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Degradation of industrial surfactants by photocatalysis combined with ozonation

机译:光催化结合臭氧氧化降解工业表面活性剂

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摘要

The efficiency of titanium dioxide-mediated photocatalytic degradation of pollutants can be enhanced by combination with another advanced oxidation procedure such as ozonation. Mineralization of hydroxy- and dihydroxybenzenesulfonate based on these methods, both individually and combined, was investigated by monitoring the total organic carbon (TOC) content, sulfate concentration, pH, HPLC as well as the absorption spectral changes. The mineralization efficiency of the combined procedure significantly exceeded the sum of those of the individual techniques. The comparison of the disappearance of the starting material and the formation of the sulfate ions indicates that desulfonation is not the primary step of the degradation. Moreover, in the case of the combined method, ring- cleavage, and thus, partial mineralization can occur without desulfonation. Efficient degradation of other, widely used industrial surfactants, such as alkylbenzene sulfonates and alkyl ether sulfates, was also achieved by heterogeneous photocatalysis combined with ozonation, offering an applicable method for the removal of these pollutants.
机译:与其他先进的氧化程序(例如臭氧氧化)结合使用,可以提高二氧化钛介导的污染物光催化降解的效率。通过监测总有机碳(TOC)含量,硫酸盐浓度,pH,HPLC以及吸收光谱变化,研究了基于这些方法的羟基-和二羟基苯磺酸盐的矿化作用,无论是单独使用还是结合使用。联合程序的矿化效率大大超过了单个技术的总和。原料消失和硫酸根离子形成的比较表明,脱磺不是降解的主要步骤。此外,在组合方法的情况下,环裂解,因此,在不进行脱硫的情况下,可能会发生部分矿化。通过异质光催化与臭氧化相结合,还可以有效降解其他广泛使用的工业表面活性剂,例如烷基苯磺酸盐和烷基醚硫酸盐,从而为去除这些污染物提供了一种可行的方法。

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