Nano-NiO as a photocatalyst in antimicrobial activity of infected water using laser induced photo-catalysis

M. Gondal, M. A. Dastageer, A. Khalil
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引用次数: 3

Abstract

Nano NiO photo catalyst was synthesized by sol gel method and it is used as a photo catalyst in conjunction with 355 nm laser radiation in the process of disinfecting water infected with Escherichia coli microorganism. When synthesized nano-NiO material is used as a photo catalyst, a bacteria decay rate constant of 0.35 min-1 and this rate constant is higher than the bacteria decay rate constant of 0.24 minutes−1 for TiO2 as a photo catalyst under same catalytic concentration and laser pulse energy. From the TEM study, a grain size as low as 20–40 nm was observed and the absorption study showed a band gap of 3.85 eV. The dependence of depletion rate of bacterial count in the infected water on the nano-NiO concentration and the irradiating laser pulse energy were carried out.
激光诱导光催化纳米nio作为光催化剂对受感染水的抑菌活性研究
采用溶胶凝胶法合成纳米NiO光催化剂,并将其作为光催化剂与355nm激光辐射配合用于对感染大肠杆菌微生物的水进行消毒。当合成的纳米nio材料作为光催化剂时,细菌的衰变速率常数为0.35 min-1,在相同的催化浓度和激光脉冲能量下,该速率常数高于TiO2作为光催化剂的细菌衰变速率常数0.24 min-1。透射电镜观察到晶粒尺寸低至20-40 nm,吸收研究显示带隙为3.85 eV。研究了纳米nio浓度和激光脉冲辐照能量对受感染水中细菌数量损耗率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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