Mild face-cleaning mousse composition capable of powerfully removing and blocking sunshine, preparation method and application of mild face-cleaning mousse composition
By using compositions such as sodium cocamidopropionate, disodium cocamidoglutamate, and other components such as di(PPG-2 myrmeal oil polyether-10) adipate, a mild cleanser mousse that is effective in removing sunscreen was prepared, which solved the problem of insufficient removal ability of existing products for waterproof sunscreens and achieved efficient and gentle cleaning effects.
Patent Information
- Application Number
- CN202510428707.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-04-08
AI Technical Summary
Existing mousse-type makeup remover products have weak effects on long-acting, waterproof or superimposed sunscreens, making it difficult to completely remove waterproof sunscreen residues on the skin surface.
A composition of sodium cocamidopropionate, disodium cocamidoglutamate, di(PPG-2 myrite oleyl-10) adipate and sodium lauroyl amphoteric acetate were prepared by adjusting its mass ratio and adding other auxiliary ingredients such as decyl glucoside and sodium methyl taurate to prepare a mild cleansing mousse that effectively removes sun protection.
It realizes efficient removal of waterproof sunscreen, provides delicate and dense foam, reduces the steps of manual foaming, is suitable for sensitive skin, and has strong cleaning power, and is suitable for daily use.
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Figure CN120022201A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of daily chemicals, and in particular to a mild cleansing mousse composition for effectively removing sunscreen, a preparation method and an application thereof. Background Art
[0002] Many ingredients in sunscreen (especially chemical sunscreen) are oil-soluble, and oil or solvents are needed to dissolve the sunscreen ingredients when removing makeup. Oil-based products need to be thoroughly emulsified with water to avoid oil residues that may cause clogged pores or other skin problems.
[0003] Mousse sunscreen remover is a light-textured, rich-foam makeup remover designed for sunscreen removal. It combines the functions of makeup removal and cleansing, and is particularly suitable for daily use of light or non-waterproof sunscreen. However, it is less effective for long-lasting, waterproof or stacked sunscreens, and may require the assistance of other makeup removers.
[0004] Surfactants used in mousse-type makeup removers need to be mild, foamy, and have a certain ability to dissolve oils. Waterproof sunscreen is a type of sunscreen product designed for long-term outdoor activities (such as swimming and sports). It can form a protective film with strong adhesion on the skin surface to resist the erosion of water and sweat.
[0005] To this end, the present invention provides a mild cleansing mousse composition for effectively removing sunscreen, a preparation method and an application thereof. Summary of the invention
[0006] In order to solve the above technical problems, the present invention provides a mild cleansing mousse composition for effectively removing sunscreen, the composition comprising: sodium cocoylaminopropionate, disodium cocoyl glutamate, di(PPG-2 myristeth-10) adipate and sodium lauroamphoacetate; and the mass ratio of sodium cocoylaminopropionate, disodium cocoyl glutamate, di(PPG-2 myristeth-10) adipate and sodium lauroamphoacetate is (8-20):(2-15):(0.1-3):(2-10).
[0007] As an embodiment of the present invention, the mass ratio of sodium cocoyl aminopropionate, disodium cocoyl glutamate, di(PPG-2 myristeth-10) adipate and sodium lauroamphoacetate is 12.5:8.5:1.8:5.4.
[0008] As an embodiment of the present invention, the composition further comprises decyl glucoside.
[0009] As an embodiment of the present invention, the composition further comprises sodium methyl taurate.
[0010] The present invention also provides a mild cleansing mousse for effectively removing sunscreen, which is prepared from the composition.
[0011] As an embodiment of the present invention, the preparation raw materials of the mild cleansing mousse include:
[0012] Sodium Cocoyl Aminopropionate, Disodium Cocoyl Glutamate, Sodium Lauroamphoacetate, Sodium Cocoyl Amino Acids, Sodium Citrate, Sodium Methyl Taurate, Sodium Sarcosinate, Di (PPG-2 Myristeth-10) Adipate, Decyl Glucoside.
