Liquid fragrance and cleaning agent composition for flush toilets
The liquid fragrance and cleaning agent composition for flush toilets, featuring specific surfactants and cationic agents, stabilizes viscosity and solubilizes fragrances, addressing viscosity changes and gelation issues, ensuring consistent dispensing and cleaning efficacy across temperature and water exposure.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- KOBAYASHI PHARMA CO LTD
- Filing Date
- 2026-03-03
- Publication Date
- 2026-05-01
AI Technical Summary
Existing liquid toilet cleaners are prone to viscosity changes and gelation due to temperature fluctuations and water contact, leading to inconsistent dispensing and cleaning efficacy.
A liquid fragrance and cleaning agent composition for flush toilets using a polyoxyethylene alkyl ether type nonionic surfactant with a cloud point greater than 80°C and a viscosity of 60-800 mPa·s at 25°C, combined with a fragrance component, and optionally polyoxyalkylene alkyl ether type nonionic surfactant and cationic surfactants, to maintain stability and solubility across temperature changes and water exposure.
The composition maintains consistent viscosity and solubilizes various fragrances, ensuring uniform discharge and effective cleaning regardless of temperature or water contact, allowing for diverse scent options without formulation adjustments.
Smart Images

Figure 2026074383000001 
Figure 2026074383000002 
Figure 2026074383000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a liquid fragrance and cleaning agent composition for flush toilets. More specifically, the present invention relates to a liquid fragrance and cleaning agent composition for flush toilets that does not gel and is less susceptible to viscosity changes even when exposed to temperature changes or contact with water. [Background technology]
[0002] Liquid toilet cleaners are generally used in containers with a discharge hole. The liquid cleaner discharged from the container mixes with the flush water, allowing the toilet bowl to be cleaned with the cleaner during flushing. Conventionally, liquid toilet cleaners have been used by being placed on the hand-washing area of a toilet, or by being attached to the rim of the toilet bowl. Such liquid toilet cleaners have advantages in terms of ease of use, such as being easy to install, allowing for simple toilet bowl cleaning, and allowing for easy confirmation of the remaining amount of cleaner, and are widely available today.
[0003] For liquid toilet cleaners, it is important to design them so that the amount dispensed from the container is consistent each time they are used, ensuring stable cleaning action with every use. In particular, the indoor space of a toilet generally experiences temperature fluctuations throughout the year. Such temperature changes can cause significant fluctuations in the viscosity of the liquid toilet cleaner or lead to gelation, which in turn causes fluctuations in the amount dispensed from the container and prevents it from achieving the desired cleaning action. Furthermore, while the liquid toilet cleaner is designed to be dispensed in an appropriate amount and mixed with flush water, flush water can inevitably flow back into the liquid toilet cleaner in the container. Because liquid toilet cleaners contain high concentrations of cleaning components, when flush water is mixed in in this way, it can cause changes in viscosity or gelation, resulting in uneven dispensing from the container each time. Therefore, formulations that can maintain a certain viscosity without gelation even when subjected to temperature changes or water contamination have been investigated for liquid toilet cleaners. For example, Patent Document 1 reports that a liquid cleaning composition containing a nonionic surfactant that is fluid at 20°C, a nonionic surfactant that is not fluid at 20°C, a polyoxyethylene polyoxypropylene block polymer, and water in specific ratios is less susceptible to viscosity changes due to temperature changes or the addition of water, and can suppress uneven discharge from containers. Furthermore, Patent Document 2 reports that a liquid fragrance cleaning composition containing 40-95% by weight of a polyoxyalkylene alkyl ether type nonionic surfactant of a specific structure and 5-60% by weight of a fragrance can exhibit excellent cleaning action without gelling even when in contact with water over a wide temperature range, despite containing high concentrations of surfactant and fragrance. Moreover, Patent Document 3 reports that a liquid fragrance cleaning composition containing two specific types of polyoxyalkylene alkyl ether type nonionic surfactants along with a fragrance can solubilize fragrance components regardless of the type of fragrance component, and is less susceptible to viscosity changes without gelling even with temperature changes or the addition of water. [Prior art documents] [Patent Documents]
[0004] [Patent Document 1] Japanese Patent Publication No. 2009-84456 [Patent Document 2] Japanese Patent Publication No. 2004-182902 [Patent Document 3] Japanese Patent Publication No. 2013-221119 [Overview of the project] [Problems that the invention aims to solve]
[0005] Regarding liquid fragrance and cleaning agent compositions for flush toilets that are resistant to changes in physical properties due to temperature changes or contact with water, useful technologies are described in Patent Documents 1 to 3. However, in order to diversify formulations, the development of new formulations is required.
