首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Mercury speciation in soils of the industrialised Thur River catchment (Alsace, France)
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Mercury speciation in soils of the industrialised Thur River catchment (Alsace, France)

机译:工业化的瑟河集水区土壤中的汞形态(法国阿尔萨斯)

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摘要

Methylmercury (McHg) and total Hg (THg) concentrations in soil profiles were monitored in the Thur River basin (Alsace, France), where a chlor-alkali plant has been located in the city of Vieux-Thann since the 1930s. Three soil types were studied according to their characteristics and location in the catchment: industrial soil, grassland soil and alluvial soil. Contamination of MeHg and THg in soil was important in the vicinity of the plant, especially in industrial and alluvial soil. Concentrations of MeHg reached 27 ng g(-1) and 29,000 ng g(-1) for THg, exceeding the predictable no effect concentration. Significant ecotoxicological risk exists in this area and remedial actions on several soil types are suggested. In each type of soil, McHg concentrations were highest in topsoil, which decreased with depth. Concentrations of MeHg were negatively correlated with soil organic matter and total S, particularly when MeHg concentrations exceeded 8 ng g(-1). Under these conditions, MeHg concentrations in soil seemed to be influenced by THg, soil organic matter and total S concentrations. It was found that high MeHg/THg ratios (near 2%) in soil were mainly related to the combined soil environmental conditions such as low THg concentrations, low organic C/N ratios (< 11) and relatively low PH (5-5.5). Nevertheless, even when the MeHg/THg ratio was low (similar to 0.04%), MeHg and THg concentrations were elevated, up to 13 ng g(-1) and to 29,000 ng g(-1), respectively. Thus, both THg and MeHg concentrations should be taken into account to assess potential environmental risks of Hg. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在图尔河流域(法国阿尔萨斯)对土壤剖面中的甲基汞(McHg)和总汞(THg)浓度进行了监测,自1930年代以来,该厂一直在维纳-坦(Vieux-Thann)市建立氯碱工厂。根据流域的特征和位置研究了三种土壤类型:工业土壤,草地土壤和冲积土壤。在植物附近,特别是在工业和冲积土壤中,土壤中MeHg和THg的污染很重要。 MeHg的THg浓度达到27 ng g(-1)和29,000 ng g(-1),超过了预计的无效浓度。该地区存在严重的生态毒理风险,建议对几种土壤类型采取补救措施。在每种类型的土壤中,表层土壤中的McHg浓度最高,随深度的增加而降低。 MeHg的浓度与土壤有机质和总S呈负相关,尤其是当MeHg的浓度超过8 ng g(-1)时。在这些条件下,土壤中的甲基汞浓度似乎受到THg,土壤有机质和总S浓度的影响。研究发现,土壤中高的MeHg / THg比(接近2%)主要与土壤环境综合条件有关,例如THg浓度低,有机C / N比低(<11)和PH相对低(5-5.5)。 。尽管如此,即使当MeHg / THg比例较低(约0.04%)时,MeHg和THg的浓度仍升高,分别高达13 ng g(-1)和29,000 ng g(-1)。因此,在评估汞的潜在环境风险时,应同时考虑THg和MeHg的浓度。 (c)2006 Elsevier Ltd.保留所有权利。

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