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影响 Hg 物种在杜尔河和利斯河(法国北部)分布、形态和迁移的生物地球化学因素。

Biogeochemical factors affecting the distribution, speciation, and transport of Hg species in the Deûle and Lys Rivers (Northern France).

机构信息

Equipe Chimie Analytique et Marine, UMR-CNRS 8217, Université Lille 1, F-59655, Villeneuve d'Ascq, France.

出版信息

Environ Sci Pollut Res Int. 2015 Feb;22(4):2708-20. doi: 10.1007/s11356-014-3528-x. Epub 2014 Sep 11.

Abstract

The Deûle River is a highly polluted River by heavy metals caused by the historical discharges of ore minerals from the former ore smelter "Metaleurop." The potential mercury (Hg) pollution in the Deûle River implicates the importance of Hg distribution study in the river. As well as to configure the different biogeochemical factors that control the distribution and the potential transport of Hg to distant places. Four different sites were studied as follows: D-A (Deûle River, a site located upstream the river), D-B (Deûle River, a site located near a Zn, Pb, Cu, and Ni smelter that closed in 2003), L-C (Lys River, a site located upstream the confluence of the Deûle River with Lys River), and L-D (downstream the rivers confluence). Different Hg analyses were performed including total mercury in sediment (HgTS), methylmercury (MeHg) in sediment, total mercury in pore water (HgTPW), total mercury in surface water (HgTD), and total suspended particulate Hg in water (HgTP). HgTS decreases downstream from the Deûle River sites with a mean value of 11 ± 0.34 mg/kg to Lys River site (L-D) with a mean value of 0.53 ± 0.02 mg/kg at the confluence. The unaffected side of the Lys River, localized before the confluence (L-C), is characterized by low HgTS of an average value of 0.042 ± 0.003 mg/kg and high % MeHg reaching 4.2 %. Whereas, the highly contaminated Deûle sites are designated by low % MeHg with an average value of 0.053 %. Low pristine environments like that found in L-C site with more favorable biogeochemical conditions of lower concentrations of HgTS, sulfides, and Corg host more active biotic methylation than that of the highly polluted Deûle sites with high concentrations of HgTS and sulfides concentrations. Methylation in D-B (the closet site to Metaleurop smelter) is an old and recent methylation activity that has contributed to MeHg accumulation in the sediments as opposed to the exclusive recent events of methylation in Lys sites. MeHg in all sites is produced in situ rather than exported from other potential sources confirmed by significant relations of % MeHg with %Corg and AVS. Hg pollution is transported from the Deûle River to the Lys River (L-C and L-D) through suspended particles leached or remobilized from the River catchment. The dominance of reducing conditions in the Deûle River attributed to higher sulfide concentration has contributed to higher HgTPW than the Lys sites. Diffusive fluxes of HgT from sediment to water column for the Deûle and Lys River sites (L-C and L-D) were estimated to be 224, 53, and 2 ng/cm(2) year, respectively.

摘要

杜尔河是一条受重金属污染的河流,这些重金属是由前矿石冶炼厂“Metaleurop”历史排放的矿石矿物造成的。杜尔河潜在的汞(Hg)污染暗示了研究河水中 Hg 分布的重要性。以及配置控制 Hg 分布和潜在迁移到远处的不同生物地球化学因素。研究了以下四个不同的地点:D-A(杜尔河,位于河流上游的一个地点)、D-B(杜尔河,位于一个锌、铅、铜和镍冶炼厂附近的一个地点,该冶炼厂已于 2003 年关闭)、L-C(Lys 河,位于杜尔河与 Lys 河汇合处上游的一个地点)和 L-D(河流汇合处下游)。进行了不同的 Hg 分析,包括沉积物中的总汞(HgTS)、沉积物中的甲基汞(MeHg)、孔隙水中的总汞(HgTPW)、地表水(HgTD)中的总汞和水中的总悬浮颗粒汞(HgTP)。HgTS 从杜尔河各地点向下游减少,杜尔河各地点的平均值为 11 ± 0.34 mg/kg,至 Lys 河各地点(L-D)的平均值为 0.53 ± 0.02 mg/kg,在汇合处。Lys 河的未受影响一侧,位于汇合处之前(L-C),其特征是 HgTS 平均值低,为 0.042 ± 0.003 mg/kg,且 MeHg%高,达到 4.2%。而受污染严重的杜尔河各地点则以低 MeHg%为特征,平均值为 0.053%。像 L-C 这样的原始环境较低,HgTS、硫化物和 Corg 的浓度较低,有利于更活跃的生物甲基化,而受污染严重的杜尔河各地点 HgTS 和硫化物浓度较高,生物甲基化程度较低。D-B(离 Metaleurop 冶炼厂最近的地点)的甲基化是一种古老的和新的甲基化活动,导致沉积物中 MeHg 积累,而 Lys 地点的甲基化则是最近才发生的事件。所有地点的 MeHg 都是就地产生的,而不是从其他潜在来源输出的,这一点从 MeHg 与% Corg 和 AVS 的显著关系得到了证实。Hg 污染通过从流域冲刷或再移动的悬浮颗粒从杜尔河输送到利斯河(L-C 和 L-D)。杜尔河的还原条件占主导地位,由于硫化物浓度较高,导致 HgTPW 高于利斯河各地点。杜尔河和利斯河各地点(L-C 和 L-D)的 HgT 从沉积物向水柱的扩散通量估计分别为 224、53 和 2 ng/cm(2)年。

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