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用示差极谱法研究浓缩海洋溶解有机物与铜和锌的相互作用

Study of interactions of concentrated marine dissolved organic matter with copper and zinc by pseudopolarography.

作者信息

Nicolau Rudy, Louis Yoann, Omanović Dario, Garnier Cédric, Mounier Stéphane, Pizeta Ivanka

机构信息

Laboratoire PROTEE, Université du Sud Toulon - Var - BP 132, 83957 La Garde, France.

出版信息

Anal Chim Acta. 2008 Jun 16;618(1):35-42. doi: 10.1016/j.aca.2008.04.038. Epub 2008 Apr 24.

Abstract

The interaction of dissolved organic matter (DOM) with copper and zinc in a concentrated seawater sample was characterised by pseudopolarography. Measurements performed at increased concentrations of copper(II) ions showed successive saturation of active DOM sites which indicate possible partition of copper between (i) free or labile complexes, (ii) reduced and released within the potential window of the method, and (iii) electroinactive copper complexes. Pseudopolarograms measured at pH 4 indicate a release of copper which was bound to the active sites of DOM that formed non-labile complexes. Variation of the peak position and half-peak width along the scanned deposition potentials and with the increasing concentration of copper bear the information about the complex electrochemical processes at the electrode surface and in the bulk of the solution. Pseudopolarograms of zinc showed a strong dependence of the peak current and the peak position along the scanned deposition potentials on pH values, indicating preferentially complexation of zinc with carboxylic-like active sites of DOM in the measured sample. Pseudopolarography is a valuable method in the trace metal complexation and speciation studies, serving as a fingerprint of the analysed sample.

摘要

采用示差极谱法对浓缩海水样品中溶解有机物(DOM)与铜和锌的相互作用进行了表征。在铜(II)离子浓度增加的情况下进行的测量显示,活性DOM位点相继饱和,这表明铜可能在以下几种情况之间分配:(i)游离或不稳定络合物;(ii)在该方法的电位窗口内被还原并释放;(iii)电惰性铜络合物。在pH值为4时测得的示差极谱图表明,与DOM活性位点结合形成非不稳定络合物的铜发生了释放。沿着扫描的沉积电位以及随着铜浓度的增加,峰位置和半峰宽的变化承载着有关电极表面和溶液主体中复杂电化学过程的信息。锌的示差极谱图显示,峰电流和沿着扫描沉积电位的峰位置强烈依赖于pH值,这表明在所测样品中锌优先与DOM的类羧基活性位点络合。示差极谱法在痕量金属络合和形态研究中是一种有价值的方法,可作为分析样品的指纹图谱。

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