[0013] As an embodiment of the present invention, the preparation materials of the mild cleansing mousse include, in parts by weight:
[0014] 60.15 parts of water
[0015] 8-20 parts of a mixture of water and sodium cocoamidopropionate
[0016] 2-15 parts mixture of water and disodium cocoyl glutamate
[0017] 2-10 parts of sorbitol
[0018] 2-10 parts of a mixture of water, sodium lauroamphoacetate and sodium chloride
[0019] 1-8 parts of a mixture of water, sodium cocoyl amino acid, sodium citrate, sodium methyl taurate and sodium sarcosinate
[0020] 0.1-3 parts of di(PPG-2 myristic alcohol polyether-10) adipate
[0021] PPG-3 Octyl Ether 0.1-3 parts
[0022] 0.5-3 parts of mixture of water and decyl glucoside
[0023] 0.6-1 part of a mixture of butylene glycol, caprylhydroxamic acid and ethylhexylglycerin
[0024] Betaine 0.1-2 parts
[0025] Citric acid 0.01-1 part
[0026] Dipotassium glycyrrhizinate 0.01-0.2 parts
[0027] Disodium EDTA 0.01-0.2 parts.
[0028] As an embodiment of the present invention, the raw materials for its preparation include, by weight:
[0029] Component 1: 60.15 parts of water
[0030] Component 2: 12.5 parts of a mixture of water and sodium cocoamidopropionate
[0031] Component 3: 8.5 parts of a mixture of water and disodium cocoyl glutamate
[0032] Component 4: 4 parts of sorbitol
[0033] Component 5: 5.4 parts of a mixture of water, sodium lauroamphoacetate and sodium chloride
[0034] Component 6: 6.5 parts of a mixture of water, sodium cocoyl amino acid, sodium citrate, sodium methyl taurate and sodium sarcosinate
[0035] Component 7: 1.8 parts of di(PPG-2 myristic alcohol polyether-10) adipate and propylene carbonate Component 8: 1.63 parts of PPG-3 octyl ether
[0036] Component 9: 1.85 parts of a mixture of water and decyl glucoside
[0037] Component 10: 0.9 parts of a mixture of butylene glycol, caprylhydroxamic acid and ethylhexylglycerin
[0038] Ingredient 11: 1.2 parts betaine
[0039] Component 12: 0.5 parts of citric acid
[0040] Component 13: 0.1 part of dipotassium glycyrrhizinate
[0041] Component 14: 0.11 parts of disodium EDTA.
[0042] As an embodiment of the present invention, the preparation method of the mild cleansing mousse for effectively removing sunscreen comprises the following steps:
[0043] S01 Accurately weigh various raw materials in the formula and place them in clean and sterilized containers;
[0044] S02 Add the raw materials of phase A into the vacuum emulsifying pot one by one and stir to dissolve evenly;
[0045] S03 After phase A is evenly dissolved, add the raw materials of phase B into the vacuum emulsifier one by one and stir to dissolve evenly;
[0046] S04 After phase B is evenly dissolved, add the raw materials of phase C into the vacuum emulsifier one by one, and stir and dissolve until the material becomes transparent;
[0047] S05 After the emulsification pot material is stirred until it is clear and transparent, continue stirring for 10 minutes, send it for inspection, and after passing the inspection, filter it out with 800 mesh. Sampling inspection and material transfer;
[0048] After S06 passes the inspection, it is filled and packaged; after passing the inspection, the finished product is put into storage.
[0049] in:
[0050] Group A: component 1, component 2, component 3, component 4, component 5, component 6, component 9, component 14; Group B: component 10, component 11, component 12, component 13;
[0051] Group C: Component 7, Component 8.
[0052] As an embodiment of the present invention, the mild cleansing mousse composition for effectively removing sunscreen is applied in the field of daily chemicals.
[0053] By adopting the above technical solution, the present invention has the following beneficial effects:
[0054] The foam is fine and dense: the dense foam reduces the steps of manual foaming, making the use process simpler and time-saving.
[0055] Apply evenly: The fine foam can evenly cover the face, making it easy to completely clean the sunscreen residue.
