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首页> 外文期刊>Journal of Hydrology: Regional Studies >Arsenic mobilization in an alluvial aquifer of the Terai region, Nepal
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Arsenic mobilization in an alluvial aquifer of the Terai region, Nepal

机译:尼泊尔特莱地区冲积层中的砷动员

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Study Region A shallow (50 m) alluvial aquifer in the Terai region of Nepal. Study Focus We examine the hydrogeochemical characteristics of a shallow alluvial aquifer system in the Terai region (Nawalparasi district) to identify possible mechanisms and controls on geogenic As mobilization in groundwater. Groundwater and river water samples from a topo-gradient flow-path and floodplain of a minor river draining the Siwalik forehills were analyzed for physico-chemical parameters. New Hydrological Insights for the Region The aquifer is characterized by Ca-HCO 3 type water and is multi-contaminated, with the WHO guideline values exceeded for As, Mn and F in 80%, 70% and 40% of cases respectively. The middle portion of the floodplain was heavily contaminated with As, predominantly as As(III). The river water displayed some evidence of reductive processes in the hyporheic zone contributing As, Fe and Mn to baseflow and also had elevated fluoride. The generally sub-oxic conditions, dominance of As(III) and Fe 2+ species and positive correlation between As and both NH 3 and UV-absorbance at 254 nm suggests that oxidation of organic matter coupled with microbial mediated reductive processes are important for mobilizing As in the aquifer. The apparent decoupling between As(III) (aq) and Fe 2+ (aq) may be explained by precipitation of siderite, but further work is required to resolve this unambiguously. Along with reductive processes, other geochemical mechanisms including silicate weathering and precipitation/dissolution of carbonate minerals, control the solute and major ion composition of groundwater.
机译:研究区域尼泊尔Terai地区的浅层(<50 m)冲积层。研究重点我们研究了Terai地区(Nawalparasi区)的浅冲积含水层系统的水文地球化学特征,以确定地下水中成因As动员的可能机制和控制方法。分析了地形梯度流径和一条排泄Siwalik前山的小河的洪泛区的地下水和河水样品的理化参数。该地区的新水文见识含水层以Ca-HCO 3型水为特征,并且受到多种污染,在80%,70%和40%的情况下,As,Mn和F均超过WHO准则值。洪泛区的中部被As重污染,主要是As(III)。河流水显示出在流变带中还原过程的一些证据,这有助于砷,铁和锰的基流,并且氟化物含量升高。一般的亚氧条件,As(III)和Fe 2+物种的优势以及As与NH 3和254 nm的紫外线吸收之间呈正相关关系表明,有机物的氧化与微生物介导的还原过程结合对于动员很重要如在含水层中。 As(III)(aq)和Fe 2+(aq)之间的表观去耦可以用菱铁矿的沉淀来解释,但是需要进一步的工作来明确解决。除还原过程外,其他地球化学机制(包括硅酸盐风化和碳酸盐矿物的沉淀/溶解)控制着地下水的溶质和主要离子组成。

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