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Persistent Hg contamination and occurrence of Hg-methylating transcript (hgcA) downstream of a chlor-alkali plant in the Olt River (Romania)

机译:持久性汞污染和奥尔特河(罗马尼亚)氯碱工厂下游的甲基化汞转录物(hgcA)的发生

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摘要

Chlor-alkali plants using mercury (Hg) cell technology are acute point sources of Hg pollution in the aquatic environment. While there have been recent efforts to reduce the use of Hg cells, some of the emitted Hg can be transformed to neurotoxic methylmercury (MeHg). Here, we aimed (i) to study the dispersion of Hg in four reservoirs located downstream of a chlor-alkali plant along the Olt River (Romania) and (ii) to track the activity of bacterial functional genes involved in Hg methylation. Total Hg (THg) concentrations in water and sediments decreased successively from the initial reservoir to downstream reservoirs. Suspended fine size particles and seston appeared to be responsible for the transport of THg into downstream reservoirs, while macrophytes reflected the local bioavailability of Hg. The concentration and proportion of MeHg were correlated with THg, but were not correlated with bacterial activity in sediments, while the abundance of hgcA transcript correlated with organic matter and Cl− concentration, indicating the importance of Hg bioavailability in sediments for Hg methylation. Our data clearly highlights the importance of considering Hg contamination as a legacy pollutant since there is a high risk of continued Hg accumulation in food webs long after Hg-cell phase out.
机译:使用汞(Hg)细胞技术的氯碱植物是水生环境中汞污染的急性源头。尽管最近有努力减少Hg细胞的使用,但某些释放出的Hg可以转化为神经毒性甲基汞(MeHg)。在这里,我们的目的是(i)研究Hg在位于沿奥尔特河(罗马尼亚)的氯碱植物下游的四个水库中的Hg扩散,以及(ii)跟踪参与Hg甲基化的细菌功能基因的活性。从初始水库到下游水库,水和沉积物中的总Hg(THg)浓度连续下降。悬浮的细小颗粒和硒似乎是THg向下游水库的运输的原因,而大型植物则反映了Hg的局部生物利用度。 MeHg的浓度和比例与THg相关,但与沉积物中的细菌活性不相关,而hgcA转录本的丰度与有机物和Cl-浓度相关,表明Hg的生物利用度对Hg甲基化的重要性。我们的数据清楚地表明了将汞污染视为遗留污染物的重要性,因为在汞细胞逐步淘汰后很长一段时间内,食物网中汞不断累积的风险很高。

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