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Photocatalytic degradation of industrial acrylonitrile wastewater by F–S–Bi–TiO 2 catalyst of ultrafine nanoparticles dispersed with SiO 2 under natural sunlight

机译:在自然阳光下用SiO 2分散的超细纳米粒子的F-S-Bi-TiO 2催化剂光催化降解产业丙烯腈废水

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Highly active photocatalyst, having certain anti-ionic interfering function, of F, S and Bi doped TiO2/SiO2 was used for the first time to degrade the organic pollutants in acrylonitrile industrial wastewater under natural sunlight. The photocatalyst were prepared and characterized by UV–Vis, XRD, TEM, EDS, Nitrogen physical adsorption and XPS technique. UV–Vis analysis revealed addition of F, S and Bi into the lattice of TiO2 led to the expansion of TiO2 response in the visible region and hence the efficient separation of charge carrier. The photocatalytic potential of as prepared catalyst to degrade acrylonitrile wastewater under simulated and natural sunlight irradiation was investigated. The extent of degradation of acrylonitrile wastewater was evaluated by chemical oxygen demand (CODCr). CODCr in wastewater decreased from 88.36 to 7.20?mgL?1 via 14?h irradiation of simulated sunlight and achieved regulation discharge by 6?h under natural sunlight, illuminating our photocatalyst effectiveness for refractory industrial wastewater treatment. From TEM results, we found that SiO2 could disperse the photocatalyst with different component distributions between the surface and the bulk phase that should also be responsible for the light absorption and excellent photocatalytic performance. The XPS analysis confirmed the presence of surface hydroxyl group, oxygen vacancies.
机译:第一次使用具有一定的抗离子干扰功能的高活性光催化剂,F,S和BI掺杂TiO2 / SiO 2在自然阳光下降解丙烯腈工业废水中的有机污染物。通过UV-Vis,XRD,TEM,EDS,氮气吸附和XPS技术制备并表征光催化剂。 UV-VIS分析将F,S和Bi的添加到TiO 2的晶格中,LED在可见区域中的TiO 2响应的膨胀,因此有效地分离电荷载体。研究了作为制备催化剂的光催化电位降解模拟和自然阳光照射下丙烯腈废水。通过化学需氧量(CODCR)评价丙烯腈废水的降解程度。废水中的CODCR从88.36〜7.20?MGL?1次通过14℃的模拟阳光照射,并在自然阳光下达到6μm的调节放电,照亮了我们对难治性工业废水处理的光催化剂效能。从TEM结果,我们发现SiO2可以将光催化剂与表面和散装相之间的不同部件分布分散,该阶段也应该负责光吸收和优异的光催化性能。 XPS分析证实存在表面羟基,氧空位。

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