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高效液相色谱-电感耦合等离子体质谱法测定无机 Cr、As 和 Sb 形态的方法开发与验证及其在普拉尼奥维采水库(波兰)水和底泥变异性研究中的应用。

Development and validation of HPLC-ICP-MS method for the determination inorganic Cr, As and Sb speciation forms and its application for Pławniowice reservoir (Poland) water and bottom sediments variability study.

机构信息

Institute of Environmental Engineering of Polish Academy of Sciences, M. Sklodowskiej-Curie 34 St., 41-819 Zabrze, Poland.

Institute of Environmental Engineering of Polish Academy of Sciences, M. Sklodowskiej-Curie 34 St., 41-819 Zabrze, Poland.

出版信息

Talanta. 2014 Mar;120:475-83. doi: 10.1016/j.talanta.2013.11.092. Epub 2013 Dec 25.

Abstract

The optimization of methodology for determination and extraction of inorganic ionic As(III)/As(V), Cr(III)/Cr(VI) and Sb(III)/Sb(V) forms in water and easily-leached fractions of bottom sediments by HPLC-ICP-MS were studied. In paper total concentration of As, Cr, Sb, pH and redox potential were determined. Ions were successfully separated on Dionex IonPac AS7: As(III), As(V), Sb(III), Sb(V) and Dionex IonPac AG7: Cr(III), Cr(VI) with LOD 0.18 μg/L, 0.22 μg/L, 0.009 μg/L, 0.012 μg/L 0.11 μg/L, 0.17 μg/L, respectively. Water and bottom sediments samples were collected monthly from Pławniowice Reservoir, in three-point transects between March and December 2012. In the bottom water predominated As(III) and Cr(III) forms and the highest content of Cr(III) was in the water flowing into the Pławniowice Reservoir. Concentration of Cr(VI) increased in the bottom water in the spring and summer (April-July), while decreasing of the Cr(III) content was associated with the release of Cr(VI) from sediment into the water. Studies have shown that antimony accumulates in reservoir sediments and its reduced form was predominated except May and October-November period when high concentrations of Sb(V) was present. In contrast As(V) was the predominant arsenic form in bottom sediments.

摘要

本研究旨在优化 HPLC-ICP-MS 法测定和提取水中及底泥易提取态中无机离子 As(III)/As(V)、Cr(III)/Cr(VI)和 Sb(III)/Sb(V)形态的方法。本文中测定了水样的总砷、总铬、总锑浓度以及 pH 值和氧化还原电位。采用 Dionex IonPac AS7 分离 As(III)、As(V)、Sb(III)、Sb(V),采用 Dionex IonPac AG7 分离 Cr(III)、Cr(VI),LOD 分别为 0.18μg/L、0.22μg/L、0.009μg/L、0.012μg/L、0.11μg/L、0.17μg/L。2012 年 3 月至 12 月,每月在普拉尼奥维采水库三点法采样,采集水样和底泥。底层水中主要存在 As(III)和 Cr(III)形态,Cr(III)浓度最高的是流入普拉尼奥维采水库的水。Cr(VI)浓度在春季和夏季(4 月至 7 月)的底层水中增加,而 Cr(III)含量的降低与 Cr(VI)从沉积物中释放到水中有关。研究表明,锑在水库沉积物中积累,除 5 月和 10 月至 11 月 Sb(V)浓度较高外,其还原态占优势。相比之下,As(V)是底泥中主要的砷形态。

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