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Visible/solar light active photocatalysts for organic effluent treatment: Fundamentals, mechanisms and parametric review

机译:用于有机废水处理的可见/太阳能光活性光催化剂:基本原理,机理和参数审查

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摘要

Intensive research work is being undertaken globally to effectively use the process of photocatalysis for the degradation of organic pollutants from industrial effluents. For the same, 1102 has been extensively explored, which however, has a limitation of being able to utilise the UV spectrum only, due to its high band gap property. Since a substantial percentage of the solar spectrum is visible light, it is imperative that for an effective and versatile utilisation of the incident solar energy, visible light active photocatalysts, having a relatively smaller band gap are developed. Smaller band gap, however, often results in rapid recombination and conversion of photonic energy into non-usable heat. This article is a review of the science behind the performance of visible/solar light active photocatalysts. The first part includes the fundamentals of photocatalysis, including thermodynamics, reaction kinetics and recombination. The second part reviews the visible/solar light active photocatalytic materials as well as the significant research efforts made so far in the exploration of possible mechanisms of photoexcitation and remedies for minimization of recombination. Finally, an operational overview is provided which is helpful in assessing the influence of key parameters on the photocatalytic activity. This review presents a single point reference for a comparative study and ready assimilation of the basics and new directions in photocatalysis, thus making it more conducive to further research and active commercialisation.
机译:全球正在开展广泛的研究工作,以有效地利用光催化过程降解工业废水中的有机污染物。为此,已经广泛地探索了1102,但是由于其高的带隙特性,其具有仅能够利用UV光谱的局限性。由于太阳光谱的很大一部分是可见光,因此必须有效地和通用地利用入射的太阳能,开发出具有相对较小带隙的可见光活性光催化剂。但是,较小的带隙通常会导致快速重组,并将光子能量转换为不可用的热量。本文是对可见光/太阳能光活性光催化剂性能背后的科学的评论。第一部分包括光催化的基础知识,包括热力学,反应动力学和重组。第二部分回顾了可见光/太阳能光活性光催化材料,以及迄今为止在探索光激发的可能机理和使重组最小化的方法方面的重大研究成果。最后,提供了操作概述,这有助于评估关键参数对光催化活性的影响。这篇综述提供了一个单点参考,供您进行比较研究以及光催化的基础知识和新方向的现成吸收,从而使其更有助于进一步的研究和积极的商业化。

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