Composite type protective material for comprehensive toxicant prevention

A protective material and composite technology, which is applied in the field of anti-virus materials, can solve the problems of the limited use of the neighborhood, the limited PPC protective spectrum, the inconvenience of production and use, etc., to overcome application limitations, reasonable design, and improved use. horizontal effect

Inactive Publication Date: 2014-04-16
SHANXI XINHUA CHEM
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, at present, there are few researches on the protection of penetrating poisons at home and abroad, and the PPC protection spectrum put into use is relatively limited, which can only meet the protection of perfluoroisobutylene. In my country, the developed PPC is used in protective equipment At the same time, it is packed in layers with the classic poison protection material, that is, ASZM-T impregnated carbon, so as to achieve the purpo

Method used

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  • Composite type protective material for comprehensive toxicant prevention

Examples

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Comparison scheme
Effect test

Embodiment 1

[0027] A composite protective material for comprehensive anti-virus, including activated carbon as a carrier and an impregnating agent adsorbed by activated carbon, the impregnating agent includes 8% (weight) Cu, 2% (weight) Mo, 0.7% (weight) Zn, 3% (weight) active ingredient Ag, 8% (weight) polyamine-based compound TEDA.

[0028] The preparation method is as follows:

[0029] (1) Add the impregnating agent of the above active components, that is, calculate the required weights of basic copper carbonate, zinc carbonate, ammonium molybdate and silver nitrate according to the content of the active components, add it into ammonia water, heat and melt to prepare Impregnation solution, keep the temperature of the mixed solution at 70°C, wait until the impregnating agent is fully dissolved, use the same volume impregnation method, mix it with activated carbon evenly, and let it stand for 2 hours;

[0030] (2) The fluidized bed activation method is adopted, the activation temperatur...

Embodiment 2

[0033] A composite protective material for comprehensive anti-virus, comprising activated carbon as a carrier and an impregnating agent adsorbed by activated carbon, the impregnating agent comprising 10% by weight of Cu, 0.5% by weight of Mo, 0.4% by weight Zn, 3% (weight) active ingredient Ag, 5% (weight) polyamine-based compound TEDA.

[0034] The preparation method is as follows:

[0035] (1) Add the impregnating agent of the above active components, that is, calculate the required weights of basic copper carbonate, zinc carbonate, ammonium molybdate and silver nitrate according to the content of the active components, add it into ammonia water, heat and melt to prepare Impregnation solution, keep the temperature of the mixed solution at 80°C, wait until the impregnating agent is fully dissolved, use the same volume impregnation method, mix it with activated carbon evenly, and let it stand for 1.5h;

[0036] (2) The fluidized bed activation method is adopted, the activatio...

Embodiment 3

[0039] A composite protective material for comprehensive anti-virus, including activated carbon (coconut shell crushed carbon) as a carrier and an impregnating agent adsorbed by activated carbon, the impregnating agent includes 7% (weight) of Cu, 1% (weight) of Mo , 1% (weight) of Zn, 0.6% (weight) of active ingredient additive Ag, 10% (weight) of polyamine compound TEDA.

[0040] The preparation method is as follows:

[0041] (1) Add the impregnating agent of the above active components, that is, calculate the required weights of basic copper carbonate, zinc carbonate, ammonium molybdate and silver nitrate according to the content of the active components, add it into ammonia water, heat and melt to prepare Impregnation solution, keep the temperature of the mixed solution at 60°C, wait until the impregnating agent is fully dissolved, use the same volume impregnation method, mix it with activated carbon evenly, and let it stand for 1 hour;

[0042] (2) The fluidized bed activ...

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Abstract

The invention relates to a toxicant prevention material, particularly to a composite type protective material for comprehensive toxicant prevention. The material comprises activated carbon serving as a carrier and an impregnant adsorbed by the activated carbon, wherein the impregnant comprises 7%-10% (by weight) of Cu, 1%-2% (by weight) of Mo, 0.6%-3% (by weight) of an active component additive Ag, 0.4%-1% (by weight) of Zn and 5%-10% (by weight) of a multi-amine compound TEDA (triethylene diamine). The material is reasonable in design, and the composite type protective material capable of effectively protecting against various toxicants such as classic toxicants of HCN (hydrogen cyanide) and CNCL (cyanogen chloride), a penetrating toxicant of perfluoroisobutylene and the like, is developed.

Description

technical field [0001] The invention relates to an antivirus material, in particular to a compound protective material for comprehensive antivirus. Background technique [0002] Protective impregnated activated carbon has been continuously updated with the development of the situation. After entering the 1990s, penetrating agents represented by perfluoroisobutylene (PFIB) have attracted people's attention. [0003] However, at present, there are few researches on the protection of penetrating poisons at home and abroad, and the PPC protection spectrum put into use is relatively limited, which can only meet the protection of perfluoroisobutylene. In my country, the developed PPC is used in protective equipment At the same time, it is packed in layers with the classic poison protection material, namely ASZM-T impregnated carbon, so as to achieve the purpose of effective protection against classic poison and penetrating poison at the same time. This kind of filling method has h...

Claims

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Application Information

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IPC IPC(8): A62D3/30
Inventor 金彦任赵婷周闯王波裴佩黄英张金凤范斌杰邢浩洋王钢黄振兴
Owner SHANXI XINHUA CHEM
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