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Evaluation of Mercury Transformation and Benthic Organisms Uptake in a Creek Sediment of Pearl River Estuary, China

机译:中国珍珠河口溪水泥沙泥浆转化与底栖生物的评价

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A large fraction of mercury contaminant in the environment is from industrial production, and it potentially impairs human health once entering the food chain. Millions of people reside in the Pearl River Delta region, and water quality in the estuary directly affects their drinking water safety. Considering the highly intense anthropogenic activities and industrial productions, we attempted to measure the sediment mercury concentration in the Pearl River estuary. In this work, samples of a creek sediment within this region were collected and mercury concentrations were quantified. Total mercury, simultaneously extracted mercury, methylmercury, and bio-accumulated mercury were individually assayed. Results indicated that total mercury concentrations of investigated sites ranged from 1.073 to 4.450 μg/g dry sediment. The mercury in the sediment also transformed into more toxic methylmercury, which then adversely affected benthos biodiversity. Correlation analysis revealed that, mercury was accumulated into benthic microorganisms, mainly through the uptake of methylmercury. High concentrations of acid-volatile sulfide in the sediment indicated the presence of active sulfate-reducing bacteria, which could also catalytically transform inorganic mercury into methylmercury. Correlation analysis further showed that sulfate-reducing bacteria activity accounted for methylmercury formation.
机译:环境中的大部分汞污染物来自工业生产,曾经损害人类健康,曾经进入食物链。数百万人居住在珠江三角洲地区,河口水质直接影响其饮用水安全。考虑到高度强烈的人为活动和工业生产,我们试图测量珠江河口中的沉积物汞浓度。在这项工作中,收集该区域内的溪沉淀物的样品,并定量汞浓度。单独测定总汞,同时提取汞,甲基汞和生物积聚的汞。结果表明,研究的汞浓度为1.073至4.450μg/ g干燥沉积物。沉积物中的汞也转化为更有毒的甲基汞,随后对Benthos生物多样性产生不利影响。相关分析显示,汞累积到底栖微生物中,主要是通过甲基汞的摄取。沉积物中高浓度的酸 - 挥发性硫化物表明存在活性硫酸盐还原细菌,其也可以将无机汞催化成甲基汞。相关性分析进一步表明,还原硫酸盐降低的细菌活性占甲基汞。

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