[0006] Therefore, the present invention aims to provide a liquid fragrance cleaning agent composition for flush toilets that does not gel and is less prone to viscosity changes even when exposed to temperature changes or the addition of water. [Means for solving the problem]
[0007] The inventors of the present invention conducted diligent studies to solve the above problems and found that (A) carbon atoms with 11 to 15 A liquid fragrance and cleaning agent composition for flush toilets, comprising a polyoxyethylene alkyl ether type nonionic surfactant having an alkyl group and a cloud point greater than 80°C in a 1% by weight aqueous solution, and (B) a fragrance component, and having a viscosity of 60-800 mPa·s at 25°C, has been found to be less prone to gelation and viscosity changes even with temperature changes or the addition of water. The present invention was completed by further investigation based on these findings.
[0008] In other words, the present invention provides inventions in the following embodiments. Item 1. (A) Polyoxyethylene alkyl ether type nonionic surfactant represented by the following general formula (1), having a cloud point greater than 80°C in a 1% by weight aqueous solution. [ka] [In general formula (1), R 1 is a linear or branched alkyl group having 11 to 15 carbon atoms, EO is an oxyethylene group, a is the average number of moles of added EO, and a ≧ 3.], and (B) a fragrance component, and has a viscosity at 25 °C of 60 to 800 mPa·s, a liquid aromatic cleaning composition for a flush toilet. Item 2. Further, the liquid aromatic cleaning composition for a flush toilet according to Item 1, containing (C) a polyoxyalkylene alkyl ether type nonionic surfactant represented by general formula (2). [Chemical formula] [In general formula (2), R 2 is a linear or branched alkyl group having 8 to 10 carbon atoms, EO is an oxyethylene group, PO is an oxypropylene group, b is the average number of moles of added EO, b ≧ 5, c is the average number of moles of added PO, 0 ≦ c, [(EO) b / (PO) c indicates random addition or block addition of EO and PO.] Item 3. Further, the liquid aromatic cleaning composition for a flush toilet according to Item 1 or 2, containing at least one cationic surfactant selected from the group consisting of a halide of trialkylbenzylammonium represented by the following general formula (3) and a sulfate of trialkylammonium represented by the following general formula (4). [Chemical formula] [In general formula (3), R 31 is a linear or branched alkyl group having 8 to 18 carbon atoms, R 32 and and R 33 are the same or different and are linear or branched alkyl groups having 1 to 4 carbon atoms, and X represents a halogen atom.] [Chemical formula] [In general formula (4), R 41 and R 42 These are identical or different linear or fractional chains with 6 to 18 carbon atoms. Branched alkyl group, R 43 and R 44 R is a linear or branched alkyl group having 1 to 4 carbon atoms, either identical or different. 45 This represents a linear or branched alkyl group or hydrogen atom having 1 to 4 carbon atoms. Item 4. A liquid fragrance and cleaning agent composition for flush toilets according to any one of items 1 to 3, wherein in the general formula (1) above, a is 3 ≤ a ≤ 30. Item 5. A liquid fragrance and cleaning agent composition for flush toilets according to any one of items 1 to 4, comprising 1 to 60% by weight of component (A) and 0.1 to 20% by weight of component (B). Item 6. A liquid fragrant and cleaning agent composition for flush toilets, as described in any of Items 1 to 5, for use as an on-tank application in flush toilets. Item 7. A liquid fragrance cleaning agent composition for flush toilets, as described in any of Items 1 to 5, for use on the rim of a flush toilet. [Effects of the Invention]
[0009] The liquid fragrance and cleaning agent composition for flush toilets of the present invention is less susceptible to viscosity changes even when exposed to temperature changes caused by seasons, regions, etc., and is also less susceptible to viscosity changes even when water is mixed in. Therefore, it is possible to suppress unevenness in the amount discharged from the container and maintain a constant amount discharged from the container each time.
