Refrigerant-containing composition, its use, refrigeration method, and refrigeration device

A refrigerant mixture of HFO-1132(E) and hydrofluoroolefins addresses stability issues under high pressure and temperature, enhancing efficiency in heating and cooling systems.

JP7824537B2Active Publication Date: 2026-03-05DAIKIN INDUSTRIES LTD
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Patent Information

Application Number
JP2024010435
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-01-26
Publication Date
2026-03-05
Estimated Expiration
2044-01-26

AI Technical Summary

Technical Problem

Existing refrigerant mixtures do not effectively address the need for a novel refrigerant that can maintain stability under high pressure and temperature conditions while providing efficient heating and cooling capabilities.

Method used

A refrigerant composition comprising trans-1,2-difluoroethylene (HFO-1132(E)) and at least one hydrofluoroolefin, with a total mass percentage of 99.5% or more, and specific hydrofluoroolefins like CHF2CH=CH2, CH3CF=CH2, etc., to achieve a boiling point of -40°C or lower, enhancing stability and efficiency.

Benefits of technology

The refrigerant mixture maintains stability under high pressure and temperature conditions, enabling efficient heating and cooling, particularly in automotive air conditioners, and reduces power consumption in heat pumps.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a novel mixed refrigerant.SOLUTION: The present invention provides a refrigerant-containing composition, wherein the refrigerant comprises trans-1,2-difluoroethylene (HFO-1132(E) or E-HFO-1132) and at least one hydrofluoroolefin represented by the general formula CHXXCX=CHX (wherein X's are the same as or different from each other and each independently represent a hydrogen atom or a fluorine atom, and at least one of the X's is a fluorine atom), and wherein the refrigerant contains HFO-1132(E) and the hydrofluoroolefin in a total amount of 99.5 mass% or higher relative to the total mass of the refrigerant.SELECTED DRAWING: None
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Description

[Technical Field]

[0001] The present disclosure relates to compositions containing refrigerants, their uses, Refrigeration method and refrigeration device Regarding. [Background technology]

[0002] A mixed refrigerant containing at least one compound selected from the group consisting of three fluoroolefins having specific structures has been proposed (Patent Document 1). [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Special Publication No. 2009-518460 Summary of the Invention [Problem to be solved by the invention]

[0004] An object of the present disclosure is to provide a novel refrigerant mixture. [Means for solving the problem]

