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The fate of14C-radiolabelled diclofenac and 4′- hydroxydiclofenac in membrane bioreactor treatment of wastewater

机译:膜生物反应器处理废水中14C-放射性双氯芬酸和4'-羟基双氯芬酸的去向

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摘要

This study aimed at enhancing knowledge on the fate of diclofenac (DF), together with its main human metabolite 4′-hydroxydiclofenac (4′OHDF), during wastewater treatment by using a laboratory-scale membrane bioreactor (MBR). The reactor was fed continuously with non-radiolabelled diclofenac for a one month period prior to a single pulse of a 14C-radiolabelled solution of DF and 4′OHDF. The solution spike contained approximately 25% 4′OHDF and 65% DF, which corresponds to the ratio observed in municipal sewage, as well as traces of two other metabolites. The radioactivity was monitored for a total of twelve days in the various output streams. The calculation of the complete mass balance in the system demonstrated that the major part of the radioactivity left the reactor with the permeate (88.7%), while 2.1% was recovered in the excess sludge. Negligible amounts were recovered in the off-gas traps and on the membranes. Chromatographic analyses of effluent samples, by means of HPLC-MS coupled in parallel to a radiodetector, displayed a different pattern than the one of the spiked solution. It showed the occurrence of three additional metabolites.
机译:这项研究旨在通过使用实验室规模的膜生物反应器(MBR)来提高废水处理过程中对双氯芬酸(DF)及其主要人体代谢物4'-羟基双氯芬酸(4'OHDF)的了解。在单次脉冲DF和4'OHDF的14C放射性标记溶液之前,连续一个月向反应器中注入非放射性标记的双氯芬酸。溶液加标物中含有约25%的4'OHDF和65%DF,这与市政污水中观察到的比例以及其他两种代谢物的痕量相对应。在各种输出流中总共监测放射性十二天。系统中全部质量平衡的计算表明,放射性的大部分离开了反应器(88.7%),而剩余污泥中回收了2.1%。在废气捕集阱和膜上回收的微不足道的量。通过与放射检测器并联连接的HPLC-MS对流出样品进行色谱分析,显示出与加标溶液之一不同的模式。它显示了另外三种代谢物的发生。

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