[0010] Furthermore, in one embodiment of the liquid fragrant and cleaning agent composition for flush toilets of the present invention, all types of fragrance components can be solubilized regardless of their structure or properties. Therefore, by adopting a single basic formulation, it becomes possible to provide multiple types of liquid fragrant and cleaning agents for flush toilets with different scents. Consequently, in one embodiment of the liquid fragrant and cleaning agent composition for flush toilets of the present invention, it becomes unnecessary to design individual formulations according to the type of fragrance component used, making it possible to easily provide liquid fragrant and cleaning agent compositions for flush toilets exhibiting various scents and making it easier to keep up with the diversification of consumers' preferences for scents. [Modes for carrying out the invention]
[0011] The liquid fragrant cleaning agent composition for flush toilets of the present invention is characterized by comprising (A) a polyoxyethylene alkyl ether type nonionic surfactant having a specific structure with an alkyl group having 11 to 15 carbon atoms and a cloud point greater than 80°C in a 1% by weight aqueous solution, and (B) a fragrance component, and having a viscosity of 60 to 800 mPa·s at 25°C. The liquid fragrant cleaning agent composition for flush toilets of the present invention will be described in detail below.
[0012] [(A) Polyoxyethylene alkyl ether type nonionic surfactant] The liquid fragrant and cleaning agent composition for flush toilets of the present invention contains a polyoxyethylene alkyl ether type nonionic surfactant (sometimes referred to as component (A)) represented by the following general formula (1), having a cloud point of over 80°C in a 1% by weight aqueous solution. By using this specific polyoxyethylene alkyl ether type nonionic surfactant, the liquid fragrant and cleaning agent composition for flush toilets of the present invention can be made less prone to gelation and viscosity changes even with temperature changes or the addition of water. [ka]
[0013] In general formula (1), R 1 R represents a linear or branched alkyl group having 11 to 15 carbon atoms. 1 Preferably, branched alkyl groups having 12 to 14 carbon atoms are mentioned. Also, R in general formula (1) 1 A preferred example is a branched alkyl group represented by the following general formula (11). [ka]
[0014] In general formula (11), n and m are either the same or different integers greater than or equal to 0, and n+m is between 8 and 12, preferably between 9 and 11.
[0015] In general formula (1), EO represents an oxyethylene group. Also, a represents the average number of moles of EO added, where a ≥ 3. Preferably, the average number of moles of EO added a is 3 ≤ a ≤ 30, more preferably 5 ≤ a ≤ 20, and even more preferably 8 ≤ a ≤ 15.
[0016] The component (A) used in the present invention has the structure shown by the general formula (1) and has a cloud point greater than 80°C when it is dissolved in a 1% by weight aqueous solution. Specifically, the cloud point of component (A) is 81 to 93°C, preferably 81 to 86°C, and more preferably 82 to 84°C. Here, the cloud point is a value determined by dissolving the surfactant to be measured in purified water at a concentration of 1% by weight and using the measurement method described in ISO 1065-1991.
[0017] The HLB value of component (A) used in the present invention is not particularly limited, but for example, it is 10.0 to 18.0, preferably 12.0 to 16.5, and more preferably 13.0 to 15.5. Here, the HLB value of component (A) is a value calculated by the Griffin method. ru.