[0005] Section 1. A composition comprising a refrigerant, The refrigerant comprises trans-1,2-difluoroethylene (HFO-1132(E); or E-HFO-1132) and at least one hydrofluoroolefin represented by the general formula: CHXXCX=CHX (wherein X is the same or different and represents a hydrogen atom or a fluorine atom, and at least one X is a fluorine atom), A composition wherein the refrigerant comprises 99.5 mass% or more of HFO-1132(E) and the hydrofluoroolefin in total, based on the total amount of the refrigerant. Section 2. Item 1. The composition according to item 1, having a boiling point of -40°C or lower. Section 3. Item 1, wherein the hydrofluoroolefin is at least one hydrofluoroolefin selected from the group consisting of CHF2CH=CH2, CH3CF=CH2, CH3CH=CHF, E-CHF2CF=CHF, CHF2CF=CH2, CH2FCH=CH2, CH2FCF=CH2, E-CHF2CH=CHF, and Z-CHF2CH=CHF. or 2 The composition described in Section 4. Item 1, wherein the refrigerant contains HFO-1132(E) in an amount of 25 to 60% by mass based on the total amount of the refrigerant. Any one of ~3 The composition described in Section 5. the hydrofluoroolefin is CHF2CH=CH2, The refrigerant comprises: The total amount of HFO-1132(E) and the CHF2CH=CH2 is 99.5 mass% or more based on the total amount of the refrigerant; and the amount of HFO-1132(E) is 25 to 56 mass% based on the total amount of the refrigerant. Item 1 Any one of ~3 The composition described in Section 6. the hydrofluoroolefin is CHCF=CH, The refrigerant comprises: The total amount of HFO-1132(E) and the CHCF=CH is 99.5% by mass or more based on the total amount of the refrigerant; and the amount of HFO-1132(E) is 35 to 59% by mass based on the total amount of the refrigerant. Item 1 Any one of ~3 The composition described in Section 7. The refrigerant comprises: The total amount of HFO-1132(E) and the CH3CH=CHF is 99.5 mass% or more based on the total amount of the refrigerant; and the amount of HFO-1132(E) is 36 to 59 mass% based on the total amount of the refrigerant. Item 1 Any one of ~3 The composition described in Section 8. The refrigerant comprises: The total amount of HFO-1132(E) and the E-CHFCF=CHF is 99.5% by mass or more based on the total amount of the refrigerant; and the amount of HFO-1132(E) is 35 to 53% by mass based on the total amount of the refrigerant. Item 1 Any one of ~3 The composition described in term 9 . The refrigerant comprises: The total amount of HFO-1132(E) and the CHFCF=CH is 99.5% by mass or more based on the total amount of the refrigerant; and the amount of HFO-1132(E) is 31 to 59% by mass based on the total amount of the refrigerant. Item 1 Any one of ~3 The composition described in Section 10. Items 10. The composition according to any one of items 1 to 9, which is used as an alternative refrigerant to R12, R22, R134a, R404A, R407A, R407C, R407F, R407H, R410A, R413A, R417A, R422A, R422B, R422C, R422D, R423A, R424A, R426A, R427A, R430A, R434A, R437A, R438A, R448A, R449A, R449B, R449C, R452A, R452B, R454A, R454B, R454C, R455A, R465A, R502, R507, R513A, R1234yf, or R1234ze. Section 11. Item 10. The composition according to any one of items 1 to 9, which is a refrigerant for a heat pump or a refrigerant for an automotive air conditioner. Section 12. Item 10. The composition according to any one of items 1 to 9, which is a refrigerant for gasoline vehicles, hybrid vehicles, electric vehicles, or hydrogen vehicles. Section 13. Item 10. A refrigeration method comprising a step of operating a refrigeration cycle using the composition according to any one of Items 1 to 9. Section 14. 10. A refrigeration device comprising the composition according to any one of items 1 to 9 as a working fluid. Section 15. Item 10. Use of the composition according to any one of items 1 to 9 as a working fluid. [Effects of the Invention]

[0006] The present disclosure provides a new refrigerant mixture. DETAILED DESCRIPTION OF THE INVENTION

[0007] As a result of extensive research conducted by the present inventors to solve the above problems, they have found that various mixed refrigerants described below have the above properties.

[0008] The present disclosure has been completed as a result of further research based on this finding. The present disclosure includes the following embodiments. <Terminology> In this specification, the term "refrigerant" includes at least compounds assigned a refrigerant number (ASHRAE number) beginning with the letter R, which indicates the type of refrigerant, as defined by ISO817 (International Organization for Standardization), and also includes compounds that have equivalent refrigerant properties even if they have not yet been assigned a refrigerant number. Refrigerants are broadly classified into "fluorocarbon compounds" and "non-fluorocarbon compounds" in terms of their compound structure. "Fluorocarbon compounds" include chlorofluorocarbons (CFCs), hydrochlorofluorocarbons (HCFCs), and hydrofluorocarbons (HFCs).

[0009] In this specification, the term "composition containing a refrigerant" includes at least (1) a refrigerant itself (including a mixture of refrigerants), (2) a composition further containing other components and capable of being used to obtain a working fluid for a refrigerating machine by mixing with at least a refrigerating machine oil, and (3) a working fluid for a refrigerating machine containing a refrigerating machine oil. In this specification, of these three aspects, the composition (2) is referred to as a "refrigerant composition" to distinguish it from the refrigerant itself (including a mixture of refrigerants). , "a composition containing a refrigerant," or "a composition" In addition, the working fluid for a refrigerating machine in (3) is referred to as a "refrigerating machine oil-containing working fluid" to distinguish it from a "refrigerant composition." , or "working fluid" It is written as follows.

