment.

[0821]

[0822] Use example 6

[0823] Component B: topramezone (herbicide b#64) was used as an SL formulation with 211 g / L loading.

[0824] Use example 6.1 : Synergistic herbicidal action with a mixture of compound 1-1 + topramezone (composition M1B.64) applied by the post-emergence method and evaluated 7 days after treatment.

[0825]

[0826] Use example 7

[0827] Component B: imazamox (herbicide b#15) was used as an WG solid formulation, 70% loading.

[0828] Use example 7.1: Synergistic herbicidal action with a mixture of compound 1-1 + imazamox (composition M1B.15) applied by the post-emergence method and evaluated 7 days after treatment.

[0829]

[0830] Use example 7.2: Synergistic herbicidal action with a mixture of compound 1-1 + imazamox applied by the post-emergence method and evaluated 8 days after treatment.

[0831]

[0832] Use example 7.3: Synergistic herbicidal action with a mixture of compound 1-1 + imazamox applied by the post-emergence method and evaluated 17 days after treatment.

[0833]

[0834] Use example 8

[0835] Component B: metsulfuron (herbicide b#26) was used as an SG formulation, 20% loading.

[0836] Use example 8.1: Synergistic herbicidal action with a mixture of compound 1-1 + metsulfuron (composition M1B.26) applied by the post-emergence method and evaluated 7 days after treatment.

[0837]

[0838] Use example 8.2: Synergistic herbicidal action with a mixture of compound 1-1 + metsulfuron applied by the post-emergence method and evaluated 17 days after treatment.

[0839]

Claims

1. Claims:

1. An herbicidal composition comprising as componentA) an alanine compound of formula IwhereinR1, R2and R3are each independently hydrogen, halogen, cyano, (Ci-C3)-alkyl, (Ci-C3)- haloalkyl, (Ci-C3)-alkoxy, or (Ci-C3)-haloalkoxy; andR4is hydrogen, (Ci-C6)-alkyl, (C2-C4)-alkenyl, (C3-C4)-alkynyl, (C3-C6)-cycloalkyl, (C3-C6)- cycloalkyl-(Ci-C3)-alkyl, phenyl-(Ci-C3)-alkyl, or furanyl-(Ci-C3)-alkyl, where each of the seven last-mentioned radicals is substituted with m radicals selected from the group consisting of fluorine, chlorine, bromine, cyano, -CO2Ra, -CONRbRc, (Ci-C2)-alkoxy, (Ci-C3)-alkylthio, (Ci-C3)-alkylsulfinyl, (Ci-C3)-alkylsulfonyl, phenylthio, phenylsulfinyl, and phenylsulfonyl;each Rais independently (Ci-C6)-alkyl, (C3-C4)-alkynyl, or (C3-C6)-cycloalkyl, wherein these radicals are substituted with m radicals selected from the group consisting of fluorine, chlorine, bromine, iodine, cyano, hydroxy, and (Ci-C3)-alkoxy; each Rbis independently hydrogen, (Ci-C6)-alkyl, (C3-C4)-alkynyl, or (C3-C6)-cycloalkyl, wherein the three last-mentioned radicals are substituted with m radicals selected from the group consisting of fluorine, chlorine, bromine, iodine, cyano, hydroxy, and (Ci-C3)-alkoxy;each Rcis independently hydrogen, (Ci-C6)-alkyl, (Ci-C2)-alkoxy, (C3-C6)-cycloalkyl, (C2- C4)-alkenyl, (Ci-C6)-alkoxycarbonyl-(Ci-C6)-alkyl, or (C2-C4)-alkynyl, wherein the six last-mentioned radicals are substituted with m radicals selected from the group consisting of fluorine, chlorine, bromine, cyano, CO2Ra, and (Ci-C2)- alkoxy;each m is independently 0, 1 , 2, 3, 4 or 5;including their agriculturally acceptable salts, stereoisomers, and tautomers;and as componentB) a further herbicide B selected from the groups B1) to B19):B1) Acetyl CoA Carboxylase (ACC) inhibitors;B2) Acetolactate Synthase inhibitors (ALS) inhibitors;B3) Photosynthesis inhibitors;B4) Protoporphyrinogen Oxidase (PPO) inhibitors;B5) Bleacher herbicides;B6) Enolpyruvyl Shikimate 3-Phosphate Synthase (EPSP) inhibitors;B7) Glutamine Synthetase inhibitors;B8) Dihydropteroate Synthase (DHPS) inhibitors;B9) Microtubule assembly and organization inhibitors;B10) Very Long-Chain Fatty Acid Synthesis (VLCFA) inhibitors;B11) Cellulose synthesis inhibitors;B12) Uncouplers;B13) Auxin mimics;B14) Auxin transport inhibitors; andB15) Dihydroorotate Dehydrogenase (DHODH) inhibitors;B16) Fatty Acid Thioesterase (FAT) inhibitors;B17) Serine-Threonine Protein Phosphatase (STPP) inhibitors;B18) Homogentisate Solanesyltransferase (HST) inhibitors;B19) other herbicides selected from the group consisting of amitrole, bensulide, dazomet, dymron (daimuron), etobenzanid, flamprop, flamprop-M, flurprimidol, maleic hydrazide, metam, napropamide, napropamide-M, oleic acid, pelargonic acid, perfluidone, pyributicarb, quinoclamine, 6- chloro-4-(2,7-dimethyl-1-naphthyl)-5-hydroxy-2-methyl-pyridazin-3-one; including their agriculturally acceptable salts, esters, stereoisomers, and tautomers.