[0018] In the liquid fragrance cleaning agent composition for flush toilets of the present invention, one polyoxyethylene alkyl ether type nonionic surfactant satisfying the above structure and cloud point may be used alone as component (A), or two or more may be used in combination.
[0019] In the liquid fragrance cleaning agent composition for flush toilets of the present invention, the content of component (A) can be, for example, 1 to 60% by weight, preferably 10 to 50% by weight, and more preferably 20 to 40% by weight.
[0020] [(B) Fragrance] The liquid fragrant cleaning agent composition for flush toilets of the present invention contains, in addition to component (A), a fragrance component (sometimes simply referred to as component (C)). By including the fragrance component in this way, a desired fragrance can be imparted to the toilet space.
[0021] The type of fragrance component contained in the liquid fragrant cleaning agent composition for flush toilets of the present invention may be appropriately selected according to the desired fragrance. Examples include natural fragrances, as well as synthetic fragrances such as hydrocarbon fragrances, ether fragrances, ester fragrances, alcohol fragrances, aldehyde fragrances, and ketone fragrances.
[0022] These fragrance components may be used individually as single fragrances, or two or more may be combined to create a blended fragrance that produces a desired scent.
[0023] In the liquid fragrance cleaning agent composition for flush toilets of the present invention, the content of component (B) can be appropriately set according to the type of component (B) and the strength of the fragrance to be provided, but for example, 0.1 to 20% by weight, preferably 1 to 15% by weight, more preferably 2 to 15% by weight, and even more preferably 4 to 15% by weight is used.
[0024] [(C) Polyoxyalkylene alkyl ether type nonionic surfactant] The liquid fragrant and cleaning agent composition for flush toilets of the present invention may contain, in addition to components (A) and (B), a polyoxyalkylene alkyl ether type nonionic surfactant represented by the following general formula (2) (sometimes referred to as component (C)). When the liquid fragrant and cleaning agent composition for flush toilets of the present invention further contains component (C), it becomes possible to more effectively suppress changes in physical properties due to temperature changes and the mixing of water. [ka]
[0025] In general formula (2), R 2 R represents a linear or branched alkyl group having 8 to 10 carbon atoms. 2 Preferably, branched alkyl groups having 8 to 10 carbon atoms are used, more preferably branched alkyl groups having 10 carbon atoms, and particularly preferably isodecyl groups.
[0026] In general formula (2), EO represents an oxyethylene group. b represents the average number of moles of EO added, where b ≥ 5. The average number of moles of EO added, b, is preferably 5 ≤ b ≤ 40, and more preferably 5 ≤ b ≤ 30.
[0027] In general formula (2), PO represents an oxypropylene group. c represents the average number of moles of PO added, where 0 ≤ c. The average number of moles of PO added, c, is preferably 0 ≤ c ≤ 40, and more preferably 0 ≤ c ≤ 30.
[0028] Furthermore, in general formula (2), [(EO) a (PO) b ] indicates random or block addition of EO and PO.
[0029] The cloud point of component (C) used in the present invention is not particularly limited when it is prepared as a 1% by weight aqueous solution, but for example, it is 85°C or lower, preferably 50 to 85°C, and more preferably 55 to 80°C. Here, the cloud point is a value determined by dissolving the surfactant to be measured in purified water to a concentration of 1% by weight and using the measurement method described in ISO 1065-1991.
[0030] The HLB value of component (C) used in this invention is not particularly limited, but for example, it is 16.0 or less, preferably 12.0 to 16.0, and more preferably 13.0 to 15.5. Here, the HLB value of component (C) is a value calculated by the Griffin method.
[0031] In the liquid fragrance cleaning agent composition for flush toilets of the present invention, as component (C), one type of polyoxyalkylene alkyl ether type nonionic surfactant represented by general formula (2) may be selected and used alone, or two or more types may be used in combination.
