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印度南部硬岩地区地下水地球化学及水文地球化学过程的识别。

Groundwater geochemistry and identification of hydrogeochemical processes in a hard rock region, Southern India.

机构信息

Department of Civil Engineering, Government College of Engineering, Salem, 636 011, Tamil Nadu, India.

出版信息

Environ Monit Assess. 2010 Mar;162(1-4):123-37. doi: 10.1007/s10661-009-0781-4. Epub 2009 Feb 28.

Abstract

Hydrogeochemical investigations were carried out in Chithar River basin, Tamil Nadu, India to identify the major geochemical processes that regulate groundwater chemistry. For this study, long-term (1991-1997) and recent water quality data (2001-2002) for 30 groundwater wells spread over the study area were used to understand the groundwater geochemistry and hydrogeochemical process regulating groundwater quality. Groundwater quality data obtained from more than 400 water samples were employed. Results of electrical conductivity and chloride express large variation between minimum and maximum values and high standard deviation, which suggests that the water chemistry in the study region is not homogeneous and influenced by complex contamination sources and geochemical process. Nitrate and depth to water table expose the influences of surface contamination sources, whereas dissolved silica, fluoride and alkalinity strongly suggest the effect of rock-water interaction. In the study region, weathering of carbonate and silicate minerals and ion exchange reactions predominantly regulate major ion chemistry. Besides, the concentrations of sulphate, chloride and nitrate firmly suggest the impact of agricultural activities such as irrigation return flow, fertiliser application, etc on water chemistry in the study region.

摘要

印度泰米尔纳德邦的奇塔尔河流域进行了水文地球化学调查,以确定控制地下水化学的主要地球化学过程。在这项研究中,利用了覆盖研究区域的 30 口地下水井的长期(1991-1997 年)和近期(2001-2002 年)水质数据,以了解地下水地球化学和控制地下水质量的水文地球化学过程。利用了来自 400 多个水样的地下水质量数据。电导率和氯的结果表明,最小值和最大值之间以及标准偏差之间存在很大的变化,这表明研究区域的水化学不均匀,并受到复杂的污染来源和地球化学过程的影响。硝酸盐和地下水位深度表明了地表污染来源的影响,而溶解硅、氟化物和碱度强烈表明了岩石-水相互作用的影响。在研究区域,碳酸盐和硅酸盐矿物的风化以及离子交换反应主要控制主要离子化学。此外,硫酸盐、氯化物和硝酸盐的浓度强烈表明农业活动(如灌溉回流、施肥等)对研究区域水化学的影响。

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