A facial cleansing honey with high content of vegetable oil and preparation method thereof
Through the combination of specific plant extracts and surfactants, the problems of poor cleansing and oil control effects of cleansing honey products are solved, and the effects of gentle cleansing and long-lasting oil control are achieved to meet the cleansing needs of oily skin.
Patent Information
- Application Number
- CN202510398946.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2045-04-01
AI Technical Summary
Existing cleansing honey products are insufficient in terms of cleansing power and mildness, and cannot meet the cleansing needs of oily skin. In addition, there is insufficient research on the ratio and synergistic effect of oil-control ingredients, resulting in poor oil-control effect and poor durability.
A specific proportion of plant extracts and surfactant compositions, including valerian extract, Prunus mume seed extract, Haematococcus pluvialis extract, Lithospermum officinale extract, Magnolia grandiflora leaf extract and Lotus japonica root extract, are used in combination with amino acid surfactants and moisturizers to form oil and water phases. Through the synergistic effect of multiple ingredients, gentle cleansing and long-lasting oil control are achieved.
It achieves the effects of gentle cleansing, dense foaming, effective oil control and long-lasting moisturizing, significantly improving the skin's freshness and oil control ability, and meeting the cleansing needs of oily skin.
Smart Images

Figure BDA0005339272760000101 
Figure BDA0005339272760000111
Abstract
Description
Technical Field
[0001] The invention belongs to the field of daily cosmetic preparations, and particularly relates to a facial cleansing honey with a high content of vegetable oil and a preparation method thereof. Background Art
[0002] Currently, facial cleansers on the market lack significant cleansing power and mildness. Many cleansers, in pursuit of high cleansing efficiency, incorporate potent cleansing ingredients like soap bases. While these can quickly remove dirt and oil from the skin's surface, they can be highly irritating and can easily damage the skin's natural barrier, leading to dryness, tightness, and even sensitivity. On the other hand, some facial cleansers marketed as mild, while less irritating, have limited cleansing power and fail to thoroughly remove surface oil and dirt, making them unsuitable for those with oily skin or those with high cleansing needs. Furthermore, while some facial cleansers have attempted to enhance their skincare benefits by incorporating natural plant extracts, the existing technologies limit the variety of plant extracts used, and their formulations fail to fully exploit the synergistic effects of multiple plant extracts, resulting in poor overall oil control and skincare results. Furthermore, existing facial cleansers also lack oil control effectiveness. Some rely solely on a single oil-control ingredient, lacking the ability to comprehensively regulate skin oil secretion through multiple pathways. Furthermore, their regulatory effects on the skin's microbiome are limited, failing to fundamentally improve oiliness. Furthermore, the existing technology lacks research on the ratio and synergistic effects of oil-control ingredients, resulting in defects in the durability and stability of oil-control products, and the inability to provide long-term oil-control protection for the skin. Given these issues, there is an urgent need to provide a cleansing honey with significant refreshing and oil-control effects to fill the market gap. Summary of the Invention
[0003] In response to the shortcomings of the existing technology, the purpose of the present invention is to provide a composition with refreshing and oil-control effects, as well as its preparation method and application. The composition is carefully screened and compounded with plant extracts, vegetable oils and surfactants, aiming to achieve multiple functions such as gentle cleansing, dense and multi-foaming, effective oil control and long-lasting moisturizing, to meet consumers' demand for natural, healthy and efficient cleansing products.
[0004] To achieve the above objectives, the present invention provides the following technical solutions:
[0005] In a first aspect, the present invention provides a refreshing oil-control composition, characterized in that the refreshing oil-control composition comprises an oil phase and a water phase;
[0006] The oil phase comprises the following components in percentage by mass:
[0007] Plant extract A: 1-2 wt%;
[0008] Laureth-3: 6-10wt%;
[0009] Vegetable oil is added to 100 wt%;
[0010] The aqueous phase comprises the following components in percentage by mass:
[0011] Plant extract B: 1-2wt%
[0012] Amino acid surfactant: 0.2-1wt%
[0013] Moisturizer: 1-2wt%;
[0014] Thickener: 2-6wt%;
[0015] Add water to 100 wt%;
[0016] The plant extract A comprises valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract, wherein the mass ratio of the valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract is 1:1-3:1-3:1-3;
[0017] The plant extract B comprises a magnolia flower leaf extract and a lotus root extract, wherein the mass ratio of the magnolia flower leaf extract to the lotus root extract is 1:0.5-1.5;
[0018] The volume ratio of the oil phase to the water phase in the refreshing oil-control composition is 1:0.8-1.2.
