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Heterogeneous photocatalysis: Design and experimental characterization of a new photocatalytic reactor for wastewater treatment.

机译:异构光催化:用于废水处理的新型光催化反应器的设计和实验表征。

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The objective of this study is to promote photocatalytic wastewater treatment by proposing a reactor design that employs a catalyst-coated, rotating, corrugated drum to increase the surface area, induce agitation and promote reactant and photon transfer to the surface. Corrugation profiles with surface areas ranging from 405 cm2 to 3650 cm2 were considered---the addition of corrugations improved the phenol degradation rate by up to 200%. Based on an analysis of rotational speed and initial pollutant concentration, the reaction was found to be limited by the kinetics at 20 ppm and 40 ppm, but limited by phenol transfer to the reaction sites at 5 ppm. Finally, Langmuir-Hinshelwood kinetics was applicable with an average phenol adsorption coefficient of 0.120 L/mg and an increasing overall reaction rate constant with surface area. Further studies are necessary for the industrial use of such a reactor design including treatment of wastewater with varying characteristics, reactor design scaling and the applicability of this design for solar-activated applications.
机译:这项研究的目的是通过提出一种反应器设计来促进光催化废水的处理,该反应器设计采用涂有催化剂的旋转瓦楞纸桶来增加表面积,引起搅拌并促进反应物和光子转移到表面。考虑了表面积在405 cm2至3650 cm2之间的波纹轮廓-添加波纹可以使苯酚的降解率提高200%。基于对转速和初始污染物浓度的分析,发现该反应受20 ppm和40 ppm的动力学限制,但受苯酚以5 ppm转移至反应部位的限制。最后,Langmuir-Hinshelwood动力学适用,平均苯酚吸附系数为0.120 L / mg,总反应速率随表面积增加而恒定。对于这种反应器设计的工业用途,需要进一步的研究,包括处理具有不同特性的废水,反应器设计的规模化以及该设计在太阳能活化应用中的适用性。

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