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Photocatalytic Degradation Efficiency of Malachite Green in Aqueous Medium Using Poly(azomethine)/ZnO Nanocomposite

机译:聚(氮杂甲胺)/ ZnO纳米复合材料光催化降解孔雀石绿色绿色介质中的降解效率

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The photocatalytic efficiency of the poly(azomethine)/zinc oxide (PNZ) nanocomposites was evaluated for the removal of toxic effluent, Malachite green in the presence of natural sunlight. The photocatalytic efficiency of the PNZ was explored with different parameters and reaction conditions. From the photocatalytic experiments, the deprivation efficiency wasevaluated which reveals that the PNZ nanocomposites exhibited excellent photocatalytic activity than the polymer, poly(azomethine) (PAZ), and nanoZnO (ZnO). The PNZ nanocomposite showed maximum degradation efficiency of 95 % at optimum catalyst dosage (500 mg) with low dye concentration. The main aim of this research was to protect our environment from the contamination of effluence released from dyestuff industries using effective nanocomposite.
机译:评价聚(氮杂甲酰胺)/氧化锌(PNZ)纳米复合材料的光催化效率以除去毒性的雾气,在天然阳光下的存在下。探讨了PNZ的光催化效率,具有不同的参数和反应条件。从光催化实验中,剥夺效率是值,显示PNZ纳米复合材料的优异的光催化活性比聚合物,聚(氮杂甲酰胺)(PAZ)和Nanozno(ZnO)表现出优异的光催化活性。 PNZ纳米复合物在具有低染料浓度的最佳催化剂用量(500mg)时显示出最大降解效率为95%。本研究的主要目的是保护我们的环境免受使用有效纳米复合材料从染料行业释放的污染的环境。

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