[0019] Preferably, the vegetable oil is one or more of grape seed oil, camellia oil, sweet almond oil, olive oil, jojoba seed oil, oat kernel oil, lemon essential oil, sweet orange essential oil, bergamot essential oil, rosehip oil, shea butter, and avocado oil.
[0020] Preferably, the amino acid surfactant is one or more of sodium cocoyl glycinate, sodium cocoyl glutamate, potassium cocoyl glycinate, sodium lauroyl aspartate, sodium cocamidopropionate, sodium lauroyl sarcosinate, sodium lauroyl oat amino acids, and sodium cocoyl apple amino acids.
[0021] Preferably, the moisturizing agent is a 10 wt% glycerol-water solution.
[0022] Preferably, the thickener is DOE-120 and / or hydroxypropyl starch phosphate.
[0023] Preferably, the water is deionized water.
[0024] In a second aspect, the present invention provides a use of the refreshing oil-control composition described in the first aspect in the preparation of a rinse-off type washing and care preparation having refreshing, oil-control, oil-removing, cleansing, anti-inflammatory, acne-removing and / or moisturizing effects.
[0025] In a third aspect, the present invention provides a refreshing oil-control cleansing honey, comprising the refreshing oil-control composition described in the first aspect.
[0026] In a fourth aspect, the present invention provides a method for preparing the refreshing oil-control cleansing honey according to the third aspect, comprising the following preparation steps:
[0027] (1) Oil phase: Stir plant extract A, vegetable oil, and laureth-3 at room temperature to obtain an oil phase;
[0028] (2) Aqueous phase: Stir the plant extract B, amino acid surfactant, humectant, thickener, and water at room temperature to obtain an aqueous phase;
[0029] (3) Place the oil phase and water phase in sealed bottles separately and store at room temperature away from light.
[0030] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0031] Valerian extract, containing nutrients like vitamin E and vitamin A, nourishes the skin and promotes metabolism. Prunus mume extract, containing unsaturated fatty acids and other ingredients, helps maintain the skin's water and oil balance. Together, these two nourish and regulate skin health and oil secretion.
[0032] Haematococcus pluvialis extract, rich in antioxidants like astaxanthin, scavenges free radicals and reduces oxidative stress damage to the skin. Comfrey root extract, on the other hand, exhibits significant anti-inflammatory properties, alleviating skin inflammation. These two synergistic antioxidant and anti-inflammatory properties help maintain skin health and indirectly promote skin oil balance.
[0033] The active ingredients in Lotus japonicus extract can directly regulate skin oil secretion, while Lithospermum officinale extract indirectly regulates oil secretion through its anti-inflammatory effects. The two work synergistically, regulating skin oil secretion through both direct and indirect pathways for a more comprehensive effect.
[0034] Magnolia grandiflora leaf extract has an astringent effect, shrinking pores and reducing oil secretion, while Prunus mume kernel extract regulates skin oil secretion. Together, these two ingredients work together to improve oily skin by tightening pores and regulating oil secretion, leaving skin feeling fresher.
[0035] Six extracts work together to control oil levels in different ways: the antioxidant properties of Haematococcus pluvialis extract, the anti-inflammatory properties of Lithospermum officinale extract, the nourishing properties of Valerian root extract, the moisturizing and conditioning properties of Prunus mume seed extract, the astringent properties of Magnolia grandiflora leaf extract, and the direct conditioning properties of Lotus japonica root extract. These extracts complement each other in terms of composition and efficacy, such as the astaxanthin in Haematococcus pluvialis extract, the shikonin in Lithospermum officinale extract, the vitamins in Valerian root extract, and the unsaturated fatty acids in Prunus mume seed extract. These complement each other, enhancing their effectiveness and making oil control more pronounced and lasting. DETAILED DESCRIPTION
[0036] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0037] The technical solutions of the present invention are further described in detail below with reference to specific embodiments. It should be understood that the following embodiments are merely used to explain the present invention and are not intended to limit the present invention.
