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Preparation method of detergent special for sewers

A technology for decontamination and sewers, which is applied in chemical instruments and methods, detergent compounding agents, detergent compositions, etc., can solve the problems of decontamination and cleaning agents failing to play a good role, harming pipeline safety, and being corrosive. , to achieve the effect of strong decontamination and anti-rust ability, good foaming effect and low production cost

Inactive Publication Date: 2017-07-25
冯新平
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In daily life, the sewer is always full of foul smell, and the cleaning is not clean. The usual decontamination cleaner cannot achieve good results, and some corrosive cleaners may even damage the safety of the pipeline, so there is an urgent need for a decontamination agent , to solve the existing problems

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0015] A preparation method of a special detergent for sewers, the composition of the raw materials consists of the following proportions in parts by weight:

[0016] 13 parts of baking soda, 8 parts of acetic acid, 10 parts of sorbitan fatty acid ester, 4 parts of glycerin, 2 parts of hydrochloric acid, 5 parts of sodium laureth sulfate, 8 parts of cocamidopropyl betaine parts, 3 parts of methylisothiazolinone, 5 parts of green tea essence, and 110 parts of deionized water.

[0017] Its preparation method is as follows:

[0018] A. At room temperature, add hydrochloric acid to deionized water to dilute to 1.5%;

[0019] B. Add baking soda to acetic acid for mixing, and set the temperature to 25°C;

[0020] C. Mix and stir sorbitan fatty acid ester, glycerin, sodium laureth sulfate, cocamidopropyl betaine and methylisothiazolinone, and then add steps A and B The mixture in is stirred evenly, and the pH value is adjusted by acetic acid to keep it at 7.4;

[0021] D. Add the...

Embodiment 2

[0023] A preparation method of a special detergent for sewers, the composition of the raw materials consists of the following proportions in parts by weight:

[0024] 11 parts of baking soda, 6 parts of acetic acid, 6 parts of sorbitan fatty acid ester, 4 parts of glycerin, 3 parts of hydrochloric acid, 5 parts of sodium laureth sulfate, 8 parts of cocamidopropyl betaine parts, 4 parts of methylisothiazolinone, 3 parts of green tea essence, and 100 parts of deionized water.

[0025] Its preparation method is as follows:

[0026] A. At room temperature, add hydrochloric acid to deionized water to dilute to 1.1%;

[0027] B. Add baking soda to acetic acid for mixing, and set the temperature to 20°C;

[0028] C. Mix and stir sorbitan fatty acid ester, glycerin, sodium laureth sulfate, cocamidopropyl betaine and methylisothiazolinone, and then add steps A and B The mixture in is stirred evenly, and the pH value is adjusted by acetic acid to keep it at 7.3;

[0029] D. Add the ...

Embodiment 3

[0031] A preparation method of a special detergent for sewers, the composition of the raw materials consists of the following proportions in parts by weight:

[0032] 10 parts of baking soda, 10 parts of acetic acid, 13 parts of sorbitan fatty acid ester, 5 parts of glycerin, 3 parts of hydrochloric acid, 7 parts of sodium laureth sulfate, 9 parts of cocamidopropyl betaine parts, 4 parts of methylisothiazolinone, 3 parts of green tea essence, and 120 parts of deionized water.

[0033] Its preparation method is as follows:

[0034] A. At room temperature, add hydrochloric acid to deionized water to dilute to 1.1%;

[0035] B. Add baking soda to acetic acid for mixing, and set the temperature to 28°C;

[0036] C. Mix and stir sorbitan fatty acid ester, glycerin, sodium laureth sulfate, cocamidopropyl betaine and methylisothiazolinone, and then add steps A and B The mixture in is stirred evenly, and the pH value is adjusted by acetic acid to keep it at 7.4;

[0037] D. Add th...

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PUM

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Abstract

The invention relates to a preparation method of a detergent special for sewers. The detergent is prepared from, by weight, 10-15 parts of baking soda, 5-10 parts of acetic acid, 6-15 parts of sorbitan fatty acid ester , 4-5 parts of glycerol, 1-3 parts of hydrochloric acid, 3-8 parts of sodium laureth sulfate, 6-10 parts of cocoamidopropyl betaine, 3-4 parts of methylisothiazolinone, 3-5 parts of green tea extract, and 100-120 parts of deionized water. According to the preparation method, the raw materials for preparing the detergent are easy to obtain, the preparation method is simple and needs low preparation method, the detergent has good foaming effect and high cleaning and rust preventing capacity, is mild, fine, smooth, fragrant and not sticky, has wide application range, and is capable of cleaning the sewers effectively while burnishing and deodorizing.

Description

technical field [0001] The invention relates to a preparation method of a special detergent for sewers. Background technique [0002] In daily life, the sewer is always full of foul smell, and the cleaning is not clean. The usual decontamination cleaner cannot achieve good results, and some corrosive cleaners may even damage the safety of the pipeline, so there is an urgent need for a decontamination agent , to solve existing problems. Contents of the invention [0003] The purpose of the present invention is to provide a kind of preparation method of special detergent for sewer in order to overcome above deficiencies. [0004] The technical scheme of the present invention includes: a preparation method of special detergent for sewer, the raw material components are composed of the following proportions in parts by weight: 10-15 parts of baking soda, 5-10 parts of acetic acid, sorbitan fatty acid 6-15 parts of esters, 4-5 parts of glycerin, 1-3 parts of hydrochloric acid...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C11D1/28C11D3/10C11D3/04C11D3/20C11D3/32C11D3/34C11D3/382C11D3/60
CPCC11D1/28C11D3/042C11D3/10C11D3/2065C11D3/2079C11D3/2093C11D3/32C11D3/3481C11D3/382
Inventor 冯新平
Owner 冯新平
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