[0032] In the liquid fragrance cleaning agent composition for flush toilets of the present invention, when component (C) is included, the amount is not particularly limited, but for example, 0.1 to 50% by weight, preferably 1 to 40% by weight, and more preferably 10 to 30% by weight.
[0033] [(D) Cationic surfactants] The liquid fragrant and cleaning agent composition for flush toilets of the present invention may contain, in addition to components (A) and (B), at least one cationic surfactant (sometimes referred to as component (D)) selected from the group consisting of a halide of trialkylbenzylammonium represented by the following general formula (3) and a trialkylammonium sulfate represented by the following general formula (4). If the liquid fragrant and cleaning agent composition for flush toilets of the present invention further contains component (D), it becomes possible to more effectively suppress changes in physical properties due to temperature changes and the mixing of water. [ka] [ka]
[0034] In general formula (3), R 31 R represents a linear or branched alkyl group having 8 to 18 carbon atoms. 31 Preferably, linear or branched alkyl groups having 10 to 18 carbon atoms are used; more preferably, linear or branched alkyl groups having 14 to 18 carbon atoms are used; and even more preferably, linear alkyl groups having 14 to 18 carbon atoms are used.
[0035] In general formula (3), R 32 and R 33 R represents a linear or branched alkyl group having 1 to 4 carbon atoms, which may be the same or different. 32 and R 33 Preferably, the group is a linear alkyl group having 1 to 3 carbon atoms, more preferably a methyl group or an ethyl group, and even more preferably a methyl group.
[0036] In general formula (3), X represents a halogen atom. Preferably, X is a chlorine atom or a bromine atom, more preferably a chlorine atom.
[0037] In general formula (4), R 41 and R 42 R represents a linear or branched alkyl group having 6 to 18 carbon atoms, which may be the same or different. 41 and R 42 Preferably, the alkyl group is a linear or branched alkyl group having 6 to 14 carbon atoms, more preferably a linear or branched alkyl group having 8 to 12 carbon atoms, even more preferably a linear alkyl group having 8 to 12 carbon atoms, and particularly preferably a decyl group.
[0038] In general formula (4), R 43 and R 44 R represents a linear or branched alkyl group having 1 to 4 carbon atoms, which may be the same or different. 43 and R 44 Preferably, the group is a linear alkyl group having 1 to 3 carbon atoms, more preferably a methyl group or an ethyl group, and even more preferably a methyl group.
[0039] In general formula (4), R 45 R represents a linear or branched alkyl group or hydrogen atom having 1 to 4 carbon atoms. 45 Preferably, the group is a linear alkyl group having 1 to 3 carbon atoms, more preferably a methyl group or an ethyl group, and even more preferably a methyl group.
[0040] In the liquid fragrance cleaning agent composition for flush toilets of the present invention, component (D) may be selected from a halide of trialkylbenzylammonium represented by general formula (3) and a trialkylammonium sulfate represented by general formula (4) and used alone, or two or more may be used in combination.
[0041] In the liquid fragrance cleaning agent composition for flush toilets of the present invention, when component (D) is included, the amount can be appropriately set according to the type of component (D) used, but for example, 0.1 to 40% by weight, preferably 1 to 30% by weight, and more preferably 10 to 30% by weight.
[0042] [water] The liquid fragrance and cleaning agent composition for flush toilets of the present invention may contain water as a base component. When water is included in the liquid fragrance and cleaning agent composition for flush toilets of the present invention, the amount is not particularly limited, but for example, it is 0.1 to 80% by weight, preferably 1 to 70% by weight, and more preferably 2 to 60% by weight.
