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Seasonal changes in groundwater quality deterioration and chemometric analysis of pollution source identification in South India

机译:南印度污染源污染源造成污染源劣化和化学计量分析的季节变化

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Hydrogeochemical understanding of groundwater is essential for the effective management of groundwater. This study has been carried out to have concrete data for the seasonal variations in hydrogeochemistry of groundwater in central Tamilnadu forming a complex geological terrain with a varied lithology. A total of 244 groundwater samples were collected during four different seasons, viz, southwest monsoon (SWM), summer (SUM), postmonsoon (POM), and northeast monsoon (NEM) from bore wells. The physical parameters such as pH, temperature, TDS, ORP, humidity, and electrical conductivity (EC) were measured insitu, whereas major ions were analyzed in the lab adopting standard procedures. Overall, higher EC and NO_3 values were observed and exceeded the WHO permissible limit irrespective of seasons, except for NO_3 in SWM. Na and HCO_3 are the dominant cation and anion in the groundwater irrespective of seasons. The highest average values of Na (65.06 mg L~(-1)) and HCO_3 (350.75 mg L~(-1)) were noted during SWM. Statistical analysis was carried out to elucidate the hydrogeochemistry of the region. Initially, to understand the ionic relationship, correlation matrix was used followed by factor analysis for determination of major geochemical control and later factor scores were derived to understand the regional representations. An attempt has also been made to identify the samples influenced by multiple geochemical processes and to understand their spatial variation in the study period. Correlation of geochemical parameters reveals a excellent positive correlation between Ca and NO_3 in SUM, SWM, and NEM due to the dominant of anthropogenic sources and minor influence of weathering process. Strongly loaded factor scores are found to be mostly in the following order POM > NEM > SWM > SUM. Principal component analysis of different seasons indicates the interplay of natural weathering and anthropogenic factors. Overall, the predominant geochemical processes in this region, irrespective of seasons are weathering and, ion exchange and anthropogenic activities.
机译:对地下水的水文地球技术理解对于地下水有效管理至关重要。本研究已经开展了在泰米尔纳德中部地下水中的地下水中的季节性变化进行了具体数据,形成了具有各种岩性的复杂地质地形。在四个不同的季节,Ziz,西南季风(SWM),夏季(总和),蒙殖民(POM)和来自孔井的东北季风(NEM)中共收集了244个地下水样本。测量了Insitu等pH,温度,TDS,ORP,湿度和电导率(EC)的物理参数,而在采用标准程序的实验室中分析主要离子。总体而言,观察到更高的EC和NO_3值并超出了WHO允许的极限,而不管SEASONS,除了SWM中的NO_3。 NA和HCO_3是地下水中的主要阳离子和阴离子,而不论季节如何。在SWM期间注意到Na(65.06mg L〜(-1))和HCO_3(350.75mg L〜(-1))的最高平均值。进行统计分析以阐明该地区的水文地质化学。最初,为了了解离子关系,使用相关基质,然后使用因子分析,测定主要地球化学对照的测定,并导出了以后的因素分数来了解区域陈述。还尝试识别受多个地球化学过程影响的样本,并理解研究期间的空间变异。由于人为源的显着和耐候过程的微小影响,地球化学参数的相关性揭示了Ca和NO_3之间的优异正相关性和耐候性的微小影响。强烈加载的因子分数主要是在以下顺序POM> NEM> SWM> SUM中。不同季节的主要成分分析表明了自然风化和人为因素的相互作用。总体而言,该区域的主要地球化学过程,无论季节如何都是风化的,离子交换和人为活动。

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