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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Dual role of chemically functionalized activated carbon fibres: investigation of parameters influencing the degradation of organophosphorus compounds and antibacterial behaviour
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Dual role of chemically functionalized activated carbon fibres: investigation of parameters influencing the degradation of organophosphorus compounds and antibacterial behaviour

机译:化学官能化活性炭纤维的双重作用:影响有机磷化合物降解和抗菌性能的参数研究

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BACKGROUND An efficient material possessing both photocatalytic and antimicrobial properties is necessary to remediate contaminated water resources. In the present study, zinc oxide nanorods (ZnO) have been impregnated on activated carbon fibres (ACF) to develop a heterogeneous photocatalytic system for the degradation of an organophosphorus compound, taking Malathion as a model pollutant, and to investigate the antibacterial efficiency of the former. RESULTS The efficiency of Malathion removal varies with catalyst dosage, initial concentration of Malathion, and also depends on the interference from inorganic ions such as chloride, nitrate, sulfate, phosphate and bicarbonate in the contaminated solution. The role played by the highly active radicals in the degradation process is inevitable, confirmed by the addition of radical scavengers during the reaction. Hydroxyl radicals were found to be the most active species accountable for the degradation of Malathion. Moreover, OH trapping experiments conducted by measuring photoluminescence (PL) intensity concluded that greater amounts of OH radicals are generated with increase in time. Reusability and long-term stability of the composite was validated for up to five degradation cycles. The developed composite also possesses microbial decontamination capabilities, verified by studying antibacterial assay against Gram positive Staphylococcus aureus and Gram negative strains of Pseudomonas aeruginosa and Klebsiella Pneumoniae. CONCLUSION Dual functional and reusable ZnO rods/ACF composites were developed using a simple, low cost hydrothermal method, and could be used as a potential candidate for water treatment applications. (c) 2018 Society of Chemical Industry
机译:背景技术需要具有光催化和抗微生物性质的有效材料来修复受污染的水资源。在本研究中,氧化锌纳米棒(ZnO)已浸渍在活性炭纤维(ACF)上,以开发异质光催化系统,用于使有机磷化合物的降解,作为模型污染物,并研究抗菌效率以前的。结果催化剂剂量,初始浓度的马拉硫胺,初始浓度,初始浓度,也取决于污染的溶液中氯化物,硝酸盐,硫酸盐,磷酸盐和碳酸氢盐的干扰,还取决于无机离子的干扰。通过在反应过程中添加自由基清除剂来证实,在降解过程中高度活跃的激进作用的作用是不可避免的。发现羟基自由基是最活跃的物种,对恶性降解负责。此外,通过测量光致发光(PL)强度进行的OH捕获实验得出结论,随着时间的推移而产生较大量的OH基团。复合材料的可重用性和长期稳定性验证了多达五个降解循环。开发的复合材料还具有微生物去污能力,通过研究抗菌测定对革兰氏阳性金黄色葡萄球菌和克·阴性菌和Klebsiella肺炎的革兰氏阴性菌株来验证。结论采用简单,低成本的水热法开发了双函数和可重复使用的ZnO棒/ ACF复合材料,可用作水处理应用的潜在候选者。 (c)2018化学工业协会

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