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Solar light-driven complete mineralization of aqueous gram-positive and gram-negative bacteria with ZnO photocatalyst

机译:ZnO光催化剂在太阳光驱动下革兰氏阳性和革兰氏阴性细菌的完全矿化

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摘要

ZnO nanoparticles have been effectively used in water disinfection from two common types of gram-positive (Enterococcus faecium) and gram-negative (Proteus mirabilis) bacteria under simulated solar radiations by inactivation. Complete mineralization of organic contents that leach out of inactivated bacteria has also been achieved leaving no soluble organic matter in water. Bacterial inactivation and complete mineralization have been confirmed by plate counting, high performance liquid chromatography and total organic content measurement. Effects of different reaction parameters (pH, temperature, bacterial concentration, reaction time and ZnO catalyst loading) have all been studied. Control experiments with Cut-off filters confirm the role of the UV tail in solar simulated light in the photocatalytic process. The results highlight the feasibility of using ZnO photocatalyst in complete disinfection of water from both hazardous Enterococcus and Proteus mirabilis bacteria, leaving no organic matters after degradation.
机译:ZnO纳米颗粒已在模拟太阳辐射下通过灭活作用,有效地用于两种常见类型的革兰氏阳性(粪肠球菌)和革兰氏阴性(变形杆菌)细菌的水消毒。还可以实现从灭活细菌中浸出的有机成分的完全矿化,而不会在水中留下可溶性有机物。细菌灭活和完全矿化已通过平板计数,高效液相色谱法和总有机物含量测量得到证实。已经研究了不同反应参数(pH,温度,细菌浓度,反应时间和ZnO催化剂负载量)的影响。使用截止滤光片的控制实验证实了UV尾巴在光催化过程中在太阳模拟光中的作用。结果突出显示了使用ZnO光催化剂对危险的肠球菌和奇异变形杆菌细菌的水进行完全消毒的可行性,降解后不会留下有机物。

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