[0010] In this specification, the term "refrigerating machine" refers to a device that removes heat from an object or space, thereby lowering its temperature below that of the surrounding air, and maintaining that low temperature. In other words, a refrigerator is a conversion device that obtains energy from an external source, performs work, and converts it into energy in order to transfer heat from a low-temperature environment to a high-temperature environment.

[0011] In this specification, the term "vehicle air conditioner" refers to a type of refrigeration device used in automobiles such as gasoline vehicles, hybrid vehicles, electric vehicles, hydrogen vehicles, etc. The term "vehicle air conditioner" refers to a refrigeration device that has a refrigeration cycle in which heat is exchanged with a liquid refrigerant in an evaporator, the evaporated refrigerant gas is sucked into a compressor, the adiabatically compressed refrigerant gas is cooled and liquefied in a condenser, and the refrigerant is further adiabatically expanded by passing through an expansion valve, and then supplied to the evaporator again as a liquid refrigerant.

[0012] Pressures described in this specification are in units of absolute pressure unless otherwise specified.

[0013] Boiling points given in this specification are at standard atmospheric pressure unless otherwise specified.

[0014] 1. refrigerant The refrigerant of the present disclosure contains trans-1,2-difluoroethylene (HFO-1132(E)) and at least one hydrofluoroolefin represented by the general formula: CHXXCX=CHX (wherein X is the same or different and represents a hydrogen atom or a fluorine atom, and at least one X is a fluorine atom).

[0015] The refrigerant of the present disclosure preferably has a boiling point of -40°C or less.

[0016] The refrigerants of the present disclosure are preferably refrigerants that do not disproportionate at 150°C and 3 MPa.

[0017] The hydrofluoroolefin is preferably at least one hydrofluoroolefin selected from the group consisting of CHF2CH=CH2, CH3CF=CH2, CH3CH=CHF, E-CHF2CF=CHF, CHF2CF=CH2, CH2FCH=CH2, CH2FCF=CH2, E-CHF2CH=CHF, and Z-CHF2CH=CHF.

[0018] The refrigerant comprises: The total amount of HFO-1132(E) and the hydrofluoroolefin is 99.5% by mass or more based on the total amount of the refrigerant; and It is preferable that the refrigerant contains 25 to 60 mass % of HFO-1132(E) based on the total mass of the refrigerant.

[0019] The refrigerant comprises: The total amount of HFO-1132(E) and the hydrofluoroolefin is 99.5% by mass or more based on the total amount of the refrigerant; and It is preferable that the refrigerant contains 25 to 56 mass % of HFO-1132(E) based on the total mass of the refrigerant.

[0020] The refrigerant comprises: The total amount of HFO-1132(E) and the hydrofluoroolefin is 99.5% by mass or more based on the total amount of the refrigerant; and It is preferable that the refrigerant contains 35 to 59 mass % of HFO-1132(E) based on the total mass of the refrigerant.

[0021] The refrigerant comprises: The total amount of HFO-1132(E) and the hydrofluoroolefin is 99.5% by mass or more based on the total amount of the refrigerant; and It is preferable that the refrigerant contains 35 to 53 mass % of HFO-1132(E) based on the total mass of the refrigerant.

[0022] The refrigerant comprises: The total amount of HFO-1132(E) and the hydrofluoroolefin is 99.5% by mass or more based on the total amount of the refrigerant; and It is preferable that the refrigerant contains HFO-1132(E) in an amount of 31 to 50% by mass based on the total mass of the refrigerant.