[0043] [Solubilizer] Furthermore, the liquid fragrance and cleaning agent composition for flush toilets may optionally contain a solubilizer. Including a solubilizer makes it possible to impart good solubility and dispersibility to the various components. The solubilizer used in the present invention is not particularly limited, but examples include propylene glycol, ethylene glycol, ethanol, dipropylene glycol, glycerin, 2-methoxyethanol, 2-ethoxyethanol, and 3-methoxy-3-methylbutanol.
[0044] When a solubilizing agent is included in the liquid fragrance cleaning agent composition for flush toilets of the present invention, the amount of the solubilizing agent is not particularly limited, but for example, it may be 0.1 to 40% by weight, preferably 1 to 35% by weight, and more preferably 5 to 30% by weight.
[0045] [Other additives] The liquid fragrance and cleaning agent composition for flush toilets may further contain, as necessary, appropriate amounts of additives such as enzymes, disinfectants, chelating agents, colorants, pigments, deodorants, emulsifiers and solubilizers for oily components, bulking agents, solubility modifiers, bleaching agents, water repellents, hydrophilic agents, fillers, pH adjusters, thickeners, moldability improvers, lubricants, buffers, turbidity enhancers, defoaming agents, antioxidants, and ultraviolet absorbers.
[0046] [viscosity] The liquid fragrant and cleaning agent composition for flush toilets of the present invention satisfies a viscosity of 60 to 800 mPa·s at 25°C. By satisfying this viscosity range, even when subjected to temperature changes or the addition of water, the viscosity can be maintained within a range that allows for uniform discharge from the container each time, thereby providing properties suitable for a liquid toilet cleaner.
[0047] The viscosity of the liquid fragrance cleaning agent composition for flush toilets of the present invention at 25°C is preferably 60 to 800 mPa·s, more preferably 70 to 600 mPa·s, and most preferably 80 to 300 mPa·s. Here, the viscosity in the range of less than 100 mPa·s is measured using a B-type viscometer (TV-10 model, manufactured by Toki Sangyo Co., Ltd.) with a SPINDLE No-M1 rotor at a rotation speed of 30 rpm at 25°C, and the viscosity in the range of 100 mPa·s or more is measured using a B-type viscometer (TV-10 model, manufactured by Toki Sangyo Co., Ltd.) with a SPINDLE No-M2 rotor at a rotation speed of 30 rpm at 25°C.
[0048] [Usage Pattern] The liquid fragrance cleaning agent composition for flush toilets of the present invention may be applied directly to the toilet bowl to be cleaned and used for cleaning, but it is preferable to dilute it with flush water and use it to clean the toilet bowl with flush water during the flushing of the toilet. When using the liquid fragrance cleaning agent composition for flush toilets of the present invention diluted with flush water, the dilution ratio is not particularly limited, but for example, it is about 10,000 to 1,000,000 times, preferably about 20,000 to 500,000 times.
[0049] When the liquid fragrant cleaning agent composition for flush toilets of the present invention is used diluted with flush water, the liquid fragrant cleaning agent composition for flush toilets of the present invention may be used as a cleaning agent for the on-tank of the flush toilet, or as a cleaning agent for the rim. Here, the cleaning agent for the on-tank is used by being installed above the hand-washing area of the flush toilet, and the cleaning agent cleans the toilet bowl by having the liquid fragrant cleaning agent composition flow out of the container when it comes into contact with the flush water supplied to the hand-washing area, and the flush water containing the dissolved liquid fragrant cleaning agent composition is released into the toilet bowl. The cleaning agent for the rim is used by being attached to the rim of the flush toilet, and the cleaning agent cleans the toilet bowl by having the liquid fragrant cleaning agent composition flow out of the container when it comes into contact with the flush water released into the toilet bowl, and the flush water containing the dissolved liquid fragrant cleaning agent composition is released into the toilet bowl.
[0050] According to the liquid fragrance cleaning agent composition of the present invention, the non-uniformity of discharge due to temperature changes, etc., is improved. Therefore, even when used as a cleaning agent for the on-tank or rim of a flush toilet, the temperature of the flush water flushed together is not limited to a normal range, and cold water or hot water can also be used.
