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用于生物和化学战剂净化的环保可剥离活性纳米复合薄膜

Eco-Friendly Peelable Active Nanocomposite Films Designed for Biological and Chemical Warfare Agents Decontamination.

作者信息

Toader Gabriela, Diacon Aurel, Rotariu Traian, Alexandru Mioara, Rusen Edina, Ginghină Raluca Elena, Alexe Florentina, Oncioiu Ramona, Zorila Florina Lucica, Podaru Alice, Moldovan Andreea Elena, Pulpea Daniela, Gavrilă Ana Mihaela, Iordache Tanta Verona, Șomoghi Raluca

机构信息

Military Technical Academy "Ferdinand I", 39-49 George Cosbuc Boulevard, 050141 Bucharest, Romania.

Faculty of Applied Chemistry and Materials Science, University 'Politehnica' of Bucharest, 1-7 Gh. Polizu Street, 011061 Bucharest, Romania.

出版信息

Polymers (Basel). 2021 Nov 19;13(22):3999. doi: 10.3390/polym13223999.

Abstract

In the context of imminent threats concerning biological and chemical warfare agents, the aim of this study was the development of a new method for biological and chemical decontamination, employing non-toxic, film-forming, water-based biodegradable solutions, using a nano sized reagent together with bentonite as trapping agents for the biological and chemical contaminants. Bentonite-supported nanoparticles of Cu, TiO, and Ag were successfully synthesized and dispersed in a polyvinyl alcohol ()/glycerol () aqueous solution. The decontamination effectiveness of the proposed solutions was evaluated by qualitative and quantitative analytical techniques on various micro-organisms, with sulfur mustard () and dimethyl methylphosphonate () as contaminants. The results indicate that the peelable active nanocomposite films can be successfully used on contaminated surfaces to neutralize and entrap the hazardous materials and their degradation products. Mechanical and thermal characterization of the polymeric films was also performed to validate the decontamination solution's potential as peelable-film generating materials. The removal efficacy from the contaminated surfaces for the tested micro-organisms varied between 93% and 97%, while for the chemical agent , the highest decontamination factor obtained was 90.89%. was almost completely removed from the contaminated surfaces, and a decontamination factor of 99.97% was obtained.

摘要

在生物和化学战剂构成紧迫威胁的背景下,本研究的目的是开发一种新的生物和化学去污方法,采用无毒、成膜、水基可生物降解溶液,使用纳米级试剂与膨润土作为生物和化学污染物的捕获剂。成功合成了负载膨润土的铜、二氧化钛和银纳米颗粒,并将其分散在聚乙烯醇()/甘油()水溶液中。以芥子气()和甲基膦酸二甲酯()作为污染物,通过定性和定量分析技术对各种微生物评估了所提出溶液的去污效果。结果表明,可剥离活性纳米复合膜可成功用于污染表面,以中和并捕获有害物质及其降解产物。还对聚合物膜进行了机械和热表征,以验证去污溶液作为可剥离膜生成材料的潜力。对于测试的微生物,从污染表面的去除效率在93%至97%之间变化,而对于化学剂,获得的最高去污系数为90.89%。几乎从污染表面完全去除,并获得了99.97%的去污系数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10ea/8620509/26485989ae77/polymers-13-03999-g001a.jpg

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