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Pseudopolarographic determination of Cd2+ complexation in freshwater

机译:伪极谱法测定淡水中Cd2 +的络合物

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Pseudopolarography was used to detect Cd2+ complexes in samples collected at several locations along the Potomac River in June and September, 2004. Irrespective of site and sampling time, no weak inorganic Cd2+ species were present. However, up to two stable Cd2+-organic complexes were detected at each site. These unknown Cd2+ complexes were characterized by their half-wave potential (E-1/2). The E-1/2 values indicated certain Cd2+ complexes were common at different sites during each sampling but different complexes were observed in June and September. A Cd2+ chelate scale, generated from model ligands, was used to estimate the thermodynamic stability constants (K-THERM) of the unknown complexes, which ranged from log K-THERM = 21.5-32.0. Pseudopolarography did not recover all Cd2+ in the samples. This was partly attributed to highly stable Cd-sulfide species; owing to the presence of acid volatile sulfide at concentrations greater than total dissolved Cd2+. These electrochemically inert species may be multinuclear Cd-sulfide clusters and/or nanoparticles with K-THERM values that exceed the detection window of pseudopolarography (log K-THERM > 34.4).
机译:伪极谱法用于检测2004年6月和9月在波托马克河沿岸几个地点采集的样品中的Cd2 +络合物。无论位置和采样时间如何,都没有弱的无机Cd2 +物种存在。但是,在每个位点最多检测到两个稳定的Cd2 +-有机物。这些未知的Cd2 +复合物的特征在于其半波电势(E-1 / 2)。 E-1 / 2值表明某些Cd2 +配合物在每个采样期间的不同位置都是常见的,但在6月和9月观察到了不同的配合物。由模型配体生成的Cd2 +螯合标度用于估算未知复合物的热力学稳定性常数(K-THERM),其范围为log K-THERM = 21.5-32.0。伪极谱法不能回收样品中的所有Cd2 +。这部分归因于高度稳定的硫化镉。由于存在的酸性挥发性硫化物的浓度大于溶解的Cd2 +总量。这些电化学惰性物质可能是多核Cd硫化物簇和/或K-THERM值超过伪极谱法检测窗口(log K-THERM> 34.4)的纳米颗粒。

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