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溶解有机质对铜(II)的结合:铜与溶解有机质比值的重要性及其对生物配体模型的影响。

Copper(II) binding by dissolved organic matter: importance of the copper-to-dissolved organic matter ratio and implications for the biotic ligand model.

机构信息

Department of Chemistry and Biochemistry, University of Colorado-Boulder, Boulder, Colorado 80309-0215, United States.

出版信息

Environ Sci Technol. 2012 Sep 18;46(18):9948-55. doi: 10.1021/es301015p. Epub 2012 Aug 30.

Abstract

The ratio of copper to dissolved organic matter (DOM) is known to affect the strength of copper binding by DOM, but previous methods to determine the Cu(2+)-DOM binding strength have generally not measured binding constants over the same Cu:DOM ratios. In this study, we used a competitive ligand exchange-solid-phase extraction (CLE-SPE) method to determine conditional stability constants for Cu(2+)-DOM binding at pH 6.6 and 0.01 M ionic strength over a range of Cu:DOM ratios that bridge the detection windows of copper-ion-selective electrode and voltammetry measurements. As the Cu:DOM ratio increased from 0.0005 to 0.1 mg of Cu/mg of DOM, the measured conditional binding constant ((c)K(CuDOM)) decreased from 10(11.5) to 10(5.6) M(-1). A comparison of the binding constants measured by CLE-SPE with those measured by copper-ion-selective electrode and voltammetry demonstrates that the Cu:DOM ratio is an important factor controlling Cu(2+)-DOM binding strength even for DOM isolates of different types and different sources and for whole water samples. The results were modeled with Visual MINTEQ and compared to results from the biotic ligand model (BLM). The BLM was found to over-estimate Cu(2+) at low total copper concentrations and under-estimate Cu(2+) at high total copper concentrations.

摘要

铜与溶解有机质(DOM)的比例已知会影响 DOM 对铜的结合强度,但以前用于确定 Cu(2+)-DOM 结合强度的方法通常未在相同的 Cu:DOM 比下测量结合常数。在这项研究中,我们使用竞争配体交换-固相萃取 (CLE-SPE) 方法在 pH 6.6 和 0.01 M 离子强度下确定 Cu(2+)-DOM 结合的条件稳定常数,Cu:DOM 比跨越了铜离子选择性电极和伏安法测量的检测窗口。随着 Cu:DOM 比从 0.0005 增加到 0.1 mg Cu/mg DOM,测得的条件结合常数 ((c)K(CuDOM)) 从 10(11.5) 减少到 10(5.6) M(-1)。通过 CLE-SPE 测量的结合常数与通过铜离子选择性电极和伏安法测量的结合常数进行比较表明,即使对于不同类型和来源的 DOM 分离物以及整个水样,Cu:DOM 比也是控制 Cu(2+)-DOM 结合强度的重要因素。结果使用 Visual MINTEQ 进行建模,并与生物配体模型 (BLM) 的结果进行了比较。发现 BLM 在总铜浓度较低时高估 Cu(2+),而在总铜浓度较高时低估 Cu(2+)。

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