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首页> 外文期刊>RSC Advances >Photocatalytic inactivation of E. Coli by ZnO–Ag nanoparticles under solar radiation
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Photocatalytic inactivation of E. Coli by ZnO–Ag nanoparticles under solar radiation

机译:ZnO-Ag纳米粒子在太阳辐射下的光催化剂灭活大肠杆菌

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Porous and fluffy ZnO photocatalysts were successfully prepared via simple solution based combustion synthesis method. The photocatalytic inactivation of Escherichia coli bacteria was studied separately for both Ag substituted and impregnated ZnO under irradiation of natural solar light. A better understanding of substitution and impregnation of Ag was obtained by Raman spectrum and X-ray photoelectron analysis. The reaction parameters such as catalyst dose, initial bacterial concentration and effect of hydroxyl radicals via H _(2) O _(2) addition were also studied for ZnO catalyst. Effective inactivation was observed with 0.25 g L ~(?1) catalyst loading having 10 ~(9) CFU mL ~(?1) bacterial concentration. With an increase in molarity of H _(2) O _(2) , photocatalytic inactivation was enhanced. The effects of different catalysts were studied, and highest bacterial killing was observed by Ag impregnated ZnO with 1 atom% Ag compared to Ag substituted ZnO. This enhanced activity can be attributed to effective charge separation that is supported by photoluminescence studies. The kinetics of reaction in the presence of different scavengers showed that reaction is significantly influenced by the presence of hole and hydroxyl radical scavenger with high efficiency.
机译:通过简单的基于溶液的燃烧合成方法成功制备多孔和蓬松的ZnO光催化剂。在自然太阳光照射下分别研究了大肠杆菌细菌的光催化灭活了大肠杆菌细菌的浸润和浸渍的ZnO。通过拉曼光谱和X射线光电子分析获得更好地理解Ag的替代和浸渍。还研究了ZnO催化剂的反应参数,例如催化剂剂量,初始细菌浓度,羟基自由基的羟基 - (2)o _(2)添加。观察到具有0.25g L〜(α1)催化剂载荷的有效灭活,其具有10〜(9)CFU mL〜(α1)细菌浓度。随着H _(2)o _(2)的摩尔度的增加,增强了光催化失活。研究了不同催化剂的效果,与Ag取代的ZnO相比,通过1原子%Ag的Ag浸渍的ZnO观察到最高的细菌杀伤。这种增强的活性可归因于光致发光研究支持的有效电荷分离。在不同清除剂存在下反应的动力学表明,通过具有高效率的孔和羟基自由基清除剂的存在显着影响。

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