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首页> 外文期刊>PLoS One >Exploring the antimicrobial properties of dark-operating ceramic-based nanocomposite materials for the disinfection of indoor air
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Exploring the antimicrobial properties of dark-operating ceramic-based nanocomposite materials for the disinfection of indoor air

机译:探讨深运行陶瓷基纳米复合材料的抗微生物性能,以便为室内空气消毒

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摘要

As people spend more and more time inside, the quality of indoor air becomes crucial matter. This study explores the germicidal potential of two dark-operating germicidal composite materials designed to be applied for the indoor air disinfection under flow conditions. The first material, MnO 2 /AlPO 4 /γ-Al 2 O 3 beads, is a donor-acceptor interactive composite capable of creating hydroxyl radicals HO?. The second one is a ZnO/γ-Al 2 O 3 material with intercropped hexagons on its surface. To determine the antimicrobial efficiency of these materials in life-like conditions, a pilot device was constructed that allows the test of the materials in dynamic conditions and agar diffusion inhibitory tests were also conducted. The results of the tests showed that the MnO 2 /AlPO 4 /γ-Al 2 O 3 material has a germicidal effect in static conditions whereas ZnO/γ-Al 2 O 3 does not. In dynamic conditions, the oxidizing MnO 2 /AlPO 4 /γ-Al 2 O 3 material is the most efficient when using low air speed whereas the ZnO/γ-Al 2 O 3 one becomes more efficient than the other materials when increasing the air linear speed. This ZnO/γ-Al 2 O 3 dark-operating germicidal material manifests the ability to proceed the mechanical destruction of bacterial cells. Actually, the antimicrobial efficiency of materials in dynamic conditions varies regarding the air speed through the materials and that static tests are not representative of the behavior of the material for air disinfection. Depending on the conditions, the best strategy to inactivate microorganisms changes and abrasive structures are a field that needs further exploration as they are in most of the conditions tested the best way to quickly decrease the number of microorganisms.
机译:随着人们在内部花费越来越多的时间,室内空气的质量变得至关重要。本研究探讨了旨在在流动条件下施加适用于室内空气消毒的两种深色杀菌复合材料的杀菌潜力。第一材料,MNO 2 / ALPO 4 /γ-Al 2 O 3珠粒,是能够产生羟基自由基HO的供体受体相互作用的复合物。第二个是ZnO /γ-Al 2 O 3材料,其表面上具有间隙六边形。为了确定这些材料在生活条件下这些材料的抗微生物效率,构建了一种试验装置,其允许在动态条件下测试材料,并且还进行琼脂扩散抑制试验。试验结果表明,MNO 2 / ALPO 4 /γ-Al 2 O 3材料在静态条件下具有杀菌作用,而ZnO /γ-Al 2 O 3则不存在杀菌作用。在动态条件下,氧化MnO 2 / AlPO 4 /γ-Al 2 O 3材料是当使用低空气速度时最有效的,而ZnO /γ-Al 2 O 3在增加空气时比其他材料变得更有效线速。该ZnO /γ-Al 2 O 3黑色操作杀菌材料表现出进行细菌细胞机械破坏的能力。实际上,动态条件中材料的抗微生物效率在于通过材料的空气速度而变化,并且静态试验不是代表空气消毒材料的行为。根据条件,灭活微生物的最佳策略变化和磨料结构是一种需要进一步探索的领域,因为它们在大多数条件下测试了快速降低微生物数量的最佳方式。

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