Preparation method of disinfection and sterilization mixed gas

A disinfection and mixed gas technology, applied in botany equipment and methods, disinfectants, biocides, etc., can solve the problems of toxicity, high price and cost, and affect the competitiveness of enterprises

Inactive Publication Date: 2022-05-31
严鹏
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In industrial production, it is necessary to disinfect the produced items. Now there are more and more gas disinfection applications. At present, there are many types of professional disinfection and sterilization gases on the market, with different disinfection and sterilization performances, including high, medium and low efficiency. The high concentration of high-efficiency disinfection and sterilization often affects the competitiveness of enterprises. At the same time, the existing products have low work efficiency, most of them are poisonous, and have certain corrosive and irritating odors, which are harmful to the disinfection and sterilization. There is a certain damage to the items, which will cause unnecessary losses. Therefore, there is an urgent need for a method for preparing a mixed gas for disinfection and sterilization to solve the above problems.

Method used

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preparation example Construction

[0017] A method for preparing a mixed gas for disinfection and sterilization, comprising ethylene oxide, chlorine dioxide, phosphine, carbon dioxide, dichlorodifluoromethane and methyl bromide, the mass-number ratio of the above-mentioned various components is: ethylene oxide Alkanes 10%~35%, Chlorine Dioxide 0.1%~2%, Phosphine 0.1%~2%, Carbon Dioxide 50%~88%, Dichlorodifluoromethane 0.1%~3%, Bromethane 0.1%~4% , the specific operation steps are as follows:

[0018] S1: Fill and concatenate the ethylene oxide, chlorine dioxide and phosphine in the storage tank or gas cylinder in proportion to the gas cylinder or a container that meets the corresponding safety conditions;

[0019] S2: The liquid carbon dioxide is vaporized into gaseous carbon dioxide;

[0020] S3: Vaporize dichlorodifluoromethane and methyl bromide in proportion to make it vaporize into gas dichlorodifluoromethane and gas bromide;

[0021] S4: Fill the vaporized gas carbon dioxide, gas dichlorodifluoromethane...

Embodiment 1

[0024] Take 20 parts of ethylene oxide, 0.5 parts of chlorine dioxide and 0.5 parts of phosphine and fill them in gas cylinders or containers that meet the corresponding safety conditions; vaporize liquid carbon dioxide into gaseous carbon dioxide and take 78 parts of gaseous carbon dioxide for use; Vaporize 0.5 part of dichlorodifluoromethane and 0.5 part of bromomethane to make it into gas dichlorodifluoromethane and gas bromide; Methane is filled in gas cylinders or containers that meet the corresponding safety conditions, and mixed with ethylene oxide, chlorine dioxide, and phosphine.

Embodiment 2

[0026] Take 30 parts of ethylene oxide, 0.4 parts of chlorine dioxide and 0.6 parts of phosphine and fill them in a gas cylinder or a container that meets the corresponding safety conditions; vaporize the liquid carbon dioxide into gaseous carbon dioxide and take 68 parts of gaseous carbon dioxide for use; Vaporize 0.6 parts of dichlorodifluoromethane and 0.4 parts of methyl bromide to vaporize them into gas dichlorodifluoromethane and gas bromide; Methane is filled in gas cylinders or containers that meet the corresponding safety conditions, and mixed with ethylene oxide, chlorine dioxide, and phosphine.

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PUM

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Abstract

The invention discloses a disinfection and sterilization mixed gas preparation method which comprises 10%-35% of ethylene oxide, 0.1%-2% of chlorine dioxide, 0.1%-2% of phosphine, 50%-88% of carbon dioxide, 0.1%-3% of dichlorodifluoromethane and 0.1%-4% of brominated methane, and the specific operation steps are as follows: filling and converging ethylene oxide, chlorine dioxide and phosphine in a storage tank or a gas cylinder into the gas cylinder in proportion; vaporizing the liquid carbon dioxide into gas carbon dioxide; the method comprises the following steps: taking dichlorodifluoromethane and methane bromide according to a ratio, and vaporizing the dichlorodifluoromethane and the methane bromide into gas dichlorodifluoromethane and gas methane bromide; filling the vaporized gas carbon dioxide, the vaporized gas dichlorodifluoromethane and the vaporized gas brominated methane into a gas cylinder through filling confluence, so that the vaporized gas carbon dioxide, the vaporized gas dichlorodifluoromethane and the vaporized gas brominated methane are mixed with ethylene oxide, chlorine dioxide and phosphorane; and checking after complete mixing, and warehousing after qualification. Compared with the prior art, the sterilizing agent has the advantages of good sterilizing effect, safety, stability, environmental protection and no damage to articles.

Description

technical field [0001] The invention relates to the technical field of sterilization and disinfection, in particular to a method for preparing a mixed gas for disinfection and sterilization. Background technique [0002] In industrial production, it is necessary to disinfect the produced items. Now there are more and more gas disinfection applications. At present, there are many types of professional disinfection and sterilization gases on the market, with different disinfection and sterilization performances, including high, medium and low efficiency. The high concentration of high-efficiency disinfection and sterilization often affects the competitiveness of enterprises. At the same time, the existing products have low work efficiency, most of them are poisonous, and have certain corrosive and irritating odors, which are harmful to the disinfection and sterilization. The article has certain damage, can cause unnecessary loss, therefore, needs a kind of disinfection and ste...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01N59/26A01N59/00A01N43/20A01N25/22A01P1/00
CPCA01N59/26A01N59/00A01N43/20A01N25/22
Inventor 严鹏蒋艳李云松丁靖岩严成华张卫明张琼高春仙
Owner 严鹏
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