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采用混合键合凝胶层评估和应用薄膜扩散梯度技术测量矿业影响水和土壤中的无机砷和金属。

Evaluation and application of the diffusive gradients in thin films technique using a mixed-binding gel layer for measuring inorganic arsenic and metals in mining impacted water and soil.

机构信息

The University of Queensland, Centre for Mined Land Rehabilitation, Sustainable Minerals Institute, QLD, 4072 Australia.

出版信息

Anal Chem. 2012 Nov 20;84(22):9988-95. doi: 10.1021/ac302430b. Epub 2012 Nov 12.

Abstract

The diffusive gradients in thin films (DGT) equipped with a Chelex or ferrihydrite binding gel has been designed to enable the measurement of either labile metal species or inorganic arsenic, respectively. In the mine impacted environment, metals and metalloids commonly coexist in a variety of species. This study, for the first time reports the performance of the DGT with a mixed-binding layer (MBL), consisting of Chelex and ferrihydrite for measurements of both metals and arsenic in a single assay. The MBL that consists of a combination of Chelex and ferrihydrite at a ratio of 1:2 has the greatest binding capacity for arsenic (As), cadmium (Cd), copper (Cu), lead (Pb), and zinc (Zn). The elemental concentrations measured by using MBL-DGT (C(DGT)) were comparable (92-104%) with the original test solution concentrations (C(SOL)). The measurement of As by using MBL-DGT was consistent across a wide pH range (3-8) and ionic strength (0.001-0.1 M). At high pH (9), As measurement was slightly affected (∼80%). The measurements of Cd, Pb, and Zn were affected at low pH (<3) and high pH (9). Measurements of Cd, Cu, and Pb were affected at low ionic strength (0.001 M). At high ionic strength (0.1 M), measurements of Cd; Cu and Pb were slightly affected. The capacity of MBL-DGT for quantitative measurement in a multielements solution is effectively limited to 15 μg for As and 70 μg for metals per MBL-DGT device. Good correlations (p < 0.01) between MBL-DGT measurements and ferrihydrite or Chelex DGT were obtained for As, Cd, Cu, Pb, and Zn in water and soil with exception for Cd and Cu (p < 0.05) when deployed in soil.

摘要

配备 Chelex 或水铁矿结合凝胶的薄膜扩散梯度(DGT)已被设计用于分别测量生物可利用金属物种或无机砷。在受矿山影响的环境中,金属和类金属通常以多种形态共同存在。本研究首次报道了混合结合层(MBL)-DGT 的性能,该 DGT 由 Chelex 和水铁矿组成,可在单次测定中同时测量金属和砷。由 Chelex 和水铁矿以 1:2 的比例组成的 MBL 对砷(As)、镉(Cd)、铜(Cu)、铅(Pb)和锌(Zn)具有最大的结合能力。使用 MBL-DGT 测量的元素浓度(C(DGT))与原始测试溶液浓度(C(SOL))相当(92-104%)。使用 MBL-DGT 测量的 As 浓度在很宽的 pH 范围(3-8)和离子强度(0.001-0.1 M)下一致。在高 pH(9)时,As 的测量受到轻微影响(约 80%)。在低 pH(<3)和高 pH(9)时,Cd、Pb 和 Zn 的测量受到影响。在低离子强度(0.001 M)时,Cd、Cu 和 Pb 的测量受到影响。在高离子强度(0.1 M)时,Cd、Cu 和 Pb 的测量受到轻微影响。MBL-DGT 对多元素溶液中定量测量的容量有效限制为每个 MBL-DGT 装置 15μg 的 As 和 70μg 的金属。在水和土壤中,MBL-DGT 测量值与水铁矿或 Chelex DGT 之间的相关性良好(p<0.01),除了在土壤中 Cd 和 Cu (p<0.05)之外。

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