[0051] When the liquid fragrance cleaning agent composition of the present invention is used as a cleaning agent for the on-tank or rim of a flush toilet, the container for containing the liquid fragrance cleaning agent composition is not particularly limited in structure, provided that it has a storage section for containing the liquid fragrance cleaning agent composition and a discharge hole for discharging the liquid fragrance cleaning agent composition to the outside of the container, and that when the container comes into contact with water, the liquid fragrance cleaning agent composition in the storage section can be discharged to the outside of the container through the discharge hole. Conventional containers used for cleaning agents on the on-tank or rim of a flush toilet can be used. For example, the structure of a container for a cleaning agent on the on-tank is disclosed in Japanese Patent Publication No. 2004-300861, Japanese Patent Publication No. 2006-283539, Japanese Patent Publication No. 2006-283540, etc. Furthermore, the structure of a container for a cleaning agent for the rim is disclosed in Japanese Patent Publication No. 2003-517124, Japanese Patent Publication No. 2009-57769, Japanese Patent Publication No. 2010-242480, etc. However, the structure of a container for containing the liquid fragrance cleaning agent composition of the present invention is not limited to these containers, as long as it can be used for on-tank or rim applications. [Examples]
[0052] The present invention will be described below with reference to examples, but the present invention is not limited to these examples.
[0053] Test Example 1 Using the surfactants shown in Table 1 and the fragrances shown in Table 2, predetermined amounts of each component shown in Tables 3 and 4 were mixed to prepare liquid toilet fragrance and cleaning compositions. For each liquid toilet fragrance and cleaning composition, the solubilization state of the fragrance components at 25°C, viscosity at 25°C, viscosity at 5°C, and whether or not gelation occurred at 5°C after mixing with water were measured under the following conditions.
[0054] <Viscosity at 25°C> The viscosity of each liquid toilet air freshener and cleaning agent composition was measured using a Type B viscometer (TV-10 model, manufactured by Toki Sangyo Co., Ltd.) at 25°C and a rotation speed of 30 rpm. For viscosity ranges below 100 mPa·s, the SPINDLE No-M1 rotor was used, and for viscosity ranges of 100 mPa·s or more, the SPINDLE No-M2 rotor was used.
[0055] <Viscosity at 5°C> The measurement was performed under the same conditions as the viscosity measurement at 25°C, except that the temperature was changed to 5°C.
[0056] <Presence or absence of gelation at 5°C after adding water> Each liquid toilet air freshener composition (80g) was mixed with 20g of water and then allowed to stand at 5°C. The presence or absence of gelation was then visually checked, and for those that did not gel, the viscosity was measured at 5°C. The measurement conditions were the same as those for the viscosity measurement at 25°C, except that the temperature was changed to 5°C. The obtained results were classified according to the following criteria. Judgment criteria ○: No gelation is observed, and the viscosity at 5°C is less than 1000 mPa·S. △: No gelation is observed, and the viscosity at 5°C is between 1000 mPa·s and 5000 mPa·s. ×: Gelation was observed, or the viscosity at 5°C was 5000 mPa·S or higher.
[0057] <Solubilization state of fragrance components at 25℃> To evaluate the appearance of each liquid toilet air freshener and cleaning agent composition at 25°C, 500 mL A transparent glass beaker with a diameter of φ92 mm was placed on a white piece of paper with black lettering (20 mm vertically, 20 mm horizontally) printed on it. 500 g of each toilet liquid fragrance and cleaning agent composition at 25°C was placed in the glass beaker, and the black lettering was visually observed from the top of the glass beaker. The state of solubilization of the fragrance components in each toilet liquid fragrance and cleaning agent composition was evaluated according to the following criteria. Judgment criteria ○: Completely transparent state where black text is clearly readable. △: The black text is slightly blurred and somewhat opaque. ×: The black text is completely illegible due to opacity.
