Preparation method for pollution-free spirit-raising soap

A non-polluting, soap technology, applied in chemical instruments and methods, soap detergent compositions, soap detergents and other compounding agents, etc. The refreshing effect is obvious, the raw materials are easy to obtain, and the raw materials are cheap.

Inactive Publication Date: 2016-05-25
CHANGZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The main technical problem to be solved by the present invention: In the current traditional soap processing process, not only the operation process is complex, harmful waste water is easily discharged, and the cost is high, but also the existing refreshment products only have a temporary refreshment effect and even irritate the human eyes. Provided is a kind of raw material of mint, borneol, clove, gardenia, essence and schisandra, which is crushed and added with aloe extract, stirred evenly, then added with vitamin mixture, and finally saponified and injected to obtain a non-toxic Method of making pollution refreshing soap

Method used

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Examples

Experimental program
Comparison scheme
Effect test

example 1

[0021] First, take 50g of mint, 20g of borneol, 10g of lilac, 8g of gardenia, 5g of essence, and 18g of schisandra according to the number of parts by mass, wash them with water, put them in a container, and put them in a dryer, set the drying temperature At 75°C, dry for 25 minutes. After the drying is completed, move it into a pulverizer for crushing. After 15 minutes, pass through a 120-mesh sieve to obtain a mixed powder; then take 500g of fresh aloe, put it into clean water and wash it repeatedly once to remove the aloe. After surface dirt, use a mash machine to mash it into a viscous substance, then evenly spread the mashed aloe vera in a pineapple sieve, place it in the sun for 6 hours, and turn it every 2 hours until it is finished , collect the sun-dried aloe and place it in a beaker; then add 900mL of ethyl acetate solution with a mass concentration of 65% to the above-mentioned beaker containing the sun-dried aloe, mix well, place it in an ultrasonic oscillator, and ...

example 2

[0024] First, take 55g of mint, 23g of borneol, 11g of lilac, 13g of gardenia, 8g of essence, and 25g of schisandra according to the number of parts by mass, wash them with water, put them in a container, and put them in a dryer, set the drying temperature At 78°C, dry for 28 minutes. After the drying is completed, move it into a pulverizer for crushing. After 18 minutes, pass through a 135-mesh sieve to obtain a mixed powder; then take 650g of fresh aloe and wash it twice in clean water to remove the aloe. After surface dirt, use a mash machine to mash it into a viscous substance, then evenly spread the mashed aloe vera in a pineapple sieve, place it in the sun for 8 hours, and turn it every 2 hours until it is finished , collect the sun-dried aloe and place it in a beaker; then add 1000 mL of ethyl acetate solution with a mass concentration of 65% to the above-mentioned beaker containing the sun-dried aloe, mix well, place it in an ultrasonic oscillator, and set the ultrasoni...

example 3

[0027] First, take 60g of mint, 25g of borneol, 12g of lilac, 15g of gardenia, 10g of essence, and 30g of schisandra according to the number of parts by mass, wash them with water, put them in a container, and place them in a dryer, set the drying temperature at 80°C, dry for 30 minutes, and after the drying is completed, move it into a pulverizer for crushing. After 20 minutes, pass through a 150-mesh sieve to obtain a mixed powder; then take 800g of fresh aloe, put it into clean water and wash it repeatedly for 3 times to remove the aloe. After surface dirt, use a mash machine to mash it into a viscous substance, then evenly spread the mashed aloe vera in a pineapple sieve, place it in the sun for 10 hours, and turn it every 2 hours until it is finished , collect the sun-dried aloe and place it in a beaker; then add 1100mL of ethyl acetate solution with a mass concentration of 65% to the above-mentioned beaker containing the sun-dried aloe, mix well, place it in an ultrasonic...

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PUM

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Abstract

The invention discloses a preparation method for a pollution-free spirit-raising soap, which belongs to the technical field of soap preparation. The pollution-free spirit-raising soap is prepared from mint, borneol, lilac, gardenia, essence and Chinese magnoliavine by crushing the above-mentioned raw materials, adding aloe extract, carrying out uniform stirring, then adding a vitamin mixture and finally carrying out saponification and mold injection. Embodiments prove that the method is unique and novel; operation process for the pollution-free spirit-raising soap is simple and easily practicable and produces no pollution; cost for raw materials is low; and the soap exerts substantial spirit-raising effect after usage.

Description

technical field [0001] The invention discloses a preparation method of pollution-free refreshing soap, which belongs to the technical field of soap preparation. 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. Special-purpose soaps are also made from 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. There are various types of soaps such as toilet soap, metal soap and complex soap. [0003] At present, the processing of soap generally needs to go through ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C11D9/00C11D9/60C11D9/38C11D9/26
CPCC11D9/00C11D9/26C11D9/38
Inventor 黄勇薛红娟
Owner CHANGZHOU UNIV
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