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首页> 外文期刊>Journal of nanomaterials >TiO_2-based photocatalytic process for purification of polluted water: Bridging fundamentals to applications
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TiO_2-based photocatalytic process for purification of polluted water: Bridging fundamentals to applications

机译:基于TiO_2的光催化净化废水的方法:桥接应用基础

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摘要

Recent years have witnessed a rapid accumulation of investigations on TiO2-based photocatalysis, which poses as a greatly promising advanced oxidation technology for water purification. As the ability of this advanced oxidation process is well demonstrated in lab and pilot scales to decompose numerous recalcitrant organic compounds and microorganism as well in water, further overpass of the hurdles that stand before the real application has become increasingly important. This review focuses on the fundamentals that govern the actual water purification process, including the fabrication of engineered TiO_2-based photocatalysts, process optimization, reactor design, and economic consideration. The state of the art of photocatalyst preparation, strategies for process optimization, and reactor design determines the enhanced separation of photo-excited electron-hole (e-h) pairs on the TiO_2 surface. For the process optimization, the kinetic analysis including the rate-determining steps is in need. For large-scale application of the TiO_2-based photocatalysis, economics is vital to balance the fundamentals and the applied factors. The fundamentals in this review are addressed from the perspective of a bridge to the real applications. This review would bring valuably alternative paradigm to the scientists and engineers for their associated research and development activities with an attempt to push the TiO_2-based photocatalysis towards industrially feasible applications.
机译:近年来,对基于TiO2的光催化的研究迅速积累,这构成了非常有希望的用于水净化的先进氧化技术。由于这种先进的氧化过程的能力在实验室和中试规模上得到了充分证明,可以分解水中的许多难降解的有机化合物和微生物,因此,在实际应用之前进一步克服障碍变得越来越重要。这篇综述着重于指导实际水净化过程的基础知识,包括工程化TiO_2基光催化剂的制造,工艺优化,反应器设计和经济考虑。光催化剂制备的技术水平,工艺优化策略和反应器设计决定了TiO_2表面上光激发电子-空穴(e-h)对的增强分离。对于工艺优化,需要包括速率确定步骤的动力学分析。对于TiO_2基光催化的大规模应用,经济学对于平衡基本原理和应用因素至关重要。本文从与实际应用程序之间的桥梁的角度出发,探讨了本文的基础知识。这项审查将为科学家和工程师进行相关的研究和开发活动带来有价值的替代范例,以试图将基于TiO_2的光催化推向工业上可行的应用。

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