[0023] The refrigerants of the present disclosure may contain additional refrigerants in addition to HFO-1132(E) and the hydrofluoroolefin, as long as the above-described properties and effects are not impaired. In this regard, the refrigerants of the present disclosure preferably contain 99.5 mass% or more of HFO-1132(E) and the hydrofluoroolefin, based on the total refrigerant, more preferably 99.75 mass% or more, even more preferably 99.9 mass% or more, even more preferably 99.999 mass% or more, and most preferably 99.9999 mass% or more. The refrigerants of the present disclosure may consist essentially of HFO-1132(E) and the hydrofluoroolefin. In this case, the refrigerants of the present disclosure may consist only of HFO-1132(E), the hydrofluoroolefin, and unavoidable impurities. Alternatively, the refrigerants of the present disclosure may consist solely of HFO-1132(E) and the hydrofluoroolefin.

[0024] The additional refrigerant is not particularly limited and can be selected from a wide range. The mixed refrigerant may contain one or more additional refrigerants. Examples of additional refrigerants include R32, acetylene, methylamine, HFO-1132a, HFO-1141, HFO-1123, HFC-143a, HFC-134a, Z-HFO-1132, HFO-1243zf, HFC-245cb, HCFC-1122, HCFC-124, CFC-1113, and 3,3,3-trifluoropropyne.

[0025] Furthermore, the refrigerant of the present disclosure, when having a boiling point of −40.0° C. or lower, has the advantage of being easily usable in heating using a heat pump. For example, when the refrigerant of the present disclosure is used to operate the refrigeration cycle of an automotive air conditioner, it has the advantage of enabling heating using a heat pump that consumes less power than an electric heater. Examples of automotive air conditioners include those for gasoline vehicles, hybrid vehicles, electric vehicles, and hydrogen vehicles.

[0026] 2. Refrigerant composition Refrigerant compositions of the present disclosure (Also referred to as "a composition containing a refrigerant" or "the composition.") The refrigerant composition of the present disclosure contains at least the refrigerant of the present disclosure and can be used for the same applications as the refrigerant of the present disclosure. In addition, the refrigerant composition of the present disclosure can be further mixed with at least a refrigerating machine oil to obtain a working fluid for a refrigerating machine. The refrigerant composition of the present disclosure contains at least one other component in addition to the refrigerant of the present disclosure. The refrigerant composition of the present disclosure may contain at least one of the following other components, as necessary. As described above, when the refrigerant composition of the present disclosure is used as a working fluid in a refrigerator, it is usually mixed with at least a refrigerating machine oil. Therefore, the refrigerant composition of the present disclosure is preferably substantially free of refrigerating machine oil. Specifically, the refrigerant composition of the present disclosure preferably contains refrigerating machine oil in an amount of 1 mass% or less, more preferably 0.1 mass% or less, relative to the total refrigerant composition.

[0027] 2.1 water The refrigerant composition of the present disclosure may contain a trace amount of water. The water content in the refrigerant composition is preferably 0.1 mass% or less based on the total refrigerant. When the refrigerant composition contains a trace amount of water, the intramolecular double bonds of unsaturated fluorocarbon compounds that may be contained in the refrigerant are stabilized, and oxidation of the unsaturated fluorocarbon compounds is also made less likely, thereby improving the stability of the refrigerant composition.

[0028] 2.2 tracer The tracer is added to the refrigerant composition of the present disclosure at a detectable concentration so that if the refrigerant composition of the present disclosure is diluted, contaminated, or otherwise altered, the tracer can be traced.

[0029] The refrigerant composition of the present disclosure may contain one type of tracer alone or two or more types of tracers.

[0030] The tracer is not particularly limited and can be appropriately selected from commonly used tracers.