2. The composition as claimed in claim 1 , comprising as component A an alanine compound of formula I, whereinR1is halogen;R2is hydrogen;R3is halogen; andR4is hydrogen, (Ci-C6)-alkyl, or (C3-C6)-cycloalkyl.

3. The composition as claimed in claim 1 , comprising as component A an alanine compound of formula I, whereinR1is fluorine, chlorine, or bromine;R2is hydrogen;R3is fluorine or chlorine; andR4is hydrogen or (Ci-C6)-alkyl.

4. The composition as claimed in claim 1 , comprising as component A an alanine compound selected from the group consisting of compounds 1-1 to 1-14:Compound 1-1:methyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2- ene-1 -carboxylate;Compound I-2:(1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1- carboxylic acid;Compound I-3:ethyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene- 1 -carboxylate;Compound I-4:isopropyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2- ene-1 -carboxylate;Compound I-5:2-methoxyethyl (1 S,4R)-4-[[(2R)-2-[(3,5- dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate;Compound I-6:isobutyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2- ene-1 -carboxylate;Compound I-7:methyl (1S,4R)-4-[[(2R)-2-[(3-chloro-5-fluoro-benzoyl)amino]propanoyl]amino]cyclopent- 2-ene-1 -carboxylate;Compound I-8:methyl (1S,4R)-4-[[(2R)-2-[(3,5-difluorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene- 1 -carboxylate;Compound I-9: methyl (1S,4R)-4-[[(2R)-2-[(3-bromo-5-chloro- benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate;Compound 1-10: methyl (1S,4R)-4-[[(2R)-2-[(3-bromo-5-fluoro- benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate;Compound 1-11:(1S,4R)-4-[[(2R)-2-[(3-chloro-5-fluoro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene- 1 -carboxylic acid;Compound 1-12:(1S,4R)-4-[[(2R)-2-[(3,5-difluorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1- carboxylic acid;Compound 1-13:(1S,4R)-4-[[(2R)-2-[(3-bromo-5-chloro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene- 1 -carboxylic acid;Compound 1-14:(1S,4R)-4-[[(2R)-2-[(3-bromo-5-fluoro-benzoyl)amino]propanoyl]amino]cyclopent-2-ene- 1 -carboxylic acid;including their agriculturally acceptable salts, stereoisomers, and tautomers.

5. The composition as claimed in claim 1 , comprising as component A an alanine compound selected from the group consisting of compounds 1-1, I-2, I-7, I-8 and I-9, Compound 1-1:methyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2- ene-1 -carboxylate;Compound I-2:(1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene-1- carboxylic acid;Compound I-3:ethyl (1S,4R)-4-[[(2R)-2-[(3,5-dichlorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene- 1 -carboxylate;Compound I-7:methyl (1S,4R)-4-[[(2R)-2-[(3-chloro-5-fluoro-benzoyl)amino]propanoyl]amino]cyclopent- 2-ene-1 -carboxylate;Compound I-8:methyl (1S,4R)-4-[[(2R)-2-[(3,5-difluorobenzoyl)amino]propanoyl]amino]cyclopent-2-ene- 1 -carboxylate;Compound I-9: methyl (1S,4R)-4-[[(2R)-2-[(3-bromo-5-chloro- benzoyl)amino]propanoyl]amino]cyclopent-2-ene-1 -carboxylate;including their agriculturally acceptable salts, stereoisomers, and tautomers.

6. The composition as claimed in claim 1 , comprising as component A alanine compound I- 1 including its agriculturally acceptable salts, stereoisomers, and tautomers.

7. The composition as claimed in any one of claims 1 to 6, wherein the component B is selected from herbicides of classes B2a, B3a, B5a, B6a, B7a, or B13a.

8. The composition as claimed in any one of claims 1 to 7, wherein the relative amount of the compound of formula I to component B is from 250:1 to 1:250.

9. The composition as claimed in any one of claims 1 to 7, wherein the relative amount of the compound of formula I to component B is from 20:1 to 1:20.

10. The composition as claimed in any one of claims 1 to 7, wherein the relative amount of the compound of formula I to component B is from 7:1 to 1:7.

11. An agrochemical composition comprising an herbicidal composition as claimed in any one of claims 1 to 10, and one or more inert liquid and / or solid carriers.

12. The use of a composition according to any one of claims 1 to 10, or an agrochemical composition as defined in claim 8, for controlling unwanted vegetation.

13. The use of a composition according to any one of claims 1 to 10, or an agrochemical composition as defined in claim 8, for controlling unwanted vegetation in fields where crop plants are cultivated.

14. The use according to claim 13 in a crop field wherein the crop plants are selected from cereals, corn, soybean, rice, millet, oilseed rape, cotton, sugarcane, potatoes, legumes, turf and permanent crops.

15. A method for controlling unwanted vegetation, which comprises allowing a composition according to any one of claims 1 to 10, or an agrochemical composition as defined in claim 11 , to act on plants, their seeds and / or their habitat.