[0038] In the present invention:
[0039] Valerian extract: Beijing Weiyou Century Technology Co., Ltd., product number: WY0034;
[0040] Prunus mume seed extract: Beijing Weiyou Century Technology Co., Ltd., product number: WY0068;
[0041] Haematococcus pluvialis extract: Beijing Weiyou Century Technology Co., Ltd., product number: WY0074;
[0042] Lithospermum officinale extract: Beijing Weiyou Century Technology Co., Ltd., product number: WY0055;
[0043] Magnolia grandiflora leaf extract: Beijing Weiyou Century Technology Co., Ltd., product number: WY0093;
[0044] Lotus japonicus root extract: Beijing Weiyou Century Technology Co., Ltd., product number: WY0028;
[0045] The remaining raw materials and test reagents were purchased commercially.
[0046] The components and mass percentages of the refreshing oil-control composition are as follows:
[0047] Composition 1:
[0048] Oil phase:
[0049] Plant extract A: 1.5wt%;
[0050] Laureth-3: 8wt%;
[0051] Vegetable oil is added to 100 wt%;
[0052] Aqueous phase:
[0053] Plant extract B: 1.5wt%;
[0054] Amino acid surfactant: 0.6wt%;
[0055] Humectant: 1.5wt%;
[0056] Thickener: 4wt%;
[0057] Add water to 100 wt%;
[0058] The plant extract A comprises valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract, wherein the mass ratio of the valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract is 1:2:2:2;
[0059] The plant extract B is a magnolia flower leaf extract and a lotus root extract, and the mass ratio of the magnolia flower leaf extract to the lotus root extract is 1:1;
[0060] The vegetable oils are grape seed oil, camellia oil, sweet almond oil, olive oil, jojoba seed oil, oat kernel oil, lemon essential oil, sweet orange essential oil, bergamot essential oil, rose hip oil, shea butter, and avocado oil, and the mass ratio of the grape seed oil, camellia oil, sweet almond oil, olive oil, jojoba seed oil, oat kernel oil, lemon essential oil, sweet orange essential oil, bergamot essential oil, rose hip oil, shea butter, and avocado oil is 24:2:2:2.4:2:2:0.2:0.2:0.2:2:1:1;
[0061] The amino acid surfactant is sodium cocoyl glycinate, sodium cocoyl glutamate, potassium cocoyl glycinate, sodium lauroyl aspartate, sodium cocoamido propionate, sodium lauroyl sarcosinate, sodium lauroyl oat amino acids, and sodium cocoamido apple amino acids, and the mass ratio of sodium cocoyl glycinate, sodium cocoyl glutamate, potassium cocoyl glycinate, sodium lauroyl aspartate, sodium cocoamido propionate, sodium lauroyl sarcosinate, sodium lauroyl oat amino acids, and sodium cocoamido apple amino acids is 7:2:24:2:1:1:1:1;
[0062] The moisturizing agent is a 10wt% glycerol-water solution;
[0063] The thickener is DOE-120;
[0064] The water is deionized water;
[0065] The volume ratio of the oil phase to the water phase is 1:1.
