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评价 Chelex-DGT 技术在河口和海洋沉积物孔隙水中痕量稀土元素测量中的应用。

Evaluation of the Chelex-DGT technique for the measurement of rare earth elements in the porewater of estuarine and arine sediments.

机构信息

Scarce Resources and Circular Economy (ScaRCE), STEM, University of South Australia, UniSA, SA, 5095, Australia; Future Industries Institute, University of South Australia, SA, 5095, Australia.

Environmental Futures Research Institute, School of Environment and Science, Griffith University, Gold Coast Campus, QLD, 4215, Australia.

出版信息

Talanta. 2021 Aug 1;230:122315. doi: 10.1016/j.talanta.2021.122315. Epub 2021 Mar 18.

Abstract

This study describes the validation of a diffusive gradients in thin film (DGT) technique for determining lanthanide rare earth elements (REEs) and in situ measurements of REEs in sediment pore waters. Laboratory experiments demonstrated that Chelex-100 binding layers had uptake efficiencies ranging from 78.0% to 92.3% for all REEs. An eluent of 1 mol L HNO was optimal with elution efficiencies >80% for all REEs. Mass versus time experiments confirmed that DGT uptake was linear for all REEs at pH 8.1, 6.6 and 3.9 over a period of 3-4 days. Diffusion coefficients (D) for all REEs were derived from these experiments using the slopes of the linear regressions. D values varied with pH but were generally similar to values reported previously. The Chelex-100 DGT technique from this study is highly sensitive for the measurement of REE concentrations with detection limits ranging from 1.8 to 45 ng L based on 72 h deployments allowing measurements of natural trace REE levels. Chelex-100 DGT devices were deployed in estuarine and marine sediments over a period of 72 h and most REE porewater concentrations (50-10,410 ng L) were successfully measured. Individual depth profiles of REEs showed a complex response, with many peaks and troughs suggesting a high degree of sediment heterogeneity. Depth-averaged REE concentrations showed a typical zig-zag distribution, although patterns varied between sediment types, after the REEs were normalised using the Queensland Mud Composite shale reference. The Chelex-100 DGT technique therefore shows promise for REE measurements in sediments.

摘要

本研究描述了一种扩散梯度薄膜(DGT)技术用于测定镧系稀土元素(REEs)和原位测量沉积物孔隙水中 REEs 的验证。实验室实验表明,Chelex-100 结合层对所有 REEs 的吸收效率在 78.0%至 92.3%之间。1 mol/L HNO3 的洗脱液是最佳的,所有 REEs 的洗脱效率均>80%。质量与时间实验证实,在 pH 8.1、6.6 和 3.9 下,所有 REEs 的 DGT 吸收在 3-4 天内呈线性。从这些实验中,使用线性回归的斜率推导出所有 REEs 的扩散系数(D)。D 值随 pH 而变化,但通常与以前报道的值相似。本研究中的 Chelex-100 DGT 技术对 REE 浓度的测量非常敏感,检测限范围为 1.8 至 45ng/L,基于 72 小时的部署,可以测量自然痕量 REE 水平。Chelex-100 DGT 装置在河口和海洋沉积物中部署了 72 小时,成功测量了大多数 REE 孔隙水浓度(50-10410ng/L)。REE 深度剖面显示出复杂的响应,许多峰和谷表明沉积物具有高度的异质性。REE 归一化后,深度平均 REE 浓度显示出典型的锯齿状分布,尽管在使用昆士兰泥复合页岩参考物后,不同沉积物类型之间的模式有所不同。因此,Chelex-100 DGT 技术有望用于沉积物中的 REE 测量。

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