[0031] Examples of tracers include hydrofluorocarbons, hydrochlorofluorocarbons, chlorofluorocarbons, hydrochlorocarbons, fluorocarbons, deuterated hydrocarbons, deuterated hydrofluorocarbons, perfluorocarbons, fluoroethers, brominated compounds, iodinated compounds, alcohols, aldehydes, ketones, nitrous oxide (NO), etc. Particularly preferred tracers are hydrofluorocarbons, hydrochlorofluorocarbons, chlorofluorocarbons, hydrochlorocarbons, fluorocarbons, and fluoroethers.

[0032] The following compounds are preferred as tracers: FC-14 (tetrafluoromethane, CF4) HCC-40 (chloromethane, CH3Cl) HFC-23 (trifluoromethane, CHF3) HFC-41 (fluoromethane, CH3F) HFC-125 (pentafluoroethane, CF3CHF2) HFC-134a (1,1,1,2-tetrafluoroethane, CF3CH2F) HFC-134 (1,1,2,2-tetrafluoroethane, CHF2CHF2) HFC-143a (1,1,1-trifluoroethane, CF3CH3) HFC-143 (1,1,2-trifluoroethane, CHF2CH2F) HFC-152 (1,2-difluoroethane, CH2FCH2F) HFC-161 (fluoroethane, CH3CH2F) HFC-245fa (1,1,1,3,3-pentafluoropropane, CF3CH2CHF2) HFC-236fa (1,1,1,3,3,3-hexafluoropropane, CF3CH2CF3) HFC-236ea (1,1,1,2,3,3-hexafluoropropane, CF3CHFCHF2) HFC-227ea (1,1,1,2,3,3,3-heptafluoropropane, CF3CHFCF3) HCFC-22 (chlorodifluoromethane, CHClF2) HCFC-31 (chlorofluoromethane, CH2ClF) CFC-1113 (chlorotrifluoroethylene, CF2=CClF) HFE-125 (trifluoromethyl-difluoromethyl ether, CF3OCHF2) HFE-134a (trifluoromethyl-fluoromethyl ether, CF3OCH2F) HFE-143a (trifluoromethyl methyl ether, CF3OCH3) HFE-227ea (trifluoromethyl-tetrafluoroethyl ether, CF3OCHFCF3) HFE-236fa (trifluoromethyl-trifluoroethyl ether, CF3OCH2CF3)

[0033] The refrigerant compositions of the present disclosure may contain a total of about 10 parts per million (ppm) by weight or more of tracers based on the total refrigerant composition. The refrigerant compositions of the present disclosure may contain a total of about 1000 ppm or less of tracers based on the total refrigerant composition. The refrigerant compositions of the present disclosure may contain a total of about 30 ppm or more of tracers based on the total refrigerant composition, more preferably about 50 ppm or more of tracers based on the total refrigerant composition. The refrigerant compositions of the present disclosure may contain a total of about 500 ppm or less of tracers based on the total refrigerant composition, and may contain a total of about 300 ppm or less of tracers based on the total refrigerant composition.

[0034] 2.3 UV fluorescent dye The refrigerant composition of the present disclosure may contain one type of ultraviolet fluorescent dye alone or two or more types.

[0035] The ultraviolet fluorescent dye is not particularly limited and can be appropriately selected from among commonly used ultraviolet fluorescent dyes.

[0036] Examples of ultraviolet fluorescent dyes include naphthalimide, coumarin, anthracene, phenanthrene, xanthene, thioxanthene, naphthoxanthene, and fluorescein, and derivatives thereof. As the ultraviolet fluorescent dye, either or both of naphthalimide and coumarin are particularly preferred.

[0037] 2.4 stabilizers The refrigerant composition of the present disclosure may contain one type of stabilizer alone or two or more types.

[0038] The stabilizer is not particularly limited and can be appropriately selected from commonly used stabilizers.

[0039] Examples of stabilizers include nitro compounds, ethers, and amines.

[0040] Examples of nitro compounds include aliphatic nitro compounds such as nitromethane and nitroethane, and aromatic nitro compounds such as nitrobenzene and nitrostyrene.

