Consorci d'Aigües de Tarragona, N-340 km 1.094. 43895 L'Ampolla, Spain; Department of Analytical Chemistry and Organic Chemistry, Universitat Rovira i Virgili. Marcel·lí Domingo s/n. Sescelades Campus, 43007 Tarragona, Spain.
Consorci d'Aigües de Tarragona, N-340 km 1.094. 43895 L'Ampolla, Spain.
Chemosphere. 2021 Aug;276:130023. doi: 10.1016/j.chemosphere.2021.130023. Epub 2021 Feb 22.
This paper investigates the occurrence and removal of 60 organic micropollutants (OMPs) including pharmaceuticals, personal care products, pesticides and per- and polyfluoroalkyl substances in a drinking water treatment plant (DWTP) treating raw water from the Ebro River (NE Spain). The behaviour of the OMPs was evaluated in each treatment: pre-ozonation, flocculation-coagulation-decantation-sand filtration, post-ozonation and granular activated carbon filtration. Thirty-one of the sixty OMPs studied were detected in source water with individual median concentrations below 10 ng L for all the compounds except for caffeine (64.1 ng L). The highest concentration peaks in the source water were found for caffeine (124.5 ng L), terbuthylazine (52.0 ng L), imidacloprid (30.2 ng L) and paracetamol (25.6 ng L). Of the 31 compounds detected in the source water, 17 were also detected in the finished drinking water. Of these 17 compounds, 10 were PFASs, which indicated that this group of compounds had not been effectively removed throughout the drinking water treatments. The overall removal efficiencies of OMPs in the DWTP ranged from -50.9% to 100%. The most efficient removal technologies were ozonation and granular activated carbon.
本文研究了在一家处理埃布罗河(西班牙东北部)原水的饮用水处理厂(DWTP)中,60 种有机微量污染物(OMPs)包括药品、个人护理产品、农药和全氟和多氟烷基物质的出现和去除情况。在每个处理过程中评估了 OMPs 的行为:预臭氧化、絮凝-混凝-沉淀-砂滤、后臭氧化和颗粒活性炭过滤。在所研究的 60 种 OMPs 中,有 31 种在水源水中被检出,除咖啡因(64.1ng/L)外,所有化合物的个体中位数浓度均低于 10ng/L。在水源水中,浓度最高的峰值化合物为咖啡因(124.5ng/L)、特丁津(52.0ng/L)、吡虫啉(30.2ng/L)和扑热息痛(25.6ng/L)。在所研究的 31 种水源水中检出的化合物中,有 17 种也在饮用水中检出。在这 17 种化合物中,有 10 种是 PFASs,这表明这组化合物在整个饮用水处理过程中并未得到有效去除。DWTP 中 OMPs 的总体去除效率在-50.9%到 100%之间。最有效的去除技术是臭氧氧化和颗粒活性炭。