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先进氧化混合工艺对水中难降解药物污染物的矿化增强作用

Mineralization enhancement of a recalcitrant pharmaceutical pollutant in water by advanced oxidation hybrid processes.

作者信息

Méndez-Arriaga F, Torres-Palma R A, Pétrier C, Esplugas S, Gimenez J, Pulgarin C

机构信息

Chemical Engineering Department, University of Barcelona, Marti i Franquès 1, 08028, Barcelona, Spain.

出版信息

Water Res. 2009 Sep;43(16):3984-91. doi: 10.1016/j.watres.2009.06.059. Epub 2009 Jul 4.

Abstract

Degradation of the biorecalcitrant pharmaceutical micropollutant ibuprofen (IBP) was carried out by means of several advanced oxidation hybrid configurations. TiO(2) photocatalysis, photo-Fenton and sonolysis - all of them under solar simulated illumination - were tested in the hybrid systems: sonophoto-Fenton (FS), sonophotocatalysis (TS) and TiO(2)/Fe(2+)/sonolysis (TFS). In the case of the sonophoto-Fenton process, the IBP degradation (95%) and mineralization (60%) were attained with photo-Fenton (FH). The presence of ultrasonic irradiation slightly improves the iron catalytic activity. On the other hand, total removal of IBP and elimination of more than 50% of dissolved organic carbon (DOC) were observed by photocatalysis with TiO(2) in the presence of ultrasound irradiation (TS). In contrast only 26% of mineralization was observed by photocatalysis with H(2)O(2) (TH) in the absence of ultrasound irradiation. Additional results showed that, in the TFS system, 92% of DOC removal and complete degradation of IBP were obtained within 240 min of treatment. The advanced oxidation hybrid systems seems to be a promising alternative for full elimination/mineralization for the recalcitrant micro-contaminant IBP.

摘要

通过几种高级氧化混合配置对生物难降解药物微污染物布洛芬(IBP)进行了降解。在混合系统中测试了TiO(2)光催化、光芬顿和超声分解——所有这些都在模拟太阳光照射下进行:声光电芬顿(FS)、声光催化(TS)和TiO(2)/Fe(2+)/超声分解(TFS)。在声光电芬顿过程中,光芬顿(FH)实现了IBP的降解(95%)和矿化(60%)。超声辐射的存在略微提高了铁的催化活性。另一方面,在超声辐射(TS)存在的情况下,通过TiO(2)光催化观察到IBP的完全去除和超过50%的溶解有机碳(DOC)的消除。相比之下,在没有超声辐射的情况下,用H(2)O(2)(TH)光催化仅观察到26%的矿化。额外的结果表明,在TFS系统中,在240分钟的处理时间内实现了92%的DOC去除和IBP的完全降解。高级氧化混合系统似乎是一种有前途的替代方法,可用于完全消除/矿化难降解微污染物IBP。

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