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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Mobility of arsenic in West Bengal aquifers conducting low and high groundwater arsenic. Part I: Comparative hydrochemical and hydrogeological characteristics
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Mobility of arsenic in West Bengal aquifers conducting low and high groundwater arsenic. Part I: Comparative hydrochemical and hydrogeological characteristics

机译:西孟加拉国含水层中的砷的迁移量,地下水的砷含量高低不一。第一部分:水化学和水文地质特征比较

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摘要

The present study demonstrates the importance of hydrogeochemical characteristics (groundwater flow and recharge) of an aquifer in the release of As to groundwater. The study area (similar to 20 km(2)) is located in Chakdaha block, Nadia district, West Bengal, which hosts groundwaters of variable As content. The spatial distribution pattern of As is patchy with areas containing groundwater that is high in As (> 200 mu g L-1) found in close vicinity to low As (< 50 mu g L-1) groundwaters (within 100 m). The concentration of groundwater As is found to decrease with depth. In addition, the data shows that there is no conspicuous relationship between high groundwater As concentration and high groundwater abstraction, although the central cone of depression has enlarged over 2 a and is extending towards the SE of the study area. The river Hooghly, which forms the NW boundary of the study site, shows dual behaviour (effluent and influent during pre- and post-monsoon periods, respectively), complicating the site hydrogeology. The observed groundwater flow lines tend to be deflected away from the high As portion of the aquifer, indicating that groundwater movement is very sluggish in the As-rich area. This leads to a high residence time for this groundwater package, prolonging sediment-water interaction, and hence facilitating groundwater As release. (c) 2008 Elsevier Ltd. All rights reserved.
机译:本研究证明了含水层的水文地球化学特征(地下水流动和补给)在向地下水释放砷中的重要性。研究区域(约20 km(2))位于西孟加拉邦纳迪亚区查克达哈区块,该地区拥有砷含量可变的地下水。砷的空间分布格局在含砷量高的地区(> 200μgL-1)中与低砷(<50μgL-1)的地下水(100 m以内)非​​常接近。发现地下水As的浓度随深度而降低。此外,数据表明,尽管凹陷的中心锥扩大了2 a并向研究区域的SE延伸,但高地下水As浓度与高地下水抽取之间没有明显的关系。形成研究地点西北边界的Hooghly河表现出双重行为(分别在季风前后和季风后流入和流出),使该地点的水文地质复杂化。观察到的地下水流线倾向于偏离含水层的高砷部分,这表明富砷地区的地下水运动非常缓慢。这导致该地下水包的停留时间较长,延长了沉积物与水的相互作用,从而促进了地下水As的释放。 (c)2008 Elsevier Ltd.保留所有权利。

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