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Occurrence of organochlorine pesticides from typical water sources in YiXing City, Taihu Upper-River Basin, East China

机译:宜兴市宜兴市典型水源的有机氯农药发生的发生

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This study is the first report to describe the occurrence of 18 organochlorine pesticides (OCPs) in the three typical water sources in YiXing City, Taihu Upper-River Basin, East China. The fates of the target OCPs in the Jiubin drinking water treatment plant (JTP) were also analysed. The amount of ∑OCPs in the Hengshan (HS), Youche (YC) and Xijiu (XJ) water sources were relatively moderate, with mean concentrations of 535.6, 426.5 and 537.8 ng L ~(?1) , respectively. Hexachlorocyclohexanes (HCHs) dominated the total concentration of the OCPs making up a marked portion of the 18 OCPs. The highest levels of ∑OCPs found in the three water sources during the study period were during the dry season. The occurrence and concentrations of these compounds were spatially dependent, and the mean concentrations of ∑OCPs in HS, YC and XJ increased from the surface layer to the bottom layer with various percentage increases. In addition, the removal efficiencies of the ∑OCPs from the sedimentation, filtration and disinfection in the JTP are limited. Beta-hexachlorocyclohexane (β-HCH) and heptachlor posed a cancer risk for children and adults in YiXing City, while the potential ecosystem risk of the other OCPs was relatively low in the three water sources. However, the risks posed by the OCPs due to ingestion of drinking water may still exist; therefore, special attention should be paid to source control into the JTP and advanced treatment processes for drinking water supplies should be implemented.
机译:本研究是第一个描述在中国东部义江市宜兴市三典型水源中18种有机氯农药(OCP)发生的报告。还分析了九蛋白饮用水处理厂(JTP)中的目标OCP的命运。衡山(HS),YOHE(YC)和西毛(XJ)水源中Σocps的量相对中等,平均浓度为535.6,426.5和537.8 ng l〜(?1)。六氯环己烷(HCHS)主导了构成18个OCP的标记部分的OCP的总浓度。在研究期间三个水源中发现的最高σocps在干燥的季节。这些化合物的发生和浓度在空间上依赖性,并且HS,Yc和XJ中的平均浓度从表面层增加到具有各种百分比的底层增加。此外,JTP中沉降,过滤和消毒中Σocps的去除效率受到限制。 β-六氯环己烷(β-HCH)和七氯均为宜兴市儿童和成人的癌症风险,而其他OCP的潜在生态系统风险在三种水源中相对较低。然而,由于摄入饮用水而导致的OCP引起的风险可能存在;因此,应特别注意源控制进入JTP和饮用水供应的先进治疗方法。

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