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Degradation of biotansformation products of nonylphenol ethoxylates by ozonation and UV/TiO2 treatment

机译:臭氧化和UV / TiO2处理降解壬基酚乙氧基化物的生物转化产物

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The degradation kinetics of biotransformation products of nonylphenol polyethoxylates (NPEOs), nonylphenol (NP), nonylphenol monoethoxylate (NP1EO) and nonylphenoxy carboxylic acid (NP1EC), by ozonation and UV/TiO2 (ultraviolet photocatalytic degradation in the presence of titanium dioxide suspension as a catalyst) were investigated using lab-scale reactors. The degradation rate of NP by UV/TiO2 was the highest among the tested NPEOs metabolites, while NP1EC showed the lowest degradation rate. In contrast, ozonation was especially effective for the breakdown of NP1EC. NP could be also degraded efficiently by ozonation, however, it was much less effective for NP1EO decomposition. Degradation of NP by both chemical oxidation processes followed first-order kinetics. The degradation curves of NP1EO and NP1EC could be approximately described by first-order kinetics also, although the degradation of NP1EC by ozonation seemed to follow a second-order kinetic. [References: 25]
机译:壬基酚聚乙氧基化物(NPEOs),壬基酚(NP),壬基酚单乙氧基化物(NP1EO)和壬基苯氧基羧酸(NP1EC)的生物转化产物通过臭氧和UV / TiO2的降解动力学(在以二氧化钛悬浮液形式存在的情况下,紫外线光催化降解使用实验室规模的反应器进行了研究。在测试的NPEOs代谢产物中,UV / TiO2对NP的降解率最高,而NP1EC的降解率最低。相反,臭氧化对于NP1EC的分解特别有效。 NP也可以通过臭氧化有效地降解,但是,其对NP1EO分解的效力要低得多。两种化学氧化过程对NP的降解遵循一级动力学。 NP1EO和NP1EC的降解曲线也可以用一阶动力学近似描述,尽管臭氧化作用下NP1EC的降解似乎遵循二阶动力学。 [参考:25]

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