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New Approach To Produce Water Free of Bacteria Viruses and Halogens in a Recyclable System

机译:在可循环系统中生产不含细菌病毒和卤素的水的新方法

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摘要

The antimicrobial activity of a new cross-linked N-halamine polymer against bacteria and viruses was evaluated. The polymer achieved a 9-log10 reduction of bacteria (both Escherichia coli and Staphylococcus aureus) in 1.5 h and a 5-log10 reduction of bacteriophage PRD1 in 3 h. At the same time, the ability of the nonhalogenated polymer to trap halide ions was examined. The polymer was incorporated into a multifiltration system to study the ability to produce water free of bacteria, viruses, and halide ions. The antimicrobial activity, useful lifetime, halide ion level, and recycling possibilities of the system were quantified on a laboratory scale. A design for a large-scale multifiltration system based on this polymer is proposed.
机译:评价了一种新型的交联N-卤胺聚合物对细菌和病毒的抗菌活性。该聚合物在1.5小时内将细菌(大肠杆菌和金黄色葡萄球菌)减少了9log10,在3小时内使噬菌体PRD1减少了5-log10。同时,检查了非卤代聚合物捕获卤离子的能力。将该聚合物掺入多滤系统中,以研究生产不含细菌,病毒和卤离子的水的能力。在实验室规模上对系统的抗菌活性,使用寿命,卤离子水平和循环利用可能性进行了量化。提出了基于这种聚合物的大规模多滤系统的设计。

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