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Photocatalytic degradation of dye by Ag/TiO2 nanoparticles prepared with different sol–gel crystallization in the presence of effluent organic matter

机译:通过不同溶胶 - 凝胶结晶在出水有机物质存在下制备的Ag / TiO2纳米颗粒的光催化降解染料

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TiO2 nanoparticle-doped Ag (Ag/TNPs) have good photocatalytic properties based on localized surface plasmon resonance (LSPR) effect. The effluent organic matter (EfOM) can be easily activated by photo-excitation to promote pollutant photodegradation, but excessive EfOM has an inactive effect. Herein, the purpose of this paper is to investigate the changes of photocatalytic performance by Ag/TNPs in the presence of EfOM. Three Ag/TNPs made by condensation crystallization or rotary evaporation crystallization using the sol–gel method were conducted in photocatalytic degradation of methyl orange (MO). The Ag/TNPs crystallized by condensation had greater separation rate of photogenerated electron–hole pairs and photocatalytic degradation of MO with high load rates of binding Ag and TiO2 than those formed by rotary evaporation crystallization. Indeed, EfOM could be excited to produce the active substances under illumination resulting in the promotion of MO degradation. However, contrary to previous speculation, no additive effect of MO photodegradation was observed with the addition both of EfOM and Ag/TNPs at different pH values (5~9) and ion strength (0~0.4 mol L?1). It can be explained that the EfOM changed the morphology and active sites in Ag/TNPs’ surface. Meanwhile, EfOM could be consumed and degraded by Ag/TNP photocatalysis leading to the concentration of free radicals to decrease. This study revealed a nonsynergistic effect between nanomaterial and EfOM for photocatalysis. EfOM would have a negative effect on photocatalytic degradation of organic compounds by Ag/TNPs in the aquatic environment.Graphical abstract.
机译:TiO2纳米粒子掺杂的Ag(Ag / TNP)基于局部表面等离子体共振(LSPR)效应具有良好的光催化性能。流出物有机物(EFOM)可以通过光激发容易地激活,以促进污染物光降解,但过量的EFOM具有非活动效果。这里,本文的目的是在EFOM存在下研究Ag / TNP的光催化性能的变化。使用溶胶 - 凝胶法制备缩合结晶或旋转蒸发结晶制备的三个Ag / TNP,在光催化降解甲基橙(Mo)中进行。通过冷凝结晶的Ag / TNP具有更大的光生电子 - 空穴对的分离速率,并具有高负荷率的Mo的光催化降解,其结合Ag和TiO 2的载荷速率比通过旋转蒸发结晶形成的高负荷率。实际上,可以激发EFOM以在照明中产生活性物质,导致MO降解的促进。然而,与先前的猜测相反,通过在不同pH值(5〜9)和离子强度(0〜0.4moll≤1)中加入EFOM和Ag / TNP中的两种EFOM和Ag / TNP,未观察到MO光降解的添加效果。可以解释,EFOM改变了AG / TNPS表面中的形态和有源网站。同时,通过Ag / TNP光催化可以消耗和降解EFOM,导致自由基浓度降低。本研究揭示了纳米材料和EFOM用于光催化的非粘性效应。 EFOM将对水生环境中Ag / TNP的有机化合物的光催化降解有机化合物的负面影响。图形摘要。

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