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Mercury emissions from flooded soils and sediments in Germany are an underestimated problem: challenges for reliable risk assessments and management strategies

机译:洪水淹没土壤和德国沉积物的汞排放是一个低估的问题:可靠的风险评估和管理策略的挑战

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Environmental pollution by mercury is a world-wide problem. Particularly floodplain ecosystems are frequently affected. One example is the Elbe River in Germany and its catchment areas; large amounts of Hg from a range of anthropogenic and geogenic sources have been accumulated in the soils of these floodplains. They serve as sink for Hg originating from the surface water of adjacent river. Today, the vastly elevated Hg contents of the floodplain soils at the Elbe River often exceed even the action values of the German Soil Conservation Law. This is especially important as Hg polluted areas at the Elbe River achieve several hundred square kilometres. Thus, authorities are coerced by law to conduct an appropriate risk assessment and to implement practical actions to eliminate or reduce environmental problems. A reliable risk assessment particularly with view to organisms (vegetation as green fodder and hay production, grazing and wild animals) to avoid the transfer of Hg into the human food chain, requires an authentic determination of Hg fluxes and their dynamics since gaseous emissions from soil to atmosphere are an important pathway of Hg. However, reliable estimates of Hg fluxes from the highly polluted floodplain soils at the Elbe River and its tributaries, and its influencing factors are scarce. For this purpose, we have developed a new method to determine mercury emissions from soils at various sites. Our objectives were i) to quantify seasonal variations of total gaseous mercury (TGM) fluxes for floodplain soils at the Elbe River, ii) to provide insights into physico-chemical processes regulating these TGM fluxes, and iii) to quantify the impacts of the controlling factors soil temperature and soil water content on Hg volatilization from a typical contaminated floodplain soil within soil microcosm experiments under various controlled temperature and moisture conditions. Our study provides insight into TGM emissions from highly Hg-polluted floodplain soils in Germany and that those emissions are an underestimated problem. Current needs for reliable risk assessments, the induced implications for authorities, and future challenges will be discussed. The presented data will contribute to a better understanding of seasonal dynamics of Hg fluxes and its controlling factors. This presentation should be of large interest for a wide international audience, such as environmental scientists and managers, applied ecologists, and authorities.
机译:汞的环境污染是一个全球问题。特别是洪泛生态系统经常受到影响。一个例子是德国及其集水区的易北河;来自一系列人为和造成源源的大量Hg已经积累在这些洪水的土壤中。它们用作源自邻近河流的地表水的Hg水槽。如今,易北河洪泛区土壤的巨大巨大含量甚至甚至超过德国土壤保护法的动作价值。这尤其重要,易北河污染区域达到数百平方公里。因此,当局被法律强制进行适当的风险评估,并实施消除或减少环境问题的实际行动。一种可靠的风险评估,特别是对生物(植被为绿色饲料和干草生产,放牧和野生动物),以避免Hg转移到人类食物链中,因此需要真实测定Hg助焊剂的测定,因为土壤的气态排放以来气氛是HG的重要途径。然而,从易北河及其支流的高度污染的洪泛区土壤中可靠地估计HG助焊剂,其影响因素是稀缺的。为此目的,我们开发了一种新方法,可以确定各地土壤中的汞排放。我们的目标是i)量化Elbe River,II)在伊利河河上的洪泛菌土壤的季节性汞(TGM)势态的季节变化,以提供调节这些TGM助条件的物理化学方法和III)的洞察,以量化控制的影响各种控制温度和水分条件下土壤微科本实验中典型污染泛洪叶土壤温度和土壤含水量的影响因素。我们的研究提供了德国高度HG污染的洪泛区土壤的TGM排放,以及这些排放是低估的问题。目前对可靠风险评估的需求,将讨论对当局的诱导的影响以及未来的挑战。呈现的数据将有助于更好地理解HG助焊剂的季节性动态及其控制因素。本演示文稿应该对广泛的国际观众来说,例如环境科学家和经理,应用生态学家和当局。

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