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Speciation, reactivity, and cycling of Fe and Pb in a meromictic lake

机译:铁质湖泊中铁和铅的形态,反应性和循环

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A suite of analytical techniques were combined to study the chemical speciation of Fe and Pb in the water column of a lake characterized by a biogenic meromixis (Paul Lake, MI). Depth profiles of Fe2+ and "dissolved" Pb display significant concentration gradients below the chemocline, i.e., they increase from below detection limit to ca. 100 mu M for Fe2+ and 2 nM for Pb,. Significant correlations between particulate organic matter, hydrous iron oxides, and particulate Pb suggest that Pb is scavenged by Fe-rich particles formed at the oxic-anoxic transition. Transmission electron microscopy shows that particles of hydrous iron oxides form complex aggregates with natural organic matter at and below the oxic-anoxic transition. Experiments with batch reactors show that these organo-mineral moieties remove Pb rapidly during their formation. Thermodynamic calculations predict that FeS and PbS are respectively saturated and oversaturated in the monimolimnion, although the presence of neither FeS nor PbS was observed. This suggests that the solubilities of Fe and Pb are influenced by complexation. Voltammetric experiments on filtered samples show that Pb is weakly complexed in the mixolimnion and strongly complexed in the monimolimnion. A conditional stability constant for Pb complexation is determined using metal titration curves assuming a simple 1:1 stoichiometry and gives logK(cond) = 9.4 +/- 0.8 M-1 in the monimolimnion. These speciation results are confirmed by ion exchange chromatography: which demonstrates that more than 98% of Pb is complexed by natural organic matter. Copyright (C) 2000 Elsevier Science Ltd. [References: 74]
机译:组合了一套分析技术,以研究以生物成因的混合菌为特征的湖泊水柱中的铁和铅的化学形态(密歇根州的保罗·莱克)。 Fe2 +和“溶解的” Pb的深度分布显示出低于趋化霉素的明显浓度梯度,即,它们从低于检测极限增加到大约。 Fe2 +为100μM,Pb为2 nM。颗粒有机物,水合氧化铁和颗粒铅之间的显着相关性表明,Pb被在富氧-缺氧转变时形成的富铁颗粒清除。透射电子显微镜显示,含水的氧化铁颗粒与有机-有机物在氧-缺氧转变时及以下形成复杂的聚集体。间歇反应器的实验表明,这些有机矿物质部分在形成过程中会迅速去除Pb。热力学计算表明,尽管未观察到FeS和PbS的存在,但单胺中FeS和PbS分别处于饱和和过饱和状态。这表明Fe和Pb的溶解度受络合作用的影响。对过滤后的样品进行伏安实验表明,铅在混合寡聚体中呈弱复合态,而在单imolimnion中则呈强复合性。使用简单的1:1化学计量的金属滴定曲线可确定Pb络合的条件稳定性常数,并在monimolimnion中给出logK(cond)= 9.4 +/- 0.8 M-1。这些形态分析结果通过离子交换色谱法得到证实:这表明超过98%的Pb被天然有机物络合。版权所有(C)2000 Elsevier Science Ltd. [参考:74]

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