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The impact of high Zn degrees concentrations on the application of AGNES to determine free Zn(II) concentration

机译:高锌度浓度对应用AGNES测定游离Zn(II)浓度的影响

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摘要

AGNES (Absence of Gradients and Nernstian Equilibrium Stripping) determination of free Zn(II) in a solution can be affected by the reaching of high Zn degrees concentrations inside the amalgam. At concentrations about the solubility limit of Zn degrees in mercury, the formation of dendrites and powders around the mercury surface can be seen with an optical microscope. At concentrations of Zn degrees quite below the solubility limit, an anomalous stripping current appears which increases with decreasing supporting electrolyte concentration. The current along the stripping time exhibits a convex shape, which is labelled here as "anomalous convex behaviour" (acb). The origin of acb is tentatively ascribed to different kinetic reasons (amongst which the electroneutrality limitation due to low ionic strength outstands), but more than one cause is necessary for a full account of the experimental observations. With various strategies, like monitoring the charge as response function or by application of lower gains, AGNES can successfully probe these high concentrations.
机译:溶液中游离Zn(II)的AGNES(无梯度和能斯特平衡汽提法)的测定可能受到汞齐内部高Zn度浓度的影响。在大约Zn程度在汞中的溶解度极限的浓度下,可以用光学显微镜观察到汞表面周围枝晶和粉末的形成。当Zn度的浓度大大低于溶解度极限时,出现反常的剥离电流,其随着支持电解质浓度的降低而增加。沿着剥离时间的电流呈现出凸形,在此被标记为“异常凸形行为”(acb)。暂时将acb的起因归因于不同的动力学原因(其中,由于离子强度低而引起的电子中性限制很明显),但是要充分考虑到实验观察结果,就必须有多个原因。通过各种策略,例如将电荷作为响应函数进行监视或通过应用较低的增益,AGNES可以成功地探测这些高浓度。

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