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Hand disinfectant and production method thereof

A technology of hand sanitizer and production method, applied in the direction of disinfectant, botany equipment and method, biocide, etc., can solve problems such as peroxide application defects, methemoglobinemia, teratogenicity, etc., and achieve good promotion Application prospect, good bactericidal effect, remarkable effect

Inactive Publication Date: 2011-08-31
无锡乔优科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Chlorine dioxide is a new type of disinfectant developed in recent years. It is a broad-spectrum fungicide, but many animal experiments have shown that long-term use can cause cancer and deformity. Chlorine is absorbed in the form of chloride ions and chlorine dioxide. Chlorine dioxide can oxidize hemoglobin and convert it into non-pigmented methemoglobin, causing methemoglobinemia in animals
[0009] According to the query of relevant information, only the disinfection products compounded with similar chemical substances are found, such as the mixture of peracetic acid (10%) and peroxyoctanoic acid (10%), peracetic acid (10%) and hydrogen peroxide (10%) %), because this type of formulation is still using the same type of chemical substance mixing, it still cannot get rid of the application defect of peroxide

Method used

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  • Hand disinfectant and production method thereof
  • Hand disinfectant and production method thereof
  • Hand disinfectant and production method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0023] Embodiment one: a kind of production method of hand sanitizer, adopt following process steps:

[0024] (1) Add 0.05 kg of glycerol to 0.1 kg of hexamethylenetetramine, then add 0.05 kg of sucrose ester, mix and stir for 2 hours at 30°C and a pressure of 100KPa, and the speed of the mixer is 110 rpm; Add to the reaction kettle after stirring;

[0025] (2) 0.02 kilogram of lauryl dimethyl ammonium bromide is joined in the reactor; Then 0.05 kilogram of Virahol, 0.05 kilogram of Tween 80 and 99.68 kilograms of pure water are mixed and added in the reactor, at 30 Stir for 6 hours under the condition of ℃ and pressure of 100KPa, and the speed of the mixer is 510 rpm;

[0026] (3) After the material in the reaction kettle was left to age for 49 hours, after the content of the active ingredient was detected to be qualified, it was poured into a packaging barrel to obtain the finished hand sanitizer. The active ingredient content should be (in mass percent): 0.1% of hexamethy...

Embodiment 2

[0028] Embodiment two: a kind of production method of hand sanitizer adopts following processing steps:

[0029] (1) Add 0.5 kg of glycerol to 0.25 kg of hexamethylenetetramine, then add 0.5 kg of sucrose ester, mix and stir for 1.5 hours at 25°C and a pressure of 101KPa, and the speed of the mixer is 105 rpm; Add to the reaction kettle after stirring;

[0030] (2) 0.1 kilogram of lauryl dimethyl ammonium bromide is joined in the reactor; Then 0.5 kilogram of Virahol, 0.5 kilogram of Tween 80 and 97.65 kilograms of pure water are mixed and added in the reactor, at 25 Stir for 5 hours under the conditions of ℃ and pressure of 101KPa, and the speed of the mixer is 505 rpm;

[0031] (3) After the material in the reaction kettle was left to age for 48 hours, after the content of the active ingredient was detected to be qualified, pour it into a packaging barrel to obtain the finished hand sanitizer. The detected active ingredient content is (unit: mass percentage): 0.25% of hexa...

Embodiment 3

[0032] Embodiment three: a kind of production method of hand sanitizer, adopt following process steps:

[0033] (1) Add 1 kg of glycerol to 0.5 kg of hexamethylenetetramine, then add 1 kg of sucrose ester, mix and stir for 1 hour at 20°C and a pressure of 100KPa, and the speed of the mixer is 100 rpm; Add to the reaction kettle after stirring;

[0034](2) 0.2 kilogram of lauryl dimethyl ammonium bromide is joined in the reactor; Then 1 kilogram of Virahol, 1 kilogram of Tween 80 and 95.3 kilograms of pure water are mixed and then added in the reactor, at 20 Stir for 4 hours under the condition of ℃ and pressure of 100KPa, and the speed of the mixer is 500 rpm;

[0035] (3) After the material in the reaction kettle was left to age for 47 hours, after the content of the active ingredient was detected to be qualified, it was poured into a packaging barrel to obtain the finished hand sanitizer. The detected active ingredient content is (unit is mass percentage): 0.5% of hexameth...

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Abstract

The invention relates to a hand disinfectant and a production method thereof. The method comprises the following steps: adding glycerin into hexamine, and adding sucrose ester; stirring and adding the mixture into a reaction kettle; adding dodecyl dimethyl ammonium bromide, isopropanol, tween-80 and purified water into the reaction kettle; performing stirring, standing and aging; and detecting and pouring the mixture into a packaging barrel to obtain the finished product. The hand disinfectant is safe to a human body, non-toxic, harmless, degradable, simple to use, non-combustible and non-explosible, safe and convenient to transport and save, non-stimulating and harmless to hand. The practical using cost of the hand disinfectant is low, and secondary harm is prevented; and according to the study result and trial feedback, the product not only has a good bacterial effect, but also realizes a nourishing and moisturizing effect on the hand skin.

Description

technical field [0001] The invention relates to a hand disinfectant and a production method thereof, in particular to a professional disinfectant for production operators in food, pharmaceutical and other related industries, or as a disinfectant for daily family life Background technique [0002] Most of the current hand disinfection products use a single chemical raw material as the main component. Although the disinfection effect can be guaranteed, it may cause secondary poisoning to the human body after disinfection. [0003] For example, the most commonly used disinfectants are mostly chlorine, bromine, iodine or corresponding compounds that can release halogens. Chlorine is the most used disinfectant of this type, and it is widely used due to the availability of raw materials, easy preparation, cheap price and reliable bactericidal effect. But this type of disinfectant has irritating odor, is irritating to skin, is corrosive, and has poor stability, and the duration of...

Claims

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Application Information

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IPC IPC(8): A01N43/90A01N43/16A01N33/12A01P1/00A01P3/00A61K8/86A61K8/60A61K8/49A61K8/40A61K8/34A61Q19/10
Inventor 高瞻沙正茂孙雯
Owner 无锡乔优科技有限公司
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