Perfumed soap with moisturizing and sterilizing functions and preparation method of perfumed soap

A functional soap technology, which is applied in the field of soap with moisturizing and sterilizing functions and its preparation, can solve the problems of dry and tight skin, broken oil layer, and dandruff, so as to help healing, strengthen resistance, and have a fragrant smell Effect

Inactive Publication Date: 2021-06-01
BEIJING SHENGYONG PHARMA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Therefore, during the use of the existing cleansing soap, while removing the cosmetics on the skin surface, it will also break the oil layer naturally secreted on the skin surface, resulting in dry and tight skin, prone to allergies, and dandruff. Room for improvement

Method used

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  • Perfumed soap with moisturizing and sterilizing functions and preparation method of perfumed soap
  • Perfumed soap with moisturizing and sterilizing functions and preparation method of perfumed soap

Examples

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preparation example Construction

[0050] A preparation method of soap with moisturizing and sterilizing functions, which is used to prepare the above-mentioned cleansing soap, comprising the following steps:

[0051] Step 1: Weigh raw materials: Weigh 25-55 parts of oil components, 5-15 parts of absolute ethanol, 20-40 parts of sodium hydroxide solution, 5-15 parts of glycerin, 1-3 parts of natural petals, 1-5 parts of essential oil, 1-5 parts of mineral powder, 0.5-2 parts of copper oxide;

[0052] Step 2: processing of auxiliary materials: crushing and grinding natural petals, mineral powder, and copper oxide to obtain auxiliary material powder;

[0053] Step 3: Prepare soap liquid: introduce the weighed oil components, absolute ethanol, and sodium hydroxide solution into the container for mixing and stirring to prepare soap liquid;

[0054] Step 4: saponification: the soap liquid is introduced into the reactor and heated to carry out the saponification reaction to obtain the soap base;

[0055] Step 5: Ad...

Embodiment 1

[0062] Weighed 45 parts of oil components, 8 parts of absolute ethanol, 35 parts of sodium hydroxide solution, 8 parts of glycerin, 2 parts of natural petals, 4 parts of plant essential oil, 4 parts of mineral powder, and 1 part of copper oxide, of which The oily component consists of sweet almond oil, canola oil, coconut oil and palm oil;

[0063] Crushing and grinding the natural petals, mineral powder, and copper oxide to obtain auxiliary material powder, wherein the particle size of the natural petal powder is 2-300 mesh, the particle size of the mineral powder is 6000-10000 mesh, and the particle size of the copper oxide powder is 8000~10000 mesh;

[0064] Introduce the weighed oil components, absolute ethanol, and sodium hydroxide solution into the container for mixing and stirring to obtain soap liquid;

[0065] The soap liquid is introduced into the reactor and heated to carry out saponification reaction to obtain soap base, wherein the reaction temperature of saponif...

Embodiment 2

[0069] Weighed oil components: 48 parts, 6 parts of absolute ethanol, 36 parts of sodium hydroxide solution, 12 parts of glycerin, 3 parts of natural petals, 3 parts of plant essential oil, 3 parts of mineral powder, 1.5 parts of copper oxide, of which The ingredients are composed of sweet almond oil, canola oil, coconut oil and soybean oil;

[0070] Crushing and grinding the natural petals, mineral powder, and copper oxide to obtain auxiliary material powder, wherein the particle size of the natural petal powder is 2-300 mesh, the particle size of the mineral powder is 6000-10000 mesh, and the particle size of the copper oxide powder is 8000~10000 mesh;

[0071] Introduce the weighed oil components, absolute ethanol, and sodium hydroxide solution into the container for mixing and stirring to obtain soap liquid;

[0072] The soap liquid is introduced into the reactor and heated to carry out saponification reaction to obtain soap base, wherein the reaction temperature of sapon...

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Abstract

The invention discloses perfumed soap with moisturizing and sterilizing functions, and a preparation method thereof. The perfumed soap with the moisturizing and sterilizing functions is prepared from, by mass, 25-55% of grease components, 5-15% of absolute ethyl alcohol, 20-40% of a sodium hydroxide solution, 5-15% of glycerinum, 1-3% of natural petals, 1-5% of plant essential oil, 1-5% of mineral powder and 0.5-2% of copper oxide, wherein the grease components comprise a component A and a component B, the mass ratio of the component A to the component B is 3:7, the component A comprises sweet almond oil, canola oil and coconut oil, and the component B comprises one or a combination of palm oil, soybean oil, olive oil, peanut oil, corn oil and castor oil. According to the invention, through application of mineral powder, copper oxide and plant essential oil, the perfumed soap is makeup removing soap, has a good moisturizing effect, can effectively improve the use experience of the makeup removing soap, can prevent skin from being dry and tight after cleaning, and has good use effect.

Description

technical field [0001] The invention relates to the field of daily chemical products, in particular to a soap with moisturizing and sterilizing functions and a preparation method thereof. Background technique [0002] Soap is a general term for fatty acid metal salts. The general formula is RCOOM, where RCOO is a fatty acid radical, and M is a metal ion. The carbon number of fatty acids in daily-use soaps is generally 10-18, and the metals are mainly alkali metals such as sodium or potassium. There are also special-purpose soaps made of ammonia and some organic bases such as ethanolamine and triethanolamine. In a broad sense, fatty acid salts obtained from saponification or neutralization reactions of grease, wax, rosin or fatty acids with alkalis can all be called soaps. Soap is soluble in water and has the effect of washing and decontamination. [0003] The molecular structure of soap can be divided into two parts. One end is a charged polar COO- (hydrophilic site), an...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C11D9/02C11D9/18C11D9/26C11D9/38C11D3/48C11D9/60A61Q17/00A61Q19/00A61Q19/08A61Q19/10
CPCA61Q17/005A61Q19/00A61Q19/08A61Q19/10C11D3/48C11D9/02C11D9/18C11D9/26C11D9/265C11D9/38
Inventor 桑苏君
Owner BEIJING SHENGYONG PHARMA
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