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Monitoring for contaminants of emerging concern in drinking water using POCIS passive samplers

污染 环境化学 三氯蔗糖 吸附剂 水处理 化学 废水 环境科学 原水 地表水 药品和个人护理产品的环境影响 吸附 环境工程 生态学 食品科学 有机化学 生物
作者
Chris D. Metcalfe,Md Ehsanul Hoque,Tamanna Sultana,Craig Murray,Paul A. Helm,Sonya Kleywegt
出处
期刊:Environmental Science: Processes & Impacts [Royal Society of Chemistry]
卷期号:16 (3): 473-473 被引量:82
标识
DOI:10.1039/c3em00508a
摘要

Contaminants of emerging concern (CEC) have been detected in drinking water world-wide. The source of most of these compounds is generally attributed to contamination from municipal wastewater. Traditional water sampling methods (grab or composite) often require the concentration of large amounts of water in order to detect trace levels of these contaminants. The Polar Organic Compounds Integrative Sampler (POCIS) is a passive sampling technology that has been developed to concentrate trace levels of CEC to provide time-weighted average concentrations for individual compounds in water. However, few studies to date have evaluated whether POCIS is suitable for monitoring contaminants in drinking water. In this study, the POCIS was evaluated as a monitoring tool for CEC in drinking water over a period of 2 and 4 weeks with comparisons to typical grab samples. Seven "indicator compounds" which included carbamazepine, trimethoprim, sulfamethoxazole, ibuprofen, gemfibrozil, estrone and sucralose, were monitored in five drinking water treatment plants (DWTPs) in Ontario. All indicator compounds were detected in raw water samples from the POCIS in comparison to six from grab samples. Similarly, four compounds were detected in grab samples of treated drinking water, whereas six were detected in the POCIS. Sucralose was the only compound that was detected consistently at all five plants. The POCIS technique provided integrative exposures of CECs in drinking water at lower detection limits, while episodic events were captured via traditional sampling methods. There was evidence that the accumulation of target compounds by POCIS is a dynamic process, with adsorption and desorption on the sorbent occurring in response to ambient levels of the target compounds in water. CECs in treated drinking water were present at low ng L−1 concentrations, which are not considered to be a threat to human health.
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