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A review and recent developments on strategies to improve the photocatalytic elimination of organic dye pollutants by BiOX (X=Cl, Br, I, F) nanostructures

机译:BiOX(X = Cl,Br,I,F)纳米结构改善光催化消除有机染料污染物的策略综述与最新进展

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摘要

The main environmental problems associated with water body pollution are typically those caused by the discharge of untreated effluents released by various industries. Wastewater from the textile dye industry is itself a large contributor and contains a huge number of complex components, a wide spectrum of organic pollutants with high concentration of biochemical oxygen demand (BOD)/chemical oxygen demand (COD) and other toxic elements. One of several potential techniques to degrade such reactive dyes before being discharged to water bodies is photocatalysis, and bismuth-based photocatalysts are rapidly gaining popularity in this direction. Bismuth oxyhalides, BiOX (X=Cl, Br, I, F), as a group of ternary compound semiconductors (V-VI-VII), have been explored extensively for their photocatalytic activity due to their unique crystal lattice with special layered structure in pure as well as modified form. With suitable band gap and band edge positions, which are a required condition for efficient water breakup and high photon absorption, BiOCl scores over other oxyhalides. Photocatalytic activity depends on many factors such as synthesis method, morphology, size, illumination type, dye choice among others. This paper gives a critical review on bismuth oxyhalides as a family on various aspects of modifications such as doping (with unique and interesting metals as well), morphology and synthesis parameters, polymer and carbon assisted composites in order to further enhance the photocatalytic efficiency in UV/visible region of solar spectrum.
机译:与水体污染相关的主要环境问题通常是由各种行业释放的未经处理的废水排放引起的。纺织染料工业的废水本身是一个很大的贡献者,并且包含大量复杂的成分,种类繁多的有机污染物以及高浓度的生化需氧量(BOD)/化学需氧量(COD)和其他有毒元素。在将这种活性染料排放到水体之前对其进行降解的几种潜在技术之一是光催化,基于铋的光催化剂正朝着这个方向迅速普及。铋卤氧化物BiOX(X = Cl,Br,I,F)作为三元化合物半导体(V-VI-VII)的组,由于其独特的晶格和特殊的层状结构而被广泛地研究其光催化活性。以及修改形式。具有合适的带隙和带边缘位置,这是有效水分解和高光子吸收的必要条件,BiOCl得分优于其他卤氧化物。光催化活性取决于许多因素,例如合成方法,形态,尺寸,照明类型,染料选择等。本文就卤化铋作为一个家族进行了重要的综述,涉及修饰的各个方面,例如掺杂(以及独特和有趣的金属),形态和合成参数,聚合物和碳辅助复合物,以进一步提高紫外线的光催化效率。 /太阳光谱的可见区域。

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