National Geophysical Research Institute (CSIR), Hyderabad 500007, India.
Environ Monit Assess. 2012 Jun;184(6):3929-42. doi: 10.1007/s10661-011-2234-0. Epub 2011 Jul 26.
The sustainable development of the limited groundwater resources in the tropical island requires a thorough understanding of detail hydrogeological regime including the hydrochemical behavior of groundwater. Detail analysis of chemical data of groundwater helps in assessing the different groundwater zone affected by formation as well as sea water. Groundwater and saline water interaction is better understood using groundwater major ion chemistry over an island aquifer. Multivariate methods to analyze the geochemical data are used to understand geochemical evolution of groundwater. The methods are successfully used to group the data to evaluate influence of various environs in the study area. Various classification methods such as piper, correlation method, and salinity hazard measurements are also employed to critical study of geochemical characteristics of groundwater to identify vulnerable parts of the aquifer. These approaches have been used to successfully evaluate the aquifer zones of a tiny island off the west coast of India. The most part of island is found to be safe for drinking, however some parts of island are identified that are affected by sea water ingress and dissolution of formation minerals. The analysis has successfully leaded to identification of that part of aquifer on the island which needs immediate attention for restoration and avoids further deterioration.
为了实现热带岛屿有限地下水资源的可持续发展,需要深入了解详细的水文地质状况,包括地下水的水化学行为。对地下水化学数据的详细分析有助于评估受地层和海水影响的不同地下水带。在岛屿含水层中,利用地下水主要离子化学可以更好地理解地下水和咸水的相互作用。多元统计方法被用来分析地球化学数据,以了解地下水的地球化学演化。这些方法被成功地用来对数据进行分组,以评估研究区域内各种环境因素的影响。还采用了各种分类方法,如皮珀图、相关方法和盐度危害测量,对地下水的地球化学特征进行了批判性研究,以确定含水层的脆弱部分。这些方法已成功应用于评估印度西海岸一个小岛的含水层带。发现该岛大部分地区可安全饮用,但也有部分地区受到海水入侵和地层矿物溶解的影响。该分析成功地确定了岛上需要立即注意恢复和避免进一步恶化的那部分含水层。