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首页> 外文期刊>Geochemistry: Interdisciplinary Journal for Chemical Problems of the Geosciences and Geoecology >Anthropogenic gadolinium as a micropollutant in river waters in Pennsylvania and in Lake Erie,northeastern United States
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Anthropogenic gadolinium as a micropollutant in river waters in Pennsylvania and in Lake Erie,northeastern United States

机译:人为的as作为微量污染物在宾夕法尼亚州和美国东北部伊利湖的河水中

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摘要

"Anthropogenic"gadolinium,Gd,used in contrast agents in magnetic resonance imaging,is a micropollutant that enters river and lake waters with the discharge from wastewater treatment plants,WWTPs.Such discharge is also the source of other micropollutants,for example Pharmaceuticals,such as steroids,antihistamins,and antibiotics.Together with the"natural"Gd,the anthropogenic Gd produces positive Gd anomalies in rare-earth element distribution patterns and is,therefore,easily detectable.This pilot study reports on the occurrence of anthropogenic Gd in rivers in Pennsylvania(Ohio,Beaver,Allegheny,Monongahela,Juniata,and Susquehanna)and in near-shore surface water from Lake Erie close to the city of Buffalo.Additional data are reported for the Delaware River and the headwaters of Spring Creek in Central Pennsylvania,and for Lake Ontario and Niagara River,all of which do not show significant anthropogenic Gd.Most pronounced impact of anthropogenic Gd discharged from WWTPs is observed in the Pittsburgh Metropolitan area.Such contamination is similar to that observed in densely populated areas with highly developed medical and healthcare systems in Europe and Japan.Its worldwide applicability adds to the promising potential of anthropogenic Gd as a cost-effective tracer for the presence of WWTP effluent in river,lake,ground,and drinking waters.
机译:“人为” ga,在磁共振成像中用作造影剂,是一种微量污染物,随着废水处理厂,污水处理厂的排放而进入河流和湖泊水中。这种排放也是其他微量污染物的来源,例如制药业,人为的Gd与“天然” Gd一起以稀土元素分布模式产生正的Gd异常,因此很容易被检测到。宾夕法尼亚州(俄亥俄州,海狸,阿勒格尼,莫农加黑拉,朱尼塔和萨斯奎哈那)以及伊利湖附近布法罗市的近岸地表水。还报告了特拉华河和宾夕法尼亚州中部斯普林克里克的上游水域的其他数据。 ,对于安大略湖和尼亚加拉河,它们都没有显示出明显的人为Gd。在污水处理厂中观察到从污水处理厂排放的人为Gd的影响最为明显。匹兹堡都会区:这种污染与在欧洲和日本拥有高度发达医疗和卫生保健系统的人口稠密地区所观察到的污染相似,其在世界范围内的适用性增加了人为生成的Gd作为有成本效益的示踪剂存在污水处理厂废水的潜力在河,湖,地面和饮用水中。

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