[0056] Reduce friction: Compared with emulsions or creams, foam textures cause less friction on the skin and are suitable for sensitive skin or skin prone to redness. BRIEF DESCRIPTION OF THE DRAWINGS
[0057] In order to more clearly illustrate the specific implementation methods of the present invention or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings in the following description are some implementation methods of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0058] Figure 1 This is the foam diagram obtained for the product of Example 1;
[0059] Figure 2 This is the foam diagram obtained for the product of Example 5;
[0060] Figure 3 This is the foam diagram obtained for the product of Example 2. DETAILED DESCRIPTION
[0061] The technical solution of the present invention will be described clearly and completely below. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0062] Example 1
[0063] This embodiment provides a mild cleansing mousse for effectively removing sunscreen, and the raw materials for its preparation include, by weight:
[0064] Component 1: 60.15 parts of water
[0065] Component 2: 12.5 parts of a mixture of water and sodium cocoyl aminopropionate (mass ratio 74:26)
[0066] Component 3: 8.5 parts of a mixture of water and disodium cocoyl glutamate (mass ratio 74:26)
[0067] Component 4: 4 parts of sorbitol
[0068] Component 5: 5.4 parts of a mixture of water, sodium lauroamphoacetate and sodium chloride (mass ratio 65:29:6)
[0069] Component 6: 6.5 parts of a mixture of water, sodium cocoyl amino acid, sodium citrate, sodium methyl taurate and sodium sarcosinate (mass ratio: 69:20.5:7.5:1.5:1.5)
[0070] Component 7: 1.8 parts of di(PPG-2 myristic alcohol polyether-10) adipate and propylene carbonate
[0071] Component 8: 1.63 parts of PPG-3 octyl ether
[0072] Component 9: 1.85 parts of a mixture of water and decyl glucoside (mass ratio 55:45)
[0073] Component 10: 0.9 parts of a mixture of butylene glycol, caprylhydroxamic acid and ethylhexylglycerol (mass ratio of 89:6.5:4.5)
[0074] Ingredient 11: 1.2 parts betaine
[0075] Component 12: 0.5 parts of citric acid
[0076] Component 13: 0.1 part of dipotassium glycyrrhizinate
[0077] Component 14: 0.11 parts of disodium EDTA.
[0078] The preparation method of the mild cleansing mousse for effectively removing sunscreen comprises the following steps:
[0079] S01 Accurately weigh various raw materials in the formula and place them in clean and sterilized containers;
[0080] S02 Add the raw materials of phase A into the vacuum emulsifying pot one by one and stir to dissolve evenly;
[0081] S03 After phase A is evenly dissolved, add the raw materials of phase B into the vacuum emulsifier one by one and stir to dissolve evenly;
[0082] S04 After phase B is evenly dissolved, add the raw materials of phase C into the vacuum emulsifier one by one, and stir and dissolve until the material becomes transparent;
[0083] S05 After the emulsification pot material is stirred until it is clear and transparent, continue stirring for 10 minutes, send it for inspection, and after passing the inspection, filter it out with 800 mesh. Sampling inspection and material transfer;
[0084] After S06 passes the inspection, it is filled and packaged; after passing the inspection, the finished product is put into storage.
[0085] in:
[0086] Group A: component 1, component 2, component 3, component 4, component 5, component 6, component 9, component 14; Group B: component 10, component 11, component 12, component 13;
[0087] Group C: Component 7, Component 8.
[0088] Example 2
[0089] The difference between this embodiment and embodiment 1 is that di(PPG-2 myreth-10) adipate is replaced by PEG-7 glyceryl cocoate.
[0090] Example 3
[0091] The difference between this embodiment and embodiment 1 is that sodium lauroamphoacetate is replaced by disodium cocoyl glutamate.
[0092] Example 4
[0093] The difference between this embodiment and embodiment 1 is that sodium methyl taurate is replaced by sodium lauroamphoacetate.
[0094] Example 5
[0095] The difference between this embodiment and embodiment 1 is that decyl glucoside is replaced by octyl glucoside.
[0096] Example 6
[0097] The difference between this embodiment and embodiment 1 is that, in parts by weight, the raw materials for preparation thereof include:
[0098] Component 1: 60.15 parts of water
[0099] Component 2: 15.5 parts of a mixture of water and sodium cocoyl aminopropionate (mass ratio 74:26)
[0100] Component 3: 5.5 parts of a mixture of water and disodium cocoyl glutamate (mass ratio 74:26)
[0101] Component 4: 4 parts of sorbitol
[0102] Component 5: 3.4 parts of a mixture of water, sodium lauroamphoacetate and sodium chloride (mass ratio 65:29:6)
[0103] Component 6: 8.5 parts of a mixture of water, sodium cocoyl amino acid, sodium citrate, sodium methyl taurate and sodium sarcosinate (mass ratio: 69:20.5:7.5:1.5:1.5)
[0104] Component 7: 1.8 parts of di(PPG-2 myristic alcohol polyether-10) adipate and propylene carbonate
[0105] Component 8: 1.63 parts of PPG-3 octyl ether
[0106] Component 9: 1.65 parts of a mixture of water and decyl glucoside (mass ratio 55:45)
[0107] Component 10: 1.1 parts of a mixture of butylene glycol, caprylhydroxamic acid and ethylhexylglycerol (mass ratio: 89:6.5:4.5)
[0108] Ingredient 11: 1.2 parts betaine
[0109] Component 12: 0.5 parts of citric acid
[0110] Component 13: 0.1 part of dipotassium glycyrrhizinate
[0111] Component 14: 0.11 parts of disodium EDTA.