[0066] Composition 2:
[0067] Oil phase:
[0068] Plant extract A: 1wt%;
[0069] Laureth-3: 6wt%;
[0070] Vegetable oil is added to 100 wt%;
[0071] Aqueous phase:
[0072] Plant extract B: 2wt%;
[0073] Amino acid surfactant: 1wt%;
[0074] Humectant: 1wt%;
[0075] Thickener: 2wt%;
[0076] Add water to 100 wt%;
[0077] The plant extract A comprises valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract, wherein the mass ratio of the valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract is 1:1:3:1;
[0078] The plant extract B is a magnolia flower leaf extract and a lotus root extract, and the mass ratio of the magnolia flower leaf extract to the lotus root extract is 1:1.5;
[0079] The vegetable oils are grape seed oil, camellia oil, sweet almond oil, olive oil, jojoba seed oil, oat kernel oil, lemon essential oil, sweet orange essential oil, bergamot essential oil, rose hip oil, shea butter, and avocado oil, and the mass ratio of the grape seed oil, camellia oil, sweet almond oil, olive oil, jojoba seed oil, oat kernel oil, lemon essential oil, sweet orange essential oil, bergamot essential oil, rose hip oil, shea butter, and avocado oil is 24:2:2:2.4:2:2:0.2:0.2:0.2:1:1;
[0080] The amino acid surfactant is sodium cocoyl glycinate, sodium cocoyl glutamate, potassium cocoyl glycinate, sodium lauroyl aspartate, sodium cocoamido propionate, sodium lauroyl sarcosinate, sodium lauroyl oat amino acids, and sodium cocoamido apple amino acids, and the mass ratio of sodium cocoyl glycinate, sodium cocoyl glutamate, potassium cocoyl glycinate, sodium lauroyl aspartate, sodium cocoamido propionate, sodium lauroyl sarcosinate, sodium lauroyl oat amino acids, and sodium cocoamido apple amino acids is 7:2:24:2:1:1:1:1;
[0081] The moisturizing agent is a 10wt% glycerol-water solution;
[0082] The thickener is hydroxypropyl starch phosphate;
[0083] The water is deionized water;
[0084] The volume ratio of the oil phase to the water phase is 1:1.2.
[0085] Composition 3:
[0086] Oil phase:
[0087] Plant extract A: 2wt%;
[0088] Laureth-3: 10wt%;
[0089] Vegetable oil is added to 100 wt%;
[0090] Aqueous phase:
[0091] Plant extract B: 1wt%;
[0092] Amino acid surfactant: 0.2wt%;
[0093] Humectant: 2wt%;
[0094] Thickener: 6wt%;
[0095] Add water to 100 wt%;
[0096] The plant extract A comprises valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract, wherein the mass ratio of the valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract is 1:3:1:3;
[0097] The plant extract B is a magnolia flower leaf extract and a lotus root extract, and the mass ratio of the magnolia flower leaf extract to the lotus root extract is 1:0.5;
[0098] The vegetable oils are grape seed oil, camellia oil, sweet almond oil, olive oil, jojoba seed oil, oat kernel oil, lemon essential oil, sweet orange essential oil, bergamot essential oil, rose hip oil, shea butter, and avocado oil, and the mass ratio of the grape seed oil, camellia oil, sweet almond oil, olive oil, jojoba seed oil, oat kernel oil, lemon essential oil, sweet orange essential oil, bergamot essential oil, rose hip oil, shea butter, and avocado oil is 24:2:2:2.4:2:2:0.2:0.2:0.2:1:1;
[0099] The amino acid surfactant is sodium cocoyl glycinate, sodium cocoyl glutamate, potassium cocoyl glycinate, sodium lauroyl aspartate, sodium cocoamido propionate, sodium lauroyl sarcosinate, sodium lauroyl oat amino acids, and sodium cocoamido apple amino acids, and the mass ratio of sodium cocoyl glycinate, sodium cocoyl glutamate, potassium cocoyl glycinate, sodium lauroyl aspartate, sodium cocoamido propionate, sodium lauroyl sarcosinate, sodium lauroyl oat amino acids, and sodium cocoamido apple amino acids is 7:2:24:2:1:1:1:1;
[0100] The moisturizing agent is a 10wt% glycerol-water solution;
[0101] The thickener is DOE-120 and hydroxypropyl starch phosphate, wherein the mass ratio of DOE-120 to hydroxypropyl starch phosphate is 1:0.7;
[0102] The water is deionized water;
[0103] The volume ratio of the oil phase to the water phase is 1:0.8.
[0104] The preparation method of the composition 1-3 comprises the following steps:
[0105] (1) Oil phase: Stir plant extract A, vegetable oil, and laureth-3 at room temperature to obtain an oil phase;
[0106] (2) Aqueous phase: Stir the plant extract B, amino acid surfactant, humectant, thickener, and water at room temperature to obtain an aqueous phase;
[0107] (3) Place the oil phase and water phase in sealed bottles separately and store at room temperature away from light.
[0108] Composition ①: Different from composition 1, the plant extract A lacks valerian extract and lithospermum officinale extract, and the missing mass is supplemented by Prunus mume seed extract and Haematococcus pluvialis extract in a mass ratio of 1:1.
