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评估人用卫生废弃物、污水、医院废水、家畜废水和受纳水中的药品和个人护理产品,重点是驱虫药。

Evaluation of pharmaceuticals and personal care products with emphasis on anthelmintics in human sanitary waste, sewage, hospital wastewater, livestock wastewater and receiving water.

机构信息

Department of Civil and Environmental Engineering, Pusan National University, Busan 609-735, Republic of Korea.

出版信息

J Hazard Mater. 2013 Mar 15;248-249:219-27. doi: 10.1016/j.jhazmat.2013.01.007. Epub 2013 Jan 11.

Abstract

We investigated 33 pharmaceuticals and personal care products (PPCPs) with emphasis on anthelmintics and their metabolites in human sanitary waste treatment plants (HTPs), sewage treatment plants (STPs), hospital wastewater treatment plants (HWTPs), livestock wastewater treatment plants (LWTPs), river water and seawater. PPCPs showed the characteristic specific occurrence patterns according to wastewater sources. The LWTPs and HTPs showed higher levels (maximum 3000 times in influents) of anthelmintics than other wastewater treatment plants, indicating that livestock wastewater and human sanitary waste are one of principal sources of anthelmintics. Among anthelmintics, fenbendazole and its metabolites are relatively high in the LWTPs, while human anthelmintics such as albendazole and flubendazole are most dominant in the HTPs, STPs and HWTPs. The occurrence pattern of fenbendazole's metabolites in water was different from pharmacokinetics studies, showing the possibility of transformation mechanism other than the metabolism in animal bodies by some processes unknown to us. The river water and seawater are generally affected by the point sources, but the distribution patterns in some receiving water are slightly different from the effluent, indicating the influence of non-point sources.

摘要

我们研究了 33 种药品和个人护理用品(PPCPs),重点研究了驱虫剂及其代谢物在人类卫生废物处理厂(HTPs)、污水处理厂(STPs)、医院废水处理厂(HWTPs)、家畜废水处理厂(LWTPs)、河水和海水中的情况。PPCPs 根据废水来源呈现出特定的特征出现模式。与其他污水处理厂相比,LWTPs 和 HTPs 中驱虫剂的含量更高(进水最高可达 3000 倍),这表明家畜废水和人类卫生废物是驱虫剂的主要来源之一。在驱虫剂中,LWTPs 中芬苯达唑及其代谢物的含量相对较高,而人类驱虫剂如阿苯达唑和氟苯达唑则在 HTPs、STPs 和 HWTPs 中占主导地位。水中芬苯达唑代谢物的出现模式与药代动力学研究不同,表明除了动物体内代谢之外,还有我们未知的某些过程可能导致其转化。河水和海水通常受到点源的影响,但一些受纳水体的分布模式与污水略有不同,这表明非点源的影响。

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