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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Groundwater flow in an arsenic-contaminated aquifer, Mekong Delta, Cambodia
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Groundwater flow in an arsenic-contaminated aquifer, Mekong Delta, Cambodia

机译:柬埔寨湄公河三角洲受砷污染的含水层中的地下水流

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摘要

To advance understanding of hydrological influences on As concentrations within groundwaters of Southeast Asia, the flow system of an As-rich aquifer on the Mekong Delta in Cambodia where flow patterns have not been disturbed by irrigation well pumping was examined. Monitoring of water levels in a network of installed wells, extending over a 50km(2) area, indicates that groundwater flow is dominated by seasonally-variable gradients developed between the river and the inland wetland basins. While the gradient inverts annually, net groundwater flow is from the wetlands to the river. Hydraulic parameters of the aquifer (K approximate to 10(-4) ms(-1)) and overlying clay aquitard (K approximate to 10(-8) ms(-1)) were determined using grain size. permeameter and slug test analyses; when coupled with observed gradients, they indicate a net groundwater flow velocity of 0.04-0.4 ma(-1) downward through the clay and 1-13 ma(-1) horizontally within the sand aquifer, producing aquifer residence times on the order 100-1000 a. The results of numerical modeling support this conceptual model of the flow system and, when integrated with observed spatial trends in dissolved As concentrations, reveal that the shallow sediments (upper 2-10 m of fine-grained material) are an important Source of As to the underlying aquifer. (C) 2008 Elsevier Ltd. All rights reserved.
机译:为了加深对东南亚地下水中砷浓度的水文影响的了解,研究了柬埔寨湄公河三角洲富砷含水层的水流系统,该系统的水流模式并未受到灌溉井抽水的干扰。监测已安装的井网中的水位,该井的面积超过50 km(2),表明地下水流量受河流和内陆湿地盆地之间形成的季节性变化梯度的控制。虽然梯度每年都在倒转,但地下水的净流量却是从湿地流向河流。使用粒度确定含水层的水力参数(K大约为10(-4)ms(-1))和上覆的黏土基层的水力参数(K大约为10(-8)ms(-1))。渗透仪和弹头测试分析;当与观测到的坡度耦合时,它们表明净水流速为0.04-0.4 ma(-1)向下穿过粘土,在砂含水层内水平为1-13 ma(-1),产生的含水层停留时间约为100- 1000个数值模拟的结果支持了该流动系统的概念模型,并且与观察到的溶解态As浓度的空间趋势相结合时,表明浅层沉积物(细粒物质上方2-10 m)是As的重要来源。基础含水层。 (C)2008 Elsevier Ltd.保留所有权利。

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