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首页> 外文期刊>Water, Air, & Soil Pollution >Impacts of Metal Contamination in Calcareous Waters of Deûle River (France): Water Quality and Thermodynamic Studies on Metallic Mobility
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Impacts of Metal Contamination in Calcareous Waters of Deûle River (France): Water Quality and Thermodynamic Studies on Metallic Mobility

机译:德勒河(法国)钙质水中金属污染的影响:水质和热力学对金属迁移率的影响

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摘要

To evaluate adverse impacts of metal pollution originating from smelting activities on the aquatic ecosystem of Deûle river in northern France, water samples were collected from five selected stations along a contaminated region of this river (during two surveys: April–June 2005 and April–May 2007). All samples were analysed using inductively coupled plasma (ICP) atomic emission spectroscopy and/or ICP-mass spectrometry. Both the concentrations of dissolved and particulate elements were determined, and analytical data were compared with national and international water/particle quality guidelines as well as with some values reported in the literature for polluted rivers. For all the metals studied (i.e. Cd, Cr, Cu, Mn, Ni, Pb and Zn), our investigations showed that the effects of the dissolved phase on this aquatic medium were weak, according to water quality status established by US Environmental Protection Agency, USEPA (1994, 1999). Conversely, the levels of metals in suspended particulate matter were found to be much higher than local background contents and natural reference levels in French catchments. These levels were further quantified as “serious” contamination, i.e. above the “red” range that was previously elaborated by most existing metal-contamination scales in French basins of similar geology. The affinity of these metals for the particulate phase in Deûle waters follows the order: Cd >Cr > Pb > Zn = Mn > Cu > Ni. The trace metals released from anthropogenic activities were found to be partly bound to the reactive particulate phase, calcite, which is sensitive to physico-chemical variations occurring in the river ecosystem. To appraise the risk of ecotoxicity by metals, predictions on the ability to release metallic pollutants from calcite into waters were made successfully by testing three equilibrium geochemical speciation models (JCHESS, VISUAL MINTEQ and WINHUMIC) in which soluble organic matter was taken into account. Calculations showed that metal–water–calcite systems in Deûle River are close to thermodynamic equilibrium with generation of solid solutions, MeαCa1-αCO3, by (co)precipitation and/or adsorption reactions. On the basis of results mentioned here, more measurements of river chemistry and assessments of predictive capabilities of chosen water-quality guidelines with time would be developed in aquatic and calcareous areas for controlled dredging operations or other treatment engineering works. Keywords Suspended particle - Carbonate - Precipitation - Metals - Thermodynamic calculation - Distribution coefficient - Riverine pollution - Quality guidelines - IAP - Solubility product
机译:为了评估冶炼活动对法国北部代勒河水生生态系统造成的金属污染的不利影响,从该河受污染地区的五个选定站点收集了水样(在两次调查中:2005年4月至6月和4月至5月) 2007)。使用电感耦合等离子体(ICP)原子发射光谱和/或ICP-质谱分析所有样品。确定了溶解元素和颗粒元素的浓度,并将分析数据与国家和国际水/颗粒质量指南以及文献中污染河流的一些值进行了比较。对于所有研究的金属(例如Cd,Cr,Cu,Mn,Ni,Pb和Zn),我们的研究表明,根据美国环境保护署确定的水质状况,溶解相对该水生介质的影响较弱。 ,美国环保局(1994,1999)。相反,发现悬浮颗粒物中的金属含量远高于法国流域的当地背景含量和自然参考含量。这些水平被进一步量化为“严重”污染,即高于法国在类似地质盆地中大多数现有金属污染标度先前确定的“红色”范围。这些金属对Delele水中颗粒相的亲和力依次为:Cd> Cr> Pb> Zn = Mn> Cu> Ni。发现人为活动释放的痕量金属部分与反应性颗粒相方解石结合,方解石对河流生态系统中发生的物理化学变化敏感。为了评估金属的生态毒性风险,通过测试考虑了可溶性有机物的三个平衡地球化学形态模型(JCHESS,VISUAL MINTEQ和WINHUMIC),成功地预测了方解石将金属污染物释放到水中的能力。计算表明,德勒河中的金属-水-方解石体系通过(共)沉淀和/产生固溶体MeαCa 1-αCO 3 而接近热力学平衡。或吸附反应。根据此处提到的结果,将在水生和石灰质地区开发更多的河流化学测量方法以及对所选水质准则的预测能力的评估,以进行可控的挖泥作业或其他处理工程。悬浮颗粒-碳酸盐-沉淀-金属-热力学计算-分配系数-河流污染-质量准则-IAP-溶解度产品

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