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Preparation method of high-efficiency antioxidant acne-removing handmade soap

An antioxidant, handmade soap technology, applied in chemical instruments and methods, preparations for skin care, cosmetics, etc., can solve the problems of skin damage, destruction of plant active ingredients, unscientific and reasonable production process, etc. The effect of oxidative properties

Inactive Publication Date: 2018-03-16
宁波秋日小城智能科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In order to overcome the deficiencies in the prior art, the purpose of the present invention is to provide a preparation method of high-efficiency anti-oxidation and anti-acne handmade soap, which can effectively solve the problem that the extraction efficiency of the currently produced handmade soap is not high for the plant active substances that exert medicinal effects, and the Plant active ingredients are prone to damage, the production process is unscientific and reasonable, the preservatives are harmful to the skin, and the anti-oxidation ability is weak, which cannot effectively prevent the deposition of pigments and prevent the formation of acne scars and acne scars.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0045]High-efficiency anti-oxidation and anti-acne handmade soap, including the following components according to the weight fraction: 10 parts of Chinese medicine extract, 5 parts of moso bamboo leaf extract, 1 part of Pyracantha fruit extract, 1 part of Indigo fruit extract, and 1 part of mangosteen husk extract 1 part of Italian Buglossia extract, 2 parts of Litchi Leaf Extract, 2 parts of Bayberry Leaf Extract, 1 part of Perilla Leaf Extract, 1 part of Mugwort Extract, 6 parts of Niacinamide, 0.3 part of Tea Saponin , 70 parts of seabuckthorn seed oil, 250 parts of natural soap base; among them, the ingredients of traditional Chinese medicine extract are as follows: 3 parts of white pomegranate extract, 5 parts of licorice extract, 5 parts of salvia miltiorrhiza extract, and patchouli extract 8 parts, Magnolia officinalis extract 10 parts.

Embodiment 2

[0047] High-efficiency anti-oxidation anti-acne handmade soap, including the following components according to the weight fraction: 12 parts of Chinese medicine extract, 8 parts of moso bamboo leaf extract, 2 parts of Pyracantha fruit extract, 2 parts of Indigo fruit extract, 1.5 parts of mangosteen shell extract 1.5 parts of Italian Buglossia extract, 3 parts of Litchi Leaf Extract, 3 parts of Bayberry Leaf Extract, 1.5 parts of Perilla Leaf Extract, 1.5 parts of Mugwort Extract, 8 parts of Niacinamide, 0.6 parts of Tea Saponin , 88 parts of seabuckthorn seed oil, 290 parts of natural soap base; among them, the ingredients of traditional Chinese medicine extracts are: 3 parts of white pomegranate extract, 5 parts of licorice extract, 5 parts of salvia miltiorrhiza extract, and patchouli extract 8 parts, Magnolia officinalis extract 10 parts.

Embodiment 3

[0049] High-efficiency anti-oxidation anti-acne handmade soap, including the following components according to the weight fraction: 15 parts of Chinese medicine extract, 10 parts of moso bamboo leaf extract, 3 parts of Pyracantha fruit extract, 3 parts of Indigo fruit extract, 2 parts of mangosteen shell extract 2 parts of Italian Buglossia extract, 4 parts of Litchi Leaf Extract, 4 parts of Bayberry Leaf Extract, 2 parts of Perilla Leaf Extract, 2 parts of Mugwort Extract, 10 parts of Niacinamide, 1 part of Tea Saponin , 100 parts of seabuckthorn seed oil, 350 parts of natural soap base; among them, the ingredients of traditional Chinese medicine extracts are: 3 parts of white pomegranate extract, 5 parts of licorice extract, 5 parts of salvia miltiorrhiza extract, and patchouli extract 8 parts, Magnolia officinalis extract 10 parts.

[0050] The raw material extraction method in each embodiment is as follows:

[0051] The preparation method of the Pyracantha fruit extract i...

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PUM

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Abstract

The invention relates to a preparation method of a high-efficiency antioxidant acne-removing handmade soap. The preparation method is characterized by comprising the following steps of: (1) heating seabuckthorn seed oil in a water bath to 62 DEG C, and carrying out uniform-speed stirring to obtain A; (2) adding deionized water, nicotinamide, tea saponin and a natural soap base into A, and uniformly stirring the materials to obtain a mixture B; (3) uniformly mixing a traditional Chinese medicine extract, a phyllostachys pubescens leaf extract, a pyracantha fortuneana fruit extract, a lonicera caerulea extract, a mangosteen skin extract, an Italian anchusa italica extract, a litchi leaf extract, a myrica rubra leaf extract, a perilla leaf extract and a mugwort extract in parts by weight, adding the mixture into the mixture B, carrying out stirring for 28min to fully mix the mixture, pouring the mixture into a grinding tool, and curing the mixture for 28h at a constant temperature of 44 DEG C to obtain a semi-finished product; and (4) demoulding the semi-finished product, putting the semi-finished product in a cool and dry place for 12 days, and trimming and packaging the semi-finished product to obtain a finished product of the handmade soap.

Description

technical field [0001] The invention belongs to the technical field of preparation of daily cleaning and skin care products, and in particular relates to a preparation method of high-efficiency anti-oxidation and anti-acne handmade soap. Background technique [0002] Handmade soap is also called "natural surfactant". The main component is high-grade fatty acid sodium produced by natural oil and strong alkali. Handmade soap does not contain various synthetic surfactants. After contact with water, it will be decomposed by bacteria into Water and carbon dioxide are beneficial to the environment. Handmade soap is divided into cold process soap, hot process soap and regenerated soap. Cold soap is compared to the hot melting method used in industrial soap. After the oil and sodium hydroxide solution are mixed, a saponification reaction occurs. High temperature heating is not required in the process. After the reaction is completed, the soap solution is put into the mold to let i...

Claims

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Application Information

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IPC IPC(8): C11D10/04A61Q17/00A61Q19/08A61P17/10
CPCC11D10/045
Inventor 李人普
Owner 宁波秋日小城智能科技有限公司
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