High-moisture-retention skin-moistening handmade soap and preparation method thereof

A handmade soap and moisturizing technology, applied in skin care preparations, chemical instruments and methods, soap detergents and other compounding agents, etc., can solve the problems of short use time and insufficient moisturizing performance, and achieve easy operation, simple and practical methods. , Quickly moisturizing the skin

Inactive Publication Date: 2016-11-09
JIAYING UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the handmade soap with camellia oil as the main base oil has a soft soap bod

Method used

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  • High-moisture-retention skin-moistening handmade soap and preparation method thereof
  • High-moisture-retention skin-moistening handmade soap and preparation method thereof
  • High-moisture-retention skin-moistening handmade soap and preparation method thereof

Examples

Experimental program
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preparation example Construction

[0033] (2) Preparation of lye: Slowly add sodium hydroxide into purified water three times, and gently stir until completely dissolved to form lye. When the lye cools down to 45°C, place it in a Store in a water bath at a constant temperature and set aside;

[0034] (3) Mix oil and heat: Mix camellia oil, palm oil and coconut oil evenly, use an electric mixer to stir at a speed of 200-250rpm to form a mixed oil, and then heat the mixed oil to the same or similar temperature as the lye ,spare;

[0035](4) Saponification: When checking that the temperature of the mixed oil and the lye is similar, keep stirring the mixed oil, and add the lye to the mixed oil three times, stir until it is evenly added after each addition, and then add the next batch until all are added ;Keep stirring continuously during the whole process of mixing lye and mixed oil, the stirring speed is 150-250rpm; after 20 minutes, stop stirring for 5 minutes, observe the color of the oil and check the temperat...

Embodiment 1

[0041] 1. Formula: 5g of fresh dendrobium extract, 160g of camellia oil, 20g of palm oil, 40g of coconut oil, 30g of sodium hydroxide, 85g of purified water, 0.5g of plant essential oil or essence.

[0042] 2. Production steps:

[0043] (1) Use an electronic balance (accuracy 0.01g) to weigh and take out the mass of each raw material.

[0044] (2) In a 500mL beaker, add 85g of pure water and 30g of sodium hydroxide slowly in three portions, and stir gently while adding until completely dissolved to obtain lye. When the temperature is lowered to 45°C, place it in a 40-45°C water bath to keep the temperature constant.

[0045] (3) Mix 160g camellia oil, 20g palm oil, and 40g coconut oil in a 1000mL stainless steel cup, stir with a booster electric mixer at a speed of 200rpm, stir evenly, then place in a water bath and heat to the same or similar temperature as the lye.

[0046] (4) When checking that the temperature of the mixed oil and the lye is similar, keep stirring the mi...

Embodiment 2

[0054] 1. Formula: 10g of fresh dendrobium extract, 220g of camellia oil, 60g of palm oil, 80g of coconut oil, 50g of sodium hydroxide, 120g of purified water, 5g of plant essential oil or essence.

[0055] 2. Production steps:

[0056] (1) Use an electronic balance (accuracy 0.01g) to weigh and take out the mass of each raw material.

[0057] (2) Add 120g of pure water and 50g of sodium hydroxide in a 500mL beaker slowly in three portions, and stir gently while adding until completely dissolved to obtain lye. When the temperature is lowered to 45°C, place it in a 40-45°C water bath to keep the temperature constant.

[0058] (3) Mix 220g camellia oil, 60g palm oil, and 80g coconut oil in a 1000mL stainless steel cup, stir with a booster electric mixer at a speed of 250rpm, stir evenly, and then place it in a water bath to heat to the same or similar temperature as the lye.

[0059] (4) When checking that the temperature of the mixed oil and the lye is similar, keep stirring ...

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Abstract

The invention discloses high-moisture-retention skin-moistening handmade soap and a preparation method thereof, and belongs to the technical field of handmade soap. The high-moisture-retention skin-moistening handmade soap is prepared from the following raw materials in parts by weight: 3-12 parts of a fresh herba dendrobii extract, 150-250 parts of camellia oil, 15-65 parts of palm oil, 35-85 parts of coconut oil, 25-55 parts of sodium hydroxide, 80-125 parts of purified water and 0.3-6 parts of plant essential oil or essence. The preparation method of the high-moisture-retention skin-moistening handmade soap comprises the following steps: (1) preparing materials; (2) preparing alkali liquid; (3) mixing oil materials and performing heating; (4) performing saponifying; (5) pouring the obtained saponified liquid into a mold and performing shaping; (6) performing demolding and drying the soap in air; (7) performing packaging and preserving. The invention aims to provide the high-moisture-retention skin-moistening handmade soap which is simple in preparation method, moderate in softness, gentle in formula and good in effects, and the preparation method thereof, and the preparation method is used for preparing the handmade soap.

Description

technical field [0001] The present invention relates to a kind of handmade soap, more specifically, relates to a kind of handmade soap with high moisture retention and emollient. The present invention also relates to a preparation method of the handmade soap. Background technique [0002] Soap and scented soap are important washing and cleaning products in people's daily life. Most commercially available soaps are heat-processed machine-made soaps, and the natural active substances in the base oil are destroyed and lost due to continuous high temperature during the production process. In order to improve the performance of soap or to attract customers' sense of taste and vision, some chemicals, such as pigments, essences, etc., are artificially added to the soap base. Handmade soap, also known as handmade cold-process soap, is an ancient low-temperature soap-making method originated in Europe. During low-temperature saponification, the natural active substances contained i...

Claims

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Application Information

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IPC IPC(8): C11D9/38C11D9/08C11D9/44C11D9/60A61Q19/00
CPCA61Q19/00C11D9/00C11D9/08C11D9/38C11D9/442
Inventor 朱远平朱旭平廖富林彭星林
Owner JIAYING UNIV
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