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应用扩散梯度薄膜技术(DGT)评估 Scheldt 河城市支流中铂(Pt)、钯(Pd)和铑(Rh)的分布。

Distribution of platinum (Pt), palladium (Pd), and rhodium (Rh) in urban tributaries of the Scheldt River assessed by diffusive gradients in thin films technique (DGT).

机构信息

Analytical, Environmental and Geo-Chemistry (AMGC), Vrije Universiteit Brussel (VUB), Pleinlaan 2, 1050 Brussels, Belgium.

Univ. Lille, CNRS, UMR 8516, LASIRE - Laboratoire Avancé de Spectroscopie pour les Intéractions, la Réactivité de l'Environnement, F-59000 Lille, France.

出版信息

Sci Total Environ. 2021 Aug 25;784:147075. doi: 10.1016/j.scitotenv.2021.147075. Epub 2021 Apr 14.

Abstract

The performance of the newly developed DGT technique for the platinum group elements (PGEs) rhodium (Rh), platinum (Pt) and palladium (Pd) was evaluated in two tributaries of the Scheldt River, the Marque River close to the city of Lille (France), and the Zenne River which flows through the city of Brussels (Belgium). In the Marque River, an interlaboratory comparison was performed between the two laboratories where the DGT techniques dedicated to PGEs were developed (AMGC, VUB & LASIRE, U-Lille). PGEs were also analysed in an effluent of a Brussels hospital and monthly grab sampling was performed at the wastewater treatments plants (WWTPs) of Brussels. The concentrations of the 3 elements are higher in the Zenne River than in the Marque River and much higher Pt concentrations are found in the hospital effluent. Good agreement for Pt was observed between the three selected chelating resins and a relatively good agreement was observed between the two laboratories using the same chelating resin, whereas lower results were observed with the anion-exchange resin. Larger discrepancies between the two laboratories were observed for Pd and no comparison could be made for Rh due to the low natural concentrations. The results show that in small urban rivers with high impact of urbanization, WWTPs are an important source of Pt, resulting from the use of anticancer drugs in hospitals and households. The limited retention of PGEs in WWTPs results in increased concentrations in urban rivers downstream. For Pd and Rh, similar trends were found with other traffic related elements such as Cu, Zn and Pb, showing the highest concentrations in waters collecting runoff from a highway. The data show that these elements, together with Gd, can be useful to trace specific pollution sources and their dispersion.

摘要

新开发的 DGT 技术用于测定铂族元素(PGEs)铑(Rh)、铂(Pt)和钯(Pd)在 Scheldt 河的两条支流中的性能,一条是靠近里尔市的 Marque 河,另一条是流经布鲁塞尔市的 Zenne 河。在 Marque 河中,两个开发了 DGT 技术的实验室(AMGC、VUB 和 LASIRE、U-Lille)之间进行了实验室间比较。还分析了布鲁塞尔一家医院的废水,每月在布鲁塞尔的废水处理厂(WWTP)进行一次随机采样。这 3 种元素在 Zenne 河的浓度高于 Marque 河,且在医院废水中发现了更高浓度的 Pt。研究发现,三种螯合树脂对 Pt 的测定结果具有良好的一致性,使用相同螯合树脂的两个实验室之间也具有较好的一致性,而阴离子交换树脂的结果较低。对于 Pd,两个实验室之间的差异较大,而对于 Rh,则由于其天然浓度较低,无法进行比较。研究结果表明,在城市化影响较大的小型城市河流中,WWTP 是 Pt 的一个重要来源,这是由于医院和家庭使用抗癌药物所致。由于 WWTP 对 PGEs 的截留有限,导致下游城市河流中 PGEs 浓度增加。对于 Pd 和 Rh,与其他与交通相关的元素(如 Cu、Zn 和 Pb)类似,在收集高速公路径流的水域中发现了最高浓度,表明它们具有相似的趋势。这些数据表明,这些元素与 Gd 一起,可以用于追踪特定的污染源及其分散情况。

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