[0041] An example of the ethers is 1,4-dioxane.

[0042] Examples of amines include 2,2,3,3,3-pentafluoropropylamine and diphenylamine.

[0043] Other examples include butylhydroxyxylene and benzotriazole.

[0044] The stabilizer content is preferably 0.01% by mass or more, more preferably 0.05% by mass or more, based on the total mass of the refrigerant, and is preferably 5% by mass or less, more preferably 2% by mass or less, based on the total mass of the refrigerant.

[0045] 2.5 Polymerization inhibitor The refrigerant composition of the present disclosure may contain one type of polymerization inhibitor alone, or may contain two or more types.

[0046] The polymerization inhibitor is not particularly limited and can be appropriately selected from among commonly used polymerization inhibitors.

[0047] Examples of the polymerization inhibitor include 4-methoxy-1-naphthol, hydroquinone, hydroquinone methyl ether, dimethyl-t-butylphenol, 2,6-di-tert-butyl-p-cresol, and benzotriazole.

[0048] The content of the polymerization inhibitor is preferably 0.01% by mass or more, more preferably 0.05% by mass or more, based on the total mass of the refrigerant, and is preferably 5% by mass or less, more preferably 2% by mass or less, based on the total mass of the refrigerant.

[0049] 3. Working fluid containing refrigeration oil Refrigerant oil-containing working fluid of the present disclosure (Also referred to as "working fluid"). The refrigerant oil-containing working fluid contains at least the refrigerant or refrigerant composition of the present disclosure and a refrigerating machine oil, and is used as a working fluid in a refrigerator. Specifically, the refrigerating machine oil-containing working fluid of the present disclosure is obtained by mixing the refrigerating machine oil used in the compressor of the refrigerator with the refrigerant or refrigerant composition. The refrigerating machine oil-containing working fluid generally contains 10 mass% or more of the refrigerating machine oil. The refrigerating machine oil-containing working fluid generally contains 50 mass% or less of the refrigerating machine oil.

[0050] 3.1 Refrigerating machine oil The composition of the present disclosure may contain one type of refrigerating machine oil alone, or may contain two or more types of refrigerating machine oils.

[0051] The refrigerating machine oil is not particularly limited and can be appropriately selected from commonly used refrigerating machine oils. In this case, if necessary, a refrigerating machine oil that is superior in terms of miscibility with the mixture and the effect of improving the stability of the mixture can be appropriately selected.

[0052] The base oil of the refrigerating machine oil is preferably at least one selected from the group consisting of polyalkylene glycol (PAG), polyol ester (POE), and polyvinyl ether (PVE).

[0053] The refrigerating machine oil may further contain, in addition to the base oil, an additive such as at least one selected from the group consisting of an antioxidant, an extreme pressure agent, an acid scavenger, an oxygen scavenger, a copper deactivator, a rust inhibitor, an oiliness agent, and an antifoaming agent.

[0054] From the viewpoint of lubrication, a refrigerating machine oil having a kinematic viscosity at 40°C of 5 cSt or more is preferred. In addition, from the viewpoint of lubrication, a refrigerating machine oil having a kinematic viscosity at 40° C. of 400 cSt or less is preferred.

[0055] The refrigerating machine oil-containing working fluid of the present disclosure may further contain at least one additive, if necessary. Examples of the additive include the following compatibilizers.

[0056] 3.2 Compatibilizer The refrigerating machine oil-containing working fluid of the present disclosure may contain one type of compatibilizer alone or two or more types.

[0057] The compatibilizer is not particularly limited and can be appropriately selected from among commonly used compatibilizers.

[0058] Examples of the compatibilizer include polyoxyalkylene glycol ether, amide, nitrile, ketone, chlorocarbon, ester, lactone, aryl ether, fluoroether, and 1,1,1-trifluoroalkane, etc. Polyoxyalkylene glycol ether is particularly preferred as the compatibilizer.