[0109] Composition ②: Different from composition 1, the plant extract A lacks Prunus japonica seed extract and Haematococcus pluvialis extract, and the missing mass is supplemented by valerian extract and lithospermum officinale extract in a mass ratio of 1:2.
[0110] Composition ③: Different from composition 1, the plant extract B is only the extract of magnolia odorata leaves.
[0111] Composition ④: Different from composition 1, the plant extract B is only the Lotus japonicus extract.
[0112] Composition ⑤: Different from composition 1, the oil phase does not contain plant extract A, and the missing mass percentage is made up by laureth-3 and vegetable oil in a mass ratio of 8:90.5.
[0113] Composition ⑥: Different from composition 1, the aqueous phase does not contain plant extract B. The lack of plant extract B is made up by amino acid surfactant, moisturizer, thickener and deionized water in a mass ratio of 0.6:1.5:4:92.4.
[0114] Composition ⑦: Different from composition 1, the oil phase does not contain plant extract A, and the missing mass percentage is made up with laureth-3 and vegetable oil in a mass ratio of 8:90.5; the aqueous phase does not contain plant extract B, and the missing mass percentage is made up with an amino acid surfactant, a moisturizer, a thickener, and deionized water in a mass ratio of 0.6:1.5:4:92.4.
[0115] Composition ⑧: Different from composition 1, the mass ratio of valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract in plant extract A is 3:1:1:1.
[0116] Composition 9: The difference from composition 1 is that the mass ratio of the Magnolia grandiflora leaf extract to the Lotus japonica root extract is 0.5:1.
[0117] The preparation method of the compositions ①-⑨ is the same as that of composition 1.
[0118] Oil control efficacy test:
[0119] According to the T / GDCA 008-2021 human testing method for moisturizing and oil-control efficacy of cleansing products, the compositions prepared from the above compositions 1-3 and compositions ①-⑨ were subjected to human oil-control efficacy testing, and the specific method is as follows:
[0120] Sample to be tested:
[0121] Sample groups: compositions 1-3, compositions ①-⑨, and placebo (deionized water);
[0122] Test plan:
[0123] Healthy Chinese male and female volunteers aged 18-50 years old were selected and tested for oily skin (the oil content on both sides of the forehead meets the following criteria: the oil secretion at about 0.5 cm above the left / right eyebrows is greater than 120 μg / cm for males) 2 , women>100μg / cm 2 ), and randomly divided the volunteers into 13 groups, with 20 people in each group.
[0124] The subjects applied the test sample on one side of their forehead (sample group), and the other side of their forehead served as a blank control (blank group). The oil content of both sides of the forehead was tested using the Sebumeter SM815 (CK, Germany) 2 hours and 8 hours after washing off.
[0125] Oil content of sample group (unit: μg / cm 2 ) Compared with the fat content of the blank group, the reduction rate (%) is shown in Table 1. The reduction rate is calculated as follows:
[0126] Reduction rate = (blank group fat content - sample group fat content) / blank group fat content × 100%
[0127] The test results are expressed as mean ± variance, see Table 1 for details.
