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Characterisation and comparison of the uptake of ionizable and polar pesticides, pharmaceuticals and personal care products by POCIS and Chemcatchers

机译:POCIS和ChemCatchers的可电离和极性农药,药品和个人护理产品摄取的特征及比较

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摘要

Growing concern about the environmental impact of ionizable and polar organic chemicals such as pesticides, pharmaceuticals and personal care products has lead to the inclusion of some in legislative and regulatory frameworks. It is expected that future monitoring requirements for these chemicals in aquatic environments will increase, along with the need for low cost monitoring and risk assessment strategies. In this study the uptake of 13 neutral and 6 ionizable pesticides, pharmaceuticals and personal care products by modified POCIS (with Strata魘 sorbent) and Chemcatchers頨SDB-RPS or SDB-XC) was investigated under controlled conditions at pH = 6.5 for 26 days. The modified POCIS and Chemcatcher頨SDB-RPS) samplers exhibited similar performance with the uptake of the majority of the 19 chemicals of interest categorised as linear over the 26 day deployment. Only a few ionized herbicides (picloram and dicamba) and triclosan showed negligible accumulation. Chemcatcher頷ith SDB-XC sorbent performed relatively poorly with only carbamazepine having a linear accumulation profile, and 8 compounds showing no measurable accumulation. Differences in the uptake behavior of chemicals were not easily explained by their physico-chemical properties, strengthening the requirement for detailed calibration data. PES membranes accumulated significant amount of some compounds (i.e. triclosan and diuron), even after extended deployment (i.e. 26 days). At present there is no way to predict which compounds will demonstrate this behavior. Increasing membrane pore size from 0.2 to 0.45 孠for Chemcatcher頨SBD-RPS) caused an average increase in Rs of 24%.
机译:对杀虫剂,制药和个人护理产品如杀虫剂,药品和个人护理产品如杀虫剂,医药和个人护理产品的环境影响日益令人担忧,这导致了一些立法和监管框架中的一些。预计该化学品在水生环境中将未来的监测要求将增加,而且需要低成本监测和风险评估策略。在本研究中,在受控条件下,在pH = 6.5的受控条件下,通过修饰的POCIS(用Strata魇吸附剂)和Chemcatchers頨SDB-RPS或SDB-XC的摄入13中性和6种可电离农药,药物和个人护理产品的摄取。改进的POCIS和ChemCatcher頨SDB-RPS)采样器表现出类似的性能,其大多数感兴趣的大多数吸收量在26天部署中被分类为线性。只有少数电离除草剂(丘西拉姆和Dicamba)和三氯烷显示出可忽略的积累。 ChemCatcher颔ITHSSDB-XC吸附剂与仅具有线性累积曲线的尸毒胺表现相对较差,8个化合物显示没有可测量的积累。它们的物理化学性质不容易解释化学品的摄取行为的差异,加强对详细校准数据的要求。 PES膜即使在延长部署(即26天)之后,也累积了一些化合物(即三氯烷和Diuron)。目前目前无法预测哪些化合物将证明这种行为。增加膜孔径为0.2至0.45‰的ChemCatcher頨SBD-RPS)导致平均增加24%。

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