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The combination of heterogeneous photocatalysis with chemical and physical operations: a tool for improving the photoprocess performance

机译:非均相光催化与化学和物理操作的结合:提高光处理性能的工具

摘要

Heterogeneous photocatalysis is a process of great potential for pollutant abatement and waste treatment. In order to improve the overall performance of the photoprocess, heterogeneous photocatalysis is being combined with physical or chemical operations, which affect the chemicalkinetics and/or the overall efficiency. This review addresses the various possibilities to couple heterogeneous photocatalysis with other technologies to photodegrade organic and inorganic pollutants dissolved in actual or synthetic aqueous effluents. These combinations increase the photoprocess efficiency by decreasing the reaction time in respect to the separated operations or they decrease the cost in respect of heterogeneous photocatalysis alone, generally in terms of light energy. Depending on the operation coupled with heterogeneous photocatalysis, two categories of combinations exist. When the coupling is with ultrasonic irradiation, photo-Fenton reaction, ozonation, or electrochemical treatment, the combination affects the photocatalytic mechanisms thus improving the efficiency of the photocatalytic process. When the coupling is with biological treatment, membrane reactor, membrane photoreactor, or physical adsorption, the combination does not affect the photocatalytic mechanisms but it improves the efficiency of the overall process. The choice of the coupling is related to the type of wastewater to be treated. A synergistic effect, giving rise to an improvement of the efficiency of the photocatalytic process, has been reported in the literature for many cases.
机译:非均相光催化是减少污染物和废物处理的巨大潜力的过程。为了提高光处理的整体性能,将非均相光催化与物理或化学操作相结合,这会影响化学动力学和/或整体效率。这篇综述探讨了将异质光催化与其他技术结合以光降解实际或合成水溶液中溶解的有机和无机污染物的各种可能性。这些组合通过减少相对于分开的操作的反应时间来提高光处理效率,或者通常就光能而言,它们降低了就非均相光催化而言的成本。取决于结合多相光催化的操作,存在两种类型的组合。当通过超声辐射,光芬顿反应,臭氧化或电化学处理进行偶联时,两者结合会影响光催化机理,从而提高光催化过程的效率。当通过生物处理,膜反应器,膜光反应器或物理吸附进行耦合时,该组合不会影响光催化机理,但会提高整个过程的效率。耦合的选择与要处理的废水类型有关。文献中已经报道了许多情况下的协同作用,从而提高了光催化过程的效率。

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