[0128] Table 1 Oil control effect test
[0129] Sample Group Reduction rate 2h after washing / % Reduction rate 8h after washing / % Placebo 9.49±0.76 0.73±0.42 Composition 1 <![CDATA[52.58±1.14 * ]]> <![CDATA[49.32±0.79 * ]]> Composition 2 <![CDATA[52.53±0.93 * ]]> <![CDATA[48.09±0.86 * ]]> Composition 3 <![CDATA[51.67±0.52 * ]]> <![CDATA[46.45±1.03 * ]]> Composition ① <![CDATA[35.85±0.47 *# ]]> <![CDATA[27.79±1.62 *# ]]> Composition ② <![CDATA[33.39±0.69 *# ]]> <![CDATA[22.72±1.39 *# ]]> Composition ③ <![CDATA[32.07±0.33 *# ]]> <![CDATA[19.56±1.57 *# ]]> Composition ④ <![CDATA[23.75±0.96 *# ]]> <![CDATA[10.61±1.84 *# ]]> Composition ⑤ <![CDATA[20.49±1.21 *# ]]> <![CDATA[13.45±2.37 *# ]]> Composition ⑥ <![CDATA[19.67±1.37 *# ]]> <![CDATA[10.86±2.66 *# <!-- 6 -->]]> Composition ⑦ <![CDATA[14.58±2.26 *# ]]> <![CDATA[6.67±1.73 *# ]]> Composition ⑧ <![CDATA[40.56±0.97 *# ]]> <![CDATA[35.38±3.62 *# ]]> Composition ⑨ <![CDATA[37.79±0.84 *# ]]> <![CDATA[24.53±1.53 *# ]]>
[0130] Note: "*" indicates comparison with the placebo group, p < 0.05; "#" indicates comparison with composition 1, p < 0.05. Result analysis:
[0131] As can be seen from the data in Table 1, compositions 1-3 have good oil control effects, can effectively reduce the oil content on the skin surface, and the effects are significantly better than compositions ①-⑨. By comparing the results of composition 1 and composition ①-②, it can be seen that there is a certain synergistic effect between the valerian extract, Prunus mume extract, Haematococcus pluvialis extract, and Lithospermum officinale extract in the plant extract A of the present invention, and the four are indispensable; by comparing the results of composition 1 and composition ③-④, it can be seen that there is a certain synergistic effect between the lotus magnolia leaf extract and the lotus root extract in the plant extract B of the present invention, and the two are indispensable; by comparing the results of composition 1 and composition ⑤-⑦, it can be seen that there is a certain synergistic effect between plant extract A and plant extract B, and the two are indispensable; by comparing the results of composition 1 and composition ⑧-⑨, it can be seen that each plant extract has a better oil control effect under the dosage ratio defined by the present invention.
[0132] In summary, there is a significant synergistic oil-control effect between the plant extract A and the plant extract B.
[0133] Foaming efficacy test:
[0134] Comparative composition A: The only difference from composition 1 is that the volume ratio of the oil phase to the water phase is 1:2.
[0135] Comparative composition B: The only difference from composition 1 is that the volume ratio of the oil phase to the water phase is 2:1.
[0136] Foaming performance test:
[0137] Foam height test: The foaming power of the cleansing honey is evaluated by testing the foam height using a Roche foam meter. Preheat a super constant temperature water bath to 40±1°C and maintain the Roche foam meter at a constant temperature of 40±1°C. Measure 12mL of sample, add 100mL of hard water and stir to dissolve the sample evenly, then add 900mL of distilled water for later use; use a 200mL quantitative funnel to draw up some of the test solution and rinse along the wall of the foam meter. Then, take the test solution and place it in the bottom of the foam meter, aligning it to the standard scale of 50mL. Then use a quantitative funnel to draw up 200mL of the test solution and fix the center of the funnel. After the test solution is added, immediately record the initial foam height. After standing for 5 minutes, record the foam height again. Perform two parallel tests and take the average of the two results within the allowable error range as the final result. Under the same testing conditions, a higher initial foam height indicates better foaming power (facial cleansers generally require an initial foam height > 100mm). The foam height change rate is calculated as (initial foam height - 5-minute foam height) / initial foam height × 100%. The smaller the foam height change rate after 5 minutes, the more stable and long-lasting the foam. The foam height test results for Compositions 1-3 and the refreshing oil-control cleansing lotions prepared in Comparative Examples AB are shown in Table 2.
[0138] Table 2 Foam height test results of compositions 1-3 and comparative examples AB
[0139]
[0140]
[0141] Result analysis:
[0142] It can be seen from the results of compositions 1-3 that when the volume ratio of the oil phase to the water phase in the composition is 1:1, the composition has good foaming power and the foam is stable and long-lasting; it can be seen from the results of comparative compositions 1-3 and comparative compositions AB that when the volume ratio of the oil phase to the water phase is 1:2 or 2:1, the foaming ability of the composition is relatively poor and the foam is unstable.
[0143] Cleaning efficacy test:
[0144] 1 g of standard dirt was evenly applied to the excised pig skin (3 cm×3 cm), and then cleaned with the samples (the cleansing honey prepared from compositions 1 to 3 and comparative compositions AB).
