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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Photodegradation of the pharmaceuticals amoxicillin,bezafibrate and paracetamol by the photo-Fenton process-Application to sewage treatment plant effluent
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Photodegradation of the pharmaceuticals amoxicillin,bezafibrate and paracetamol by the photo-Fenton process-Application to sewage treatment plant effluent

机译:Fenton法光降解阿莫西林,苯扎贝特和扑热息痛等药物-在污水处理厂废水中的应用

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摘要

Photodegradation of the pharmaceuticals amoxicillin(AMX),bezafibrate(BZF)and paracetamol(PCT)in aqueous solutions via the photo-Fenton process was investigated under black-light and solar irradiation.The influences of iron source,initial H2O2 concentration and matrix(distilled water and sewage treatment plant effluent)on degradation efficiency were discussed in detail.The results showed that(i)the degradation of the drugs was favored in the presence of potassium ferrioxalate(FeOx)in comparison to Fe(NO3)3;(ii)the increase of the H2O2 concentration improved the efficiency of AMX and BZF oxidation;however,the same was not observed for PCT;(iii)the influence of the matrix was observed for the degradation of BZF and PCT;(iv)under solar irradiation,the oxidation of the BZF and PCT is faster than under black-light irradiation.All these pharmaceuticals can be efficiently degraded employing the process evaluated.
机译:研究了阿莫西林,苯扎贝特(BZF)和扑热息痛(PCT)在水溶液中的光芬顿法在黑光和太阳光下的光降解性能。铁源,初始H2O2浓度和基质(蒸馏)的影响结果表明:(i)与铁(NO3)3相比,铁草酸钾(FeOx)的存在有利于药物的降解;(ii) H2O2浓度的增加提高了AMX和BZF氧化的效率;但是,对于PCT没有观察到;(iii)观察到基质对BZF和PCT降解的影响;(iv)在太阳辐射下, BZF和PCT的氧化比黑光照射更快。采用评估的方法可以有效降解所有这些药物。

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