[0112] Performance Testing
[0113] Test 1: The sunscreen removal products prepared in Examples 1 to 6 were placed at 5°C, 25°C, and 40°C for 90 days to check the product properties. The test results are shown in Table 1.
[0114] Example 5℃ 25℃ 40℃ Example 1 constant constant constant Example 2 Slight delamination constant Slight delamination Example 3 Slight delamination constant Slight delamination Example 4 Layering constant Layering Example 5 constant constant constant Example 6 Layering Slight delamination Layering
[0115] Test 2: Human skin patch test
[0116] Materials and methods
[0117] 1. Test substances: Examples 1 to 6.
[0118] 2. Negative control: blank control.
[0119] 3. Subjects: A total of 30 subjects, including 7 males and 23 females, aged 20 to 55 years old, with an average age of 30.3±1.4 years old, met the voluntary inclusion criteria.
[0120] 4. Patch test method: Select qualified patch test equipment and use the closed patch test method. Place about 0.020mL~0.025mL of the test substance in the patch tester, and apply it to the curved side of the subject's forearm with low-allergenic tape. Remove the test substance after 24 hours, and observe the skin reaction 0.5, 24, and 48 hours after removal. Record the results according to the skin reaction grading standards in the "Technical Specifications for Safety of Cosmetics" (2015 edition).
[0121] Table 2 Summary of human skin patch test results
[0122]
[0123]
[0124] Test 3: Makeup removal (sunscreen) test method is as follows:
[0125] Apply sunscreen on the arm, then wash it with the products of Examples 1 to 6 (the sunscreen products, the washing intensity and time are consistent), use an ultraviolet camera to take pictures, observe the residual sunscreen, and compare the performance of removing sunscreen.
[0126] Strong: Very clean, no fluorescent reflection;
[0127] Very good: taking pictures in multiple dimensions, we can find its slight fluorescence emission;
[0128] Good: Slight fluorescent reflection;
[0129] Fair: Fluorescence faded, but still visible;
[0130] Poor: Compared with no cleaning, basically no removal.
[0131] The test results are shown in Table 3.
[0132] Table 3 Test results of performance test 3
[0133] Example Makeup removal (sunscreen) test Example 1 powerful Example 2 good Example 3 very good Example 4 very good Example 5 powerful Example 6 good
[0134] Test 4: The products prepared in Examples 1 to 6 were subjected to a sunscreen removal questionnaire test, and a total of 30 people were selected, including 7 males and 23 females, aged 20 to 55 years old, with an average age of 30.3±1.4 years old, which met the volunteer selection criteria.
[0135] The content of the questionnaire is shown in Table 3.
[0136] Table 3 Questionnaire contents for subjects removing sunscreen
[0137]
[0138]
[0139] 5 points means completely agree, 4 points means relatively agree, 3 points means neither agree nor disagree (i.e. neutral), 2 points means relatively disagree, and 1 point means completely disagree. The result is a composite of the values of the 30 people.
[0140] Table 4 Questionnaire results of sunscreen removal subjects
[0141] Example Question 1 Question 2 Question 3 Question 4 Question 5 1 150 148 149 148 148 2 149 131 142 140 141 3 150 124 134 131 136 4 149 121 140 138 139 5 149 130 147 143 140 6 150 139 136 132 133
[0142] Test 5: Use the pump head to pump out the same amount (10ml) of mousse product and check the shape of the mousse; at the same time, record the defoaming time.
[0143] Mousse shape:
[0144] Excellent: The foam is rich and full, and the overall shape is delicate and cloud-like; the foam is of uniform size and texture, with no obvious bubbles or liquid stratification; it does not collapse quickly when it stays on the hand or skin surface, and can maintain a certain shape for a long time. The foam has very small particles and is soft and smooth to the touch.
[0145] Good: Average foam, lack of density, uniform texture. Average duration.
