光催化反应器中有机污染物的降解

A. Ujhidy, E. Szabó-Bárdos, O. Horváth, A. Horváth, K. Schmidt
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引用次数: 1

摘要

在实验室规模的反应器和中试设备上研究了二氧化钛介导的草酸和甲酸作为模型化合物的光催化矿化,以促进废水处理工艺的发展。采用多种TiO2催化剂所获得的实验结果表明,污染物底物在半导体颗粒表面的吸附与吸附剂的比表面积没有直接关系。模型化合物的初始光催化降解速率通过增加所施加的二氧化钛的吸附能力而提高,但整体矿化效率是由晶体结构、粒径的平均值和分布以及颗粒表面羟基的数量等几个因素共同决定的。VP P90 TiO2被证明是降解两种模型化合物最有效的光催化剂。静态混合器在中试装置中的应用使甲酸光催化矿化率提高了27%左右。这种效应可以归因于界面传质的增加,促进了光生成的HO●自由基从催化剂表面或边界层向体溶液的移动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Degradation of organic pollutants in photocatalytic reactors
Titanium dioxide-mediated photocatalytic mineralization of oxalic acid and formic acid as model compounds were studied in a laboratory-scale reactor and in a pilot equipment to promote the development of procedures for wastewater treatment. Experimental results obtained by using various TiO2 catalysts indicate that the adsorption of the pollutant substrates on the surface of the semiconductor particles is not directly correlated with the specific surface area of the adsorbent. The initial rate of the photocatalytic degradation of the model compounds is enhanced by increasing the adsorption capability of the titanium dioxide applied, but the overall mineralization efficiency is jointly determined by several factors such as the crystal structure, the mean value and the distribution of the particle size, as well as the number of the hydroxyl groups on the particle surface. The VP P90 TiO2 proved to be the most efficient photocatalyst for degradation of both model compounds studied. Application of static mixer in the pilot equipment enhanced the rate of the photocatalytic mineralization of formic acid by about 27%. This effect can be attributed to the increased interfacial mass transfer facilitating the movement of photogenerated HO● radicals from the catalyst surface or the boundary layer to the bulk solution.
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