Chlorine-containing compound disinfectant detergent and preparation method thereof

A technology of detergent and mixture, which is applied in the field of compound disinfectant detergent and its preparation, can solve the problems of stability discount, failure to meet the requirements of the Ministry of Health, and easy deliquescence, etc., and achieve improved stability, good apparent density, and high cleaning rate high effect

Active Publication Date: 2017-05-17
李心
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, the biggest disadvantage of sodium dichloroisocyanurate is that it is easy to deliquesce, especially in an alkaline environment, the decomposed hypochlorous acid undergoes an acid-base neutralization reaction, which leads to a great reduction in the stability of available chlorine in chlorine-containing disinfection compound preparations
Especially after the implementation of the 2002 edition of the "Disinfection Technical Regulations", sodium dichloroisocyanurate was used as the main ingredient for disinfection and sterilization to prepare a compound disinfectant detergent containing surfactants. Because the drop rate of available chlorine exceeded 10%, it did not meet the requirements. The Ministry of Health requires that all products be withdrawn from the market

Method used

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  • Chlorine-containing compound disinfectant detergent and preparation method thereof
  • Chlorine-containing compound disinfectant detergent and preparation method thereof
  • Chlorine-containing compound disinfectant detergent and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1-8 2

[0049] Preparation and Stability Evaluation of Example 1-8 Sodium Dichloroisocyanurate Compound Disinfectant Detergent

[0050] Step 1: Weigh dodecylbenzenesulfonic acid, sodium dodecylbenzenesulfonate, sodium carbonate, and sodium sulfate according to the formula in Table 1, mix them evenly, and pass through a 20-mesh sieve to obtain mixture A;

[0051] Step 2: Weigh sodium dichloroisocyanurate, sodium bicarbonate, and non-phosphorus water-soluble solid acid according to the formula in Table 1 and mix them uniformly to obtain mixture B;

[0052] Step 3: mixing the mixture A and the mixture B evenly to obtain a sodium dichloroisocyanurate compound disinfecting detergent;

[0053] Table 1

[0054]

[0055]

[0056] Experimental result shows, do not add the embodiment 1-2 of sodium bicarbonate and citric acid, when reducing sodium carbonate consumption, add the embodiment 3-4 of a small amount of sodium bicarbonate and add the embodiment 8 of sodium bicarbonate and citric...

Embodiment 9-15 2

[0058] Preparation and Stability Evaluation of Example 9-15 Sodium Dichloroisocyanurate Compound Disinfectant Detergent

[0059] Step 1: Weigh dodecylbenzenesulfonic acid, sodium dodecylbenzenesulfonate, sodium carbonate, and sodium sulfate according to the formula in Table 2, mix evenly, and pass through a 20-mesh sieve to obtain mixture A;

[0060] Step 2: Weigh sodium dichloroisocyanurate, sodium bicarbonate, and non-phosphorus water-soluble solid acid according to the formula in Table 2 and mix them uniformly to obtain mixture B;

[0061] Step 3: mix the mixture A and the mixture B evenly to obtain the sodium dichloroisocyanurate compound disinfectant detergent;

[0062] Table 2

[0063]

[0064]

[0065] / : Untested;

[0066] Experimental result shows, reduce the consumption of dodecylbenzene sulfonic acid to 2-3% embodiment 11-15, dry powder stability is qualified, but do not add the embodiment 14 and 15 of citric acid, available chlorine is dissolved in water af...

Embodiment 16 2

[0068] The preparation of embodiment 16 sodium dichloroisocyanurate composite disinfection detergent

[0069] Take by weighing 2kg dodecylbenzenesulfonic acid, 20kg sodium dodecylbenzenesulfonate (60%), 20kg sodium carbonate and 25kg sodium sulfate and mix uniformly, cross a 20 mesh sieve to obtain mixture A; weigh 10kg dichloroisocyanate Sodium urate, 15kg sodium bicarbonate and 8kg lemon are mixed homogeneously to obtain mixture B; Mixture A is mixed homogeneously with mixture B to obtain sodium dichloroisocyanurate composite disinfectant detergent, the disinfectant detergent dry powder stability, stability in water, The cleaning rate and apparent density are both qualified.

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Abstract

The invention belongs to the technical field of disinfectant detergency and particularly relates to a chlorine-containing compound disinfectant detergent which takes sodium dichloroisocyanurate as a main material of disinfection and has relatively stable effective chlorine content and a preparation method of the chlorine-containing compound disinfectant detergent. The sodium dichloroisocyanurate compound disinfectant detergent is prepared from components in percentage by mass as follows: 5%-15% of sodium dichloroisocyanurate, 10%-15% of an anionic surfactant, 10%-25% of sodium carbonate, 10%-15% of sodium bicarbonate, 3%-10% of non-phosphorus water-soluble solid acid and the balance of filler, the moisture content of sulfonated matter is controlled to be not higher than 7%, the decrease rate of the effective chlorine content is lower than 10% and conforms to the requirement of 2002 version in Ministry of Public Health, and the disinfectant detergent is high in deterging ate and good in apparent density.

Description

technical field [0001] The invention belongs to the technical field of disinfection and washing, and in particular relates to a composite disinfection detergent which uses sodium dichloroisocyanurate as the main material for disinfection and sterilization and has a relatively stable effective chlorine content and a preparation method thereof. Background technique [0002] Sodium dichloroisocyanurate is a high-efficiency, low-toxicity, and broad-spectrum disinfectant recognized by various countries. By releasing hypochlorous acid, it denatures bacterial proteins, changes membrane permeability, interferes with the physiological and biochemical processes of enzyme systems, and affects DNA synthesis. cause rapid death of pathogenic bacteria. Sodium dichloroisocyanurate can not only strongly kill various pathogenic microorganisms such as bacterial spores, bacterial propagules, and fungi, but also has a special effect on hepatitis viruses. In addition, it can kill sulfuric acid re...

Claims

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Application Information

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Patent Type & AuthorityApplications(China)
IPC IPC(8): C11D1/22C11D1/37C11D3/60C11D3/48C11D3/28C11D3/10C11D3/04C11D3/20A01N43/64A01P1/00
CPCA01N43/64C11D1/22C11D1/37C11D3/046C11D3/10C11D3/2086C11D3/28C11D3/485
Inventor李心
Owner李心