[0058] The results obtained are shown in Tables 3 and 4. In formulations containing the polyoxyethylene alkyl ether type nonionic surfactant shown in general formula (1) and a fragrance, all types of fragrances could be solubilized, and the viscosity at low temperatures (5°C) was within the range of 300 to 1000 mPa·s, suppressing viscosity changes without gelation even when exposed to temperature changes. In particular, when the formulation included the polyoxyalkylene alkyl ether type nonionic surfactant shown in general formula (2), the cationic surfactant shown in general formula (3), and / or the cationic surfactant shown in general formula (4) in addition to the polyoxyethylene alkyl ether type nonionic surfactant shown in general formula (1), the increase in viscosity at low temperatures (5°C) was suppressed more effectively. In contrast, when a polyoxyalkylene alkyl ether type nonionic surfactant that does not correspond to the polyoxyethylene alkyl ether type nonionic surfactant shown in general formula (1) was used, gelation occurred at low temperatures (5°C) or when water was added, and the properties required for a liquid toilet cleaner were not satisfied.
[0059] [Table 1]
[0060] [Table 2]
[0061] [Table 3]
[0062] [Table 4]
[0063] [Table 5]
Claims
1. (A) Polyoxyethylene alkyl ether type nonionic surfactant represented by the following general formula (1), having a cloud point greater than 80°C in a 1% by weight aqueous solution. 【Chemistry 1】 [In general formula (1), R1 is a linear or branched alkyl group having 11 to 15 carbon atoms, EO is an oxyethylene group, and a is the average number of moles of EO added, where 8 ≤ a ≤ 15.], and (B) Contains fragrance components, and A liquid fragrance and cleaning agent composition for flush toilets, having a viscosity of 60 to 800 mPa·s at 25°C.
2. Furthermore, the liquid fragrance and cleaning agent composition for flush toilets according to claim 1, further comprising (C) a polyoxyalkylene alkyl ether type nonionic surfactant represented by general formula (2). 【Chemistry 2】 [In general formula (2), R2 is a linear or branched alkyl group having 8 to 10 carbon atoms. EO represents an oxyethylene group, PO represents an oxypropylene group, b is the average number of moles of EO added (b ≥ 5), c is the average number of moles of PO added (0 ≤ c), and [(EO)b / (PO)c] indicates random or block addition of EO and PO.
3. Furthermore, the liquid fragrance and cleaning agent composition for flush toilets according to claim 1 or 2, further comprising (D) at least one cationic surfactant selected from the group consisting of a halide of trialkylbenzylammonium represented by the following general formula (3) and a trialkylammonium sulfate represented by the following general formula (4). 【Transformation 3】 [In general formula (3), R31 represents a linear or branched alkyl group having 8 to 18 carbon atoms, R32 and R33 are the same or different linear or branched alkyl groups having 1 to 4 carbon atoms, and X represents a halogen atom.] 【Chemistry 4】 [In general formula (4), R41 and R42 are the same or different linear or branched alkyl groups having 6 to 18 carbon atoms, R43 and R44 are the same or different linear or branched alkyl groups having 1 to 4 carbon atoms, and R45 represents a linear or branched alkyl group having 1 to 4 carbon atoms or a hydrogen atom.]
4. A liquid fragrance and cleaning agent composition for flush toilets according to any one of claims 1 to 3, comprising 1 to 60% by weight of component (A) and 0.1 to 20% by weight of component (B).
5. A fragrant cleaning agent composition for flush toilets according to any one of claims 1 to 4, which is used for on-tank application in flush toilets.
6. A fragrant cleaning agent composition for flush toilets according to any one of claims 1 to 4, which is used for the rim of a flush toilet.
Citation Information
Patent Citations
Fragrant liquid detergent composition
JP2004182902A
Liquid detergent composition
JP2009084456A
Fragrant liquid detergent composition for flushing toilet
JP2013221119A