[0059] 4.1 Freezing method The freezing method of the present disclosure is a freezing method that uses the composition of the present disclosure. Specifically, the refrigeration method of the present disclosure includes operating a refrigeration cycle using the composition of the present disclosure described above. 4. 2 How to operate a refrigerator The method for operating a refrigerator according to the present disclosure is a method for operating a refrigerator using the refrigerant according to the present disclosure.

[0060] Specifically, a method of operating a refrigerator according to the present disclosure includes circulating a refrigerant according to the present disclosure in the refrigerator.

[0061] 5. Method for suppressing disproportionation reaction The method for suppressing the disproportionation reaction of the present disclosure is a method for suppressing the disproportionation reaction of HFO-1132(E), which includes a step of operating a refrigeration cycle using the refrigerant of the present disclosure.

[0062] The method for suppressing the disproportionation reaction disclosed herein has the effect of preventing the disproportionation reaction of HFO-1132(E) from occurring, particularly when the refrigerant pressure is 3.0 MPa and the refrigerant temperature is 150°C.

[0063] According to the method for suppressing a disproportionation reaction disclosed herein, it is possible to operate a refrigeration cycle while suppressing a disproportionation reaction even in a refrigerator that is not particularly provided with a means for suppressing a disproportionation reaction.

[0064] 6. Use for inhibiting disproportionation reactions The use of the present disclosure is a use of at least one hydrofluoroolefin represented by the general formula: CHXXCX=CHX (X may be the same or different and is a hydrogen atom or a fluorine atom) to suppress the disproportionation reaction of HFO-1132(E), and the suppression of the disproportionation reaction is achieved by mixing HFO-1132(E) and the hydrofluoroolefin at a mixing ratio that satisfies the refrigerant of the present disclosure.

[0065] When used to inhibit disproportionation reactions according to the present disclosure, the effect is particularly pronounced in that the disproportionation reaction of HFO-1132(E) does not occur even when the refrigerant pressure is 3.0 MPa and the refrigerant temperature is 150°C. 7. Use as an alternative refrigerant The compositions of the present disclosure are preferably used as replacement refrigerants for R12, R22, R134a, R404A, R407A, R407C, R407F, R407H, R410A, R413A, R417A, R422A, R422B, R422C, R422D, R423A, R424A, R426A, R427A, R430A, R434A, R437A, R438A, R448A, R449A, R449B, R449C, R452A, R452B, R454A, R454B, R454C, R455A, R465A, R502, R507, R513A, R1234yf, or R1234ze. 8. Use as a working fluid The compositions of the present disclosure can be used as working fluids. That is, the use of the present disclosure is the use of the composition of the present disclosure described above as a working fluid. 9. Refrigeration equipment The refrigeration device of the present disclosure comprises the composition described above. That is, the refrigeration device of the present disclosure is a refrigeration device that contains the above-described composition of the present disclosure as a working fluid.

[0066] Although the embodiments have been described above, it will be understood that various changes in form and details can be made without departing from the spirit and scope of the claims. [Example]

[0067] The present disclosure will be described in more detail below with reference to examples, but is not limited to these examples.

[0068] Mixed refrigerants were prepared by mixing HFO-1132(E) and the example CHXXCX=CHX in the mass percentages shown in each table, based on the sum of these.

