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Constants for mercury binding by dissolved organic matter isolates from the Florida Everglades

机译:来自佛罗里达大沼泽地的溶解有机物分离物中汞结合的常数

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Dissolved organic matter (DOM) has been implicated as an important complexing agent for Hg that can affect its mobility and bioavailability in aquatic ecosystems. However, binding constants for natural Hg-DOM complexes are not well known. We employed a competitive ligand approach to estimate conditional stability constants for Hg complexes with DOM isolates collected from Florida Everglades surface waters. The isolates examined were the hydrophobic fraction of DOM from a eutrophic, sulfidic site (F1-HPoA) and the hydrophilic fraction from an oligotrophic, low-sulfide site (2BS-HPiA). Our experimental determinations utilized overall octanol-water partitioning coefficients (D_(ow)) for ~(203)Hg at 0.01 M chloride and across pH and DOM concentration gradients. Use of this radioisotope allowed rapid determinations of Hg concentrations in both water and octanol phases without problems of matrix interference. Conditional stability constants (I = 0.06, 23℃) were log K' = 11.8 for F1-HPoA and log K' = 10.6 for 2BS-HPiA. These are similar to previously published stability constants for Hg binding to low-molecular-weight thiols. Further, F1-HPoA showed a pH-dependent decline in D_(ow) that was consistent with models of Hg complexation with thiol groups as the dominant Hg binding sites in DOM. These experiments demonstrate that the DOM isolates are stronger ligands for HG than chloride ion or ethylenediamine-tetraacetic acid. Speciation calculations indicate that at the DOM concentrations frequently measured in Everglades, 20 to 40 μM, significant complexation of Hg by DOM would be expected in aerobic (sulfide-free) surface waters.
机译:溶解有机物(DOM)被认为是汞的重要络合剂,会影响其在水生生态系统中的迁移率和生物利用度。然而,天然Hg-DOM复合物的结合常数不是众所周知的。我们采用竞争性配体方法来估算从佛罗里达大沼泽地表水收集的DOM分离物与Hg配合物的条件稳定性常数。检查的分离物是富营养的硫化物位点(F1-HPoA)的DOM疏水部分和低营养的低硫化物位点(2BS-HPiA)的亲水部分。我们的实验方法是在0.01 M氯化物下以及在整个pH和DOM浓度梯度下,利用〜(203)Hg的总辛醇-水分配系数(D_(ow))。使用这种放射性同位素可以快速测定水相和辛醇相中的汞浓度,而不会出现基质干扰的问题。 F1-HPoA的条件稳定性常数(I = 0.06,23℃)为log K'= 11.8,而2BS-HPiA的log K'= 10.6。这些类似于先前公布的汞与低分子量硫醇结合的稳定性常数。此外,F1-HPoA显示D_(ow)的pH依赖性下降,这与Hg与巯基作为DOM中主要Hg结合位点的络合模型相一致。这些实验表明,与氯离子或乙二胺四乙酸相比,DOM分离物对HG具有更强的配体作用。形态计算表明,在大沼泽地中经常测得的DOM浓度为20至40μM时,在好氧(无硫化物)地表水中,可以预期DOM引起的汞显着络合。

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