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Influence of variations in rainfall pattern on the hydrogeochemistry of coastal groundwater-an outcome of periodic observation

机译:降雨模式变化对沿海地下水水文化学的影响 - 定期观察结果

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This study considered the temporal variations in rainfall and water level patterns as governing factors, which influence the geochemical process of coastal aquifer around Pondicherry, South India. Rainfall and water level data were collected from 2006 to 2016, which showed that the amount of rainfall from 2006 to 2011 was higher than that of 2011 to 2016. To understand the geochemical process governing groundwater, samples were collected during 2006 (n = 54), followed by 2011 (n = 93), and during 2016 (n = 63) as part of continuous observation. The major ions and stable isotopes (delta O-18 and dD) were analyzed in the samples to determine the geochemical variations. The predominant types were noted as Na-HCO3 and Na-Cl; Ca-HCO3 and Ca-Mg-Cl; and Na-Cl and Ca-Mg-Cl in 2006, 2011, and 2016, respectively. Saturation states of sulfate and carbonate minerals were compared for the study periods and it indicates that the saturation index (SI) values were increased from 2006 to 2011, but decreased from 2011 to 2016. PHREEQC inverse modeling revealed the predominance for the dissolution and leaching of carbonate minerals during increased rainy periods, and the increase of halite saturation during lesser rainfall period. AQUACHEM mixing studies suggested that geochemical signatures of 2006 and 2011 were preserved in samples of 2016 in different proportions. Considering the major factors, the main processes prevailing in the study area were inferred to be dissolution and leaching during 2006 similar to 2011 years and seawater intrusion along with ion exchange during 2011 similar to 2016 years. In all these periods of study, anthropogenic impact was also identified in the groundwater samples. Hence, this study revealed that the rainfall and water level gave a significant variation in the geochemical process of groundwater in the coastal aquifer system.
机译:该研究认为降雨和水平模式作为控制因素的时间变化,这影响了印度南印度南部沿海含水层的地球化学过程。从2006年到2016年收集了降雨量和水平数据,表明,2006年至2011年的降雨量高于2011年至2016年的降雨量。了解在2006年期间收集地球化学过程的地球化学过程(N = 54) ,其次是2011(n = 93),以及2016年(n = 63),作为连续观察的一部分。在样品中分析主要离子和稳定同位素(Delta O-18和DD)以确定地球化学变化。主要类型作为Na-HCO3和Na-Cl; CA-HCO3和CA-MG-CL;和Na-Cl和Ca-Mg-Cl分别于2006年,2016年和2016年。比较硫酸盐和碳酸盐矿物的饱和状态,并表明饱和指数(Si)值从2006年到2011年增加,但从2011年到2016年下降.Bheeqc逆建模揭示了溶解和浸出的主要职位碳酸盐在雨季增加期间,在较小的降雨期间增加了宿舍饱和度。水产混合研究表明,2006年和2011年的地球化学签名在2016年的样本中以不同的比例保存。考虑到主要因素,在2006年期间推断出研究区普遍的主要过程,与2011年和2011年的海水侵入以及2011年期间的离子交换相似。在所有这些研究时期,在地下水样品中也鉴定了人为的影响。因此,本研究表明,降雨量和水位对沿海含水层系统地下水的地球化学过程产生了显着的变化。

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