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利用薄膜扩散梯度技术和超滤技术研究 former uranium mining sites 附近的铀水相形态。 (注:这里“former uranium mining sites”不太明确准确意思,字面是“以前的铀矿开采地点” )

Uranium aqueous speciation in the vicinity of the former uranium mining sites using the diffusive gradients in thin films and ultrafiltration techniques.

作者信息

Drozdzak Jagoda, Leermakers Martine, Gao Yue, Elskens Marc, Phrommavanh Vannapha, Descostes Michael

机构信息

Analytical, Environmental and Geochemistry (AMGC), Vrije Universiteit Brussels (VUB), Pleinlaan 2, 1050 Brussels, Belgium.

Analytical, Environmental and Geochemistry (AMGC), Vrije Universiteit Brussels (VUB), Pleinlaan 2, 1050 Brussels, Belgium.

出版信息

Anal Chim Acta. 2016 Mar 24;913:94-103. doi: 10.1016/j.aca.2016.01.052. Epub 2016 Feb 3.

Abstract

The performance of the Diffusive Gradients in Thin films (DGT) technique with Chelex(®)-100, Metsorb™ and Diphonix(®) as binding phases was evaluated in the vicinity of the former uranium mining sites of Chardon and L'Ecarpière (Loire-Atlantique department in western France). This is the first time that the DGT technique with three different binding agents was employed for the aqueous U determination in the context of uranium mining environments. The fractionation and speciation of uranium were investigated using a multi-methodological approach using filtration (0.45 μm, 0.2 μm), ultrafiltration (500 kDa, 100 kDa and 10 kDa) coupled to geochemical speciation modelling (PhreeQC) and the DGT technique. The ultrafiltration data showed that at each sampling point uranium was present mostly in the 10 kDa truly dissolved fraction and the geochemical modelling speciation calculations indicated that U speciation was markedly predominated by CaUO2(CO3)3(2-). In natural waters, no significant difference was observed in terms of U uptake between Chelex(®)-100 and Metsorb™, while similar or inferior U uptake was observed on Diphonix(®) resin. In turn, at mining influenced sampling spots, the U accumulation on DGT-Diphonix(®) was higher than on DGT-Chelex(®)-100 and DGT-Metsorb™, probably because their performance was disturbed by the extreme composition of the mining waters. The use of Diphonix(®) resin leads to a significant advance in the application and development of the DGT technique for determination of U in mining influenced environments. This investigation demonstrated that such multi-technique approach provides a better picture of U speciation and enables to assess more accurately the potentially bioavailable U pool.

摘要

在法国西部卢瓦尔-大西洋省的沙尔东和勒卡尔皮埃(L'Ecarpière) former铀矿开采场地附近,评估了以螯合树脂(Chelex®)-100、Metsorb™和Diphonix®作为结合相的薄膜扩散梯度(DGT)技术的性能。这是首次在铀矿开采环境中使用具有三种不同结合剂的DGT技术测定水中的铀。采用过滤(0.45μm、0.2μm)、超滤(500kDa、100kDa和10kDa)结合地球化学形态建模(PhreeQC)和DGT技术的多方法学方法研究了铀的分级和形态。超滤数据表明,在每个采样点,铀主要存在于10kDa的真正溶解部分,地球化学建模形态计算表明,铀形态明显以CaUO2(CO3)3(2-)为主。在天然水中,螯合树脂(Chelex®)-100和Metsorb™在铀吸收方面没有观察到显著差异,而在Diphonix®树脂上观察到类似或较低的铀吸收。反过来,在受采矿影响的采样点,DGT-Diphonix®上的铀积累高于DGT-螯合树脂(Chelex®)-100和DGT-Metsorb™,可能是因为它们的性能受到采矿水极端成分的干扰。Diphonix®树脂的使用在受采矿影响环境中测定铀的DGT技术的应用和发展方面取得了重大进展。这项研究表明,这种多技术方法能更好地呈现铀的形态,并能更准确地评估潜在的生物可利用铀库。

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