[0146] General: The foam is loose in shape, with large bubbles and lacks a dense feel. The bubbles in the foam are large, and the touch is obviously grainy and not smooth enough. Once the foam touches the skin or air, it quickly collapses into a liquid state.
[0147] Sustainability:
[0148] Very good: The foam can last for more than 20 minutes.
[0149] Good: The foam can last for 10-20 minutes.
[0150] Normal: Foam lasts for 5-10 minutes.
[0151] Poor: Foam disappears within 1 to 5 minutes.
[0152] Very bad: The foam disappears within 1 minute.
[0153] Table 5 Test results of performance test 5
[0154] Example Foaming Foam persistence Example 1 Excellent very good Example 2 Excellent very good Example 3 good good Example 4 good good Example 5 good good Example 6 generally generally
[0155] The invention provides a sunscreen-removing cleansing product with a mild mousse texture. In the design of the overall formula, the invention selects sodium cocoyl aminopropionate and disodium cocoyl glutamate as main surfactants, which can effectively remove grease and dirt on the skin surface and have very low irritation to the skin, so that the product is suitable for sensitive skin and dry skin. Disodium cocoyl glutamate can be matched with a variety of surfactants (such as amphoteric or nonionic surfactants) to improve the overall mildness of the formula. However, the two surfactants have weak makeup removal capabilities for waterproof sunscreen agents, so di(PPG-2 myristeth-10) adipate is added in the invention.
[0156] Di(PPG-2 Myristic-10) Adipate can dissolve some waterproof sunscreens, thereby increasing the cleaning power of the entire product; however, its ester properties make it difficult to completely emulsify or remove it when rinsed with water, so it may leave a slight oily film on the skin. Although it helps moisturize, it may not be clean enough for consumers with oily skin or those who pursue a refreshing feeling. At the same time, the lipophilic properties of Di(PPG-2 Myristic-10) Adipate need to be combined with an appropriate amount of emulsifier, otherwise it may be difficult to form a stable emulsion in oil-water mixed makeup remover products; at the same time, its oily properties may conflict with amino acid surfactants, inhibiting the formation or stability of foam.
[0157] For this reason, the present invention adds sodium lauroamphoacetate as both a thickener and an emulsifier when designing the formula, which can improve the shortcomings of the above-mentioned di(PPG-2 myristyl alcohol polyether-10) adipate; because sodium lauroamphoacetate forms complex micelles with anions (such as sodium cocoamidopropionate), the viscosity is increased and the foam performance is optimized; the fineness and stability of the foam can be effectively controlled. However, the product obtained by the above formula may appear turbid or stratified at low temperatures (<10°C). At the same time, decyl glucoside is also added to the formula of the present invention, which has strong cleaning power, foam volume and stability; but after use, it is found that the foam is not fine and soft enough; it is not friendly enough for sensitive skin.
[0158] To this end, the addition of sodium methyl taurate and sodium lauroamphoacetate can provide a rich, dense and stable foam, which perfectly matches the form of mousse.
[0159] The above-mentioned formulas are summarized, because the optimum pH range is different. For example, sodium cocoyl aminopropionate and disodium cocoyl glutamate are more stable under neutral to weakly acidic conditions, while sodium methyl taurate and sodium sarcosinate may perform better when slightly acidic (pH 5-6). For this reason, the present invention designs the ratio between several formulas, maintains the pH value of the formula, foam stability, balance of cleaning power and compatibility between ingredients, and obtains a product with excellent performance.
[0160] Figure 1 This is the foam diagram obtained for the product of Example 1; Figure 2 This is the foam diagram obtained for the product of Example 5; Figure 3 This is the foam diagram obtained for the product of Example 2.
[0161] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. A mild cleansing mousse composition for effectively removing sunscreen, characterized in that: The composition comprises: sodium cocoylaminopropionate, disodium cocoyl glutamate, di(PPG-2 myristeth-10) adipate and sodium lauroamphoacetate; and the mass ratio of sodium cocoylaminopropionate, disodium cocoyl glutamate, di(PPG-2 myristeth-10) adipate and sodium lauroamphoacetate is (8-20):(2-15):(0.1-3):(2-10).
2. A mild cleansing mousse composition for effectively removing sunscreen according to claim 1, characterized in that: The mass ratio of the sodium cocoyl aminopropionate, disodium cocoyl glutamate, di(PPG-2 myristyl-10) adipate and sodium lauroamphoacetate is 12.5:8.5:1.8:5.
