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Laboratory Study of Chemical Speciation of Mercury in Lake Sediment and Water under Aerobic and Anaerobic Conditions

机译:好氧和厌氧条件下沉积物中湖泊和水中汞化学形态的室内研究

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Chemical speciation and partitioning of radiolabeled HgCl2 were studied in model aquatic systems consisting of undisturbed eutrophic lake sediment and water in plastic cylinders. The cylinders were either gradually made anaerobic by a gentle flow of N2-CO2 or kept aerobic by air flow. The proportion of methylated 203Hg was significantly higher, in both water and sediment, in the anaerobic systems than in the aerobic systems. The composition and total concentration of fatty acids originating from bacterial phospholipids, as well as the concentration of vitamin B12, including related cobalamins, were similar in sediments from the anaerobic and aerobic systems. Bacterial cell numbers were, on average, 3.6 times higher in the anaerobic water columns than in the aerobic ones. Volatilization of 203Hg occurred in all systems except in an autoclaved control and was of similar magnitudes in the anaerobic and aerobic systems. Incorporation of 203Hg into the sediment was significantly faster in the aerobic systems than in the anaerobic systems. These results suggest that episodes of anoxia in bottom waters and sediment cause an increase in net mercury methylation and, hence, an increase in bioavailable mercury.
机译:在模型水生系统中研究了放射性标记的HgCl2的化学形态和分配,该系统由未扰动的富营养化湖泊沉积物和塑料圆筒中的水组成。气瓶可以通过缓慢流动的N2-CO2逐渐变为厌氧状态,或者通过气流保持有氧状态。在厌氧系统中,水和沉积物中的甲基化203Hg比例明显高于需氧系统。来自细菌性磷脂的脂肪酸的组成和总浓度,以及来自厌氧和好氧系统的沉积物中的维生素B12(包括相关的钴胺素)的浓度相似。平均而言,厌氧水柱中的细菌细胞数比有氧细菌中的细菌细胞数高3.6倍。 203Hg的挥发发生在除高压灭菌控制系统之外的所有系统中,并且在厌氧和好氧系统中的挥发程度相似。在好氧系统中,将203Hg掺入沉积物中的速度明显快于厌氧系统。这些结果表明,底部水域和沉积物中的缺氧事件会导致净汞甲基化增加,从而导致生物利用汞增加。

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