[0145] Cleaning method: Apply 1 mL of sample evenly to the excised pig skin, rub with fingertips for 60 seconds, and then rinse with water.
[0146] Standard dirt: composed of 65wt% calcium carbonate, 5wt% urea, 5wt% magnesium carbonate, 0.8wt% calcium bicarbonate, 0.5wt% egg white liquid, and the balance lard.
[0147] A cleanliness tester (SITA CleanLine CI, Germany) was used to test the dirt content on the ex vivo pig skin before and after cleaning, and the dirt cleaning rate was calculated: dirt cleaning rate = (skin dirt measurement value before use - skin dirt measurement value after use) / skin dirt measurement value before use × 100%.
[0148] The above values were measured three times and the average value was taken. The results are expressed as mean ± standard deviation.
[0149] experimental group Dirt cleaning rate / % Composition 1 88.73±0.84 Composition 2 87.39±0.93 Composition 3 85.32±0.69 Comparative composition A 79.62±1.33 Comparative composition B 72.41±0.74
[0150] The test results show that when the volume ratio of the oil phase to the water phase in the cleansing honey is 1:1, the cleansing honey has better cleaning ability.
[0151] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A refreshing oil-control composition, characterized in that: The refreshing oil-control composition comprises an oil phase and a water phase; The oil phase comprises the following components in percentage by mass: Plant extract A: 1-2 wt%; Laureth-3: 6-10wt%; Vegetable oil is added to 100 wt%; The aqueous phase comprises the following components in percentage by mass: Plant extract B: 1-2wt% Amino acid surfactant: 0.2-1wt% Moisturizer: 1-2wt%; Thickener: 2-6wt%; Add water to 100 wt%; The plant extract A comprises valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract, wherein the mass ratio of the valerian extract, Prunus mume extract, Haematococcus pluvialis extract and Lithospermum officinale extract is 1:1-3:1-3:1-3; The plant extract B comprises a magnolia flower leaf extract and a lotus root extract, wherein the mass ratio of the magnolia flower leaf extract to the lotus root extract is 1:0.5-1.5; The volume ratio of the oil phase to the water phase is 1:0.8-1.
2.
2. The refreshing oil-control composition according to claim 1, characterized in that The vegetable oil is one or more of grape seed oil, camellia oil, sweet almond oil, olive oil, jojoba seed oil, oat kernel oil, lemon essential oil, sweet orange essential oil, bergamot essential oil, rosehip oil, shea butter, and avocado oil.
3. The refreshing oil-control composition according to claim 1, characterized in that The amino acid surfactant is one or more of sodium cocoyl glycinate, sodium cocoyl glutamate, potassium cocoyl glycinate, sodium lauroyl aspartate, sodium cocoyl aminopropionate, TEA cocoyl glutamate, disodium cocoyl glutamate, sodium lauroyl sarcosinate, sodium lauroyl oat amino acids, and sodium cocoyl apple amino acids.
4. The refreshing oil-control composition according to claim 1, characterized in that The moisturizing agent is a 10 wt% glycerol-water solution, the thickener is DOE-120 and / or hydroxypropyl starch phosphate, and the water is deionized water.
5. Use of the refreshing oil-control composition according to any one of claims 1 to 4 in the preparation of a rinse-off skin care product with refreshing, oil-control, oil-removing, cleansing, anti-inflammatory, acne-removing and / or moisturizing effects.
6. A refreshing oil-control cleansing honey, characterized by: The cleansing honey comprises the refreshing oil-control composition according to any one of claims 1 to 4.
7. The refreshing oil-control cleansing honey according to claim 6, characterized in that The preparation method of the refreshing oil-control cleansing honey comprises the following preparation steps: (1) Oil phase: Stir plant extract A, vegetable oil, and laureth-3 at room temperature to obtain an oil phase; (2) Aqueous phase: Stir the plant extract B, surfactant, humectant, thickener, and water at room temperature to obtain an aqueous phase; (3) Place the oil phase and water phase in sealed bottles separately and store at room temperature away from light.
Citation Information
Patent Citations
Jade leaf detoxification granule reference extract, and preparation method and specific chromatogram thereof
CN112394114A
Shampoo with oil control and acarus killing effects and preparation method thereof
CN114681365A