4.
3. A mild cleansing mousse composition for effectively removing sunscreen according to claim 1, characterized in that: The composition also includes decyl glucoside.
4. A mild cleansing mousse composition for effectively removing sunscreen according to claim 1, characterized in that: The composition also includes sodium methyl taurate.
5. A mild cleansing mousse for effectively removing sunscreen, characterized in that: Prepared from the composition according to any one of claims 1 to 4.
6. A mild cleansing mousse for effectively removing sunscreen according to claim 5, characterized in that: The raw materials for its preparation include: Sodium Cocoyl Aminopropionate, Disodium Cocoyl Glutamate, Sodium Lauroamphoacetate, Sodium Cocoyl Amino Acids, Sodium Citrate, Sodium Methyl Taurate, Sodium Sarcosinate, Di (PPG-2 Myristeth-10) Adipate, Decyl Glucoside.
7. A mild cleansing mousse for effectively removing sunscreen according to claim 6, characterized in that: According to weight parts, the raw materials for its preparation include: 60.15 parts of water 8-20 parts of a mixture of water and sodium cocoamidopropionate 2-15 parts mixture of water and disodium cocoyl glutamate 2-10 parts of sorbitol 2-10 parts of a mixture of water, sodium lauroamphoacetate and sodium chloride 1-8 parts of a mixture of water, sodium cocoyl amino acid, sodium citrate, sodium methyl taurate and sodium sarcosinate Di(PPG-2 myristeth-10) adipate, propylene carbonate 0.1-3 parts PPG-3 Octyl Ether 0.1-3 parts 0.5-3 parts of mixture of water and decyl glucoside 0.6-1 part of a mixture of butylene glycol, caprylhydroxamic acid and ethylhexylglycerin Betaine 0.1-2 parts Citric acid 0.01-1 part Dipotassium glycyrrhizinate 0.01-0.2 parts Disodium EDTA 0.01-0.2 parts.
8. A mild cleansing mousse for effectively removing sunscreen according to claim 6, characterized in that: According to weight parts, the raw materials for its preparation include: Component 1: 60.15 parts of water Component 2: 12.5 parts of a mixture of water and sodium cocoamidopropionate Component 3: 8.5 parts of a mixture of water and disodium cocoyl glutamate Component 4: 4 parts of sorbitol Component 5: 5.4 parts of a mixture of water, sodium lauroamphoacetate and sodium chloride Component 6: 6.5 parts of a mixture of water, sodium cocoyl amino acid, sodium citrate, sodium methyl taurate and sodium sarcosinate Component 7: 1.8 parts of di(PPG-2 myristic alcohol polyether-10) adipate and propylene carbonate Component 8: 1.63 parts of PPG-3 octyl ether Component 9: 1.85 parts of a mixture of water and decyl glucoside Component 10: 0.9 parts of a mixture of butylene glycol, caprylhydroxamic acid and ethylhexylglycerin Component 11: 1.2 parts of betaine Component 12: 0.5 parts of citric acid Component 13: 0.1 part of dipotassium glycyrrhizinate Component 14: 0.11 parts of disodium EDTA.
9. The method for preparing a mild cleansing mousse for strong sunscreen removal according to any one of claims 6 to 8, characterized in that: Here are the steps: S01 Accurately weigh various raw materials in the formula and place them in clean and sterilized containers; S02 Add the raw materials of phase A into the vacuum emulsifying pot one by one and stir to dissolve evenly; S03 After phase A is evenly dissolved, add the raw materials of phase B into the vacuum emulsifier one by one and stir to dissolve evenly; S04 After phase B is evenly dissolved, add the raw materials of phase C into the vacuum emulsifier one by one, and stir and dissolve until the material becomes transparent; S05 After the emulsification pot material is stirred until it is clear and transparent, continue stirring for 10 minutes, send it for inspection, and after passing the inspection, filter it out with 800 mesh. Sampling inspection and material transfer; After S06 passes the inspection, it is filled and packaged; after passing the inspection, the finished product is put into storage. in: Group A: component 1, component 2, component 3, component 4, component 5, component 6, component 9, component 14; Group B: component 10, component 11, component 12, component 13; Group C: Component 7, Component 8.
10. A mild cleansing mousse composition for effectively removing sunscreen according to any one of claims 1 to 5, characterized in that: Used in daily chemical field.
Citation Information
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