[0069] Each of these mixed refrigerants was examined for the presence or absence of disproportionation reaction using the following test method and test conditions. Test Method The refrigerant composition to be tested was transferred and filled into a test vessel and heated to 150°C. A voltage was then applied to a Pt wire inside the vessel, causing it to melt and break, thereby giving the refrigerant composition 30 J of energy. The presence or absence of a disproportionation reaction was determined by a sudden increase in pressure and temperature inside the device. Test conditions Test container: 38cc SUS container Test temperature: 150℃ Pressure: 3 MPa Judgment criteria "No explosion": The temperature or pressure after Pt fusing is less than doubled, and no sudden disproportionation reaction occurs. "Explosion": The temperature or pressure after Pt wire melting reached more than double the normal value, causing a sudden disproportionation reaction. [Table 1] In addition, a mixed refrigerant was prepared using HFO-1132(E), which has a boiling point of -52.6°C, and the CHXXCX=CHX example, and the concentration of HFO-1132(E) that resulted in a boiling point of -40°C was investigated. Table 2 shows the boiling points of substances with example molecular formulas, the concentration of HFO-1132(E) when the boiling point of a mixture of the substance shown by the molecular formula with HFO-1132(E) is -40°C, and the concentration of HFO-1132(E) when the mixture of the substance shown by the molecular formula with HFO-1132(E) reaches the disproportionation limit of HFO-1132(E). [Table 2]

Claims

1. A composition comprising a refrigerant, The refrigerant contains trans-1,2-difluoroethylene (HFO-1132(E); or E-HFO-1132) and at least one hydrofluoroolefin represented by the general formula: CHXXCX=CHX (X may be the same or different and is a hydrogen atom or a fluorine atom, at least one X being a fluorine atom), The hydrofluoroolefin is CHF 2 CH=CH 2 , C.H. 3 CF=CH 2 , C.H. 3 CH=CHF, E-CHF 2 CF=CHF, CHF 2 CF=CH 2 , C.H. 2 FCH=CH 2 , C.H. 2 FCF=CH 2 , E-CHF 2 CH=CHF, Z-CHF 2 at least one hydrofluoroolefin selected from the group consisting of CH═CHF; A composition wherein the refrigerant contains 99.5 mass% or more of HFO-1132(E) and the hydrofluoroolefin in total, based on the total amount of the refrigerant, and when the following hydrofluoroolefins are used, the HFO-1132(E) content relative to the total amount of the refrigerant is as follows: When CHF 2 CH═CH 2 is used, the content of HFO-1132(E) is 25 to 56 mass% When CH 3 CF═CH 2 is used, the content of HFO-1132(E) is 35 to 59 mass% When CH 3 CH=CHF is used, the content of HFO-1132(E) is 36 to 59 mass% When E-CHF 2 CF=CHF is used, the content of HFO-1132(E) is 31 to 50 mass% When CHF 2 CF=CH 2 is used, the content of HFO-1132(E) is 35 to 53 mass% When CH 2 FCH=CH 2 is used, the content of HFO-1132(E) is 47 to 60 mass% When CH 2 FCF=CH 2 is used, the content of HFO-1132(E) is 41 to 56 mass% When E-CHF 2 CH=CHF is used, the content of HFO-1132(E) is 37 to 54 mass% When Z-CHF 2 CH=CHF is used, the content of HFO-1132(E) is 37 to 54 mass%

2. 2. The composition of claim 1, wherein the boiling point is −40° C. or lower.

3. 3. The composition according to claim 1 or 2, which is used as a replacement refrigerant for R12, R22, R134a, R404A, R407A, R407C, R407F, R407H, R410A, R413A, R417A, R422A, R422B, R422C, R422D, R423A, R424A, R426A, R427A, R430A, R434A, R437A, R438A, R448A, R449A, R449B, R449C, R452A, R452B, R454A, R454B, R454C, R455A, R465A, R502, R507, R513A, R1234yf or R1234ze.

4. The composition according to claim 1 or 2, which is a refrigerant for a heat pump or a refrigerant for an automotive air conditioner.

5. 3. The composition according to claim 1, which is a refrigerant for gasoline vehicles, hybrid vehicles, electric vehicles, or hydrogen vehicles.

6. A refrigeration method comprising the step of operating a refrigeration cycle using the composition of claim 1 or 2.

7. A refrigeration system comprising the composition of claim 1 or 2 as a working fluid.

8. 3. Use of the composition according to claim 1 or 2 as a working fluid.

Citation Information

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