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Hydrogeochemical characterisation and appraisal of groundwater suitability for domestic and irrigational purposes in a semi-arid region, Karnataka state, India

机译:印度半干旱地区国内和灌溉目的地下水适宜性的水力地球化学特性及评价

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摘要

Abstract Hydrogeochemical investigations have been carried out in a semi-arid region of Aland taluk of Karnataka State, India. The analysis has been done to examine the quality of groundwater for drinking, domestic and irrigational purposes. In this concern, thirty-two groundwater samples were collected in pre-monsoon (April 2016) and post-monsoon season (November 2016), from the different location within the study area. These samples have been further analysed for different ions such as CO3 2−, HCO3 −, NO3 −, Ca2+, Mg2+, Na+, K+ Fe2+, SO4 2−, Clˉ and F− to evaluate the hydrochemical behaviour with SSP (sodium soluble percentage), SAR (sodium absorption ratio), % Na (percentage sodium), RSC (residual sodium carbonate), KR (Kelly’s ratio), PI (permeability index) and MH (magnesium hazards). These positive and negative ions have been further correlated with the maximum annual rainfall within the study area to find out the variations between these ions for the precipitation. Suitability of groundwater for drinking purposes around the catchment was not suitable except in a few places. Irrigational suitability of groundwater showed that the water is within the limit for irrigation except in a few locations. Wilcox diagram depicts that 90% of the pre-monsoon samples and 65% of the post-monsoon samples fell into excellent to good category zone. US salinity diagram explains that 71% of pre-monsoon samples belong to medium-salinity-hazard to low-sodium-content zones, whereas 50% of post-monsoon samples fall into high-salinity-hazard to low-sodium-content zone. Gibbs’s plot showed that the water–rock processes control the geochemistry of the Aland region in both monsoon seasons. Chadha’s diagram depicts that 56.25% of the groundwater samples fall under the subfield of Ca2+–Mg2+–Cl− water type with permanent hardness during pre-monsoon season, whereas 50% of groundwater samples falls under the subfield of Ca2+–Mg2+–HCO3 − water type with temporary hardness during post-monsoon season.
机译:摘要在印度卡纳塔克邦的Aland Taluk的半干旱地区进行了抽象的水力地球化学研究。已经完成了分析,以检查饮酒,国内和灌溉目的的地下水的质量。在这一担忧中,在季风(2016年4月)和季风季节(2016年11月)中,从研究区域内的不同位置收集了三十三个地下水样本。已经进一步分析了这些样品,用于不同离子,例如CO 3 2-,HCO3 - ,NO3 - ,Ca2 +,Mg2 +,Na +,K + Fe2 +,SO 4 2-,Cl +和F-以评估SSP的水化学行为(钠溶于百分比) ,SAR(钠吸收比),%Na(百分比),RSC(残留碳酸钠),KR(脑斜率),PI(渗透率指数)和MH(镁危险)。这些阳性和负离子与研究区域内的最高年度降雨进一步相关,以找出这些离子的这些离子之间的变化。除了几个地方之外,地区饮用目的的地下水适用于地下水。地下水的灌溉适用性表明,除了几个地点外,水在灌溉的限制范围内。 Wilcox图描绘了90%的季风样品和65%的季风样品落入优秀的良好类别区域。美国盐度图解释说,71%的季风样品属于中盐度对低钠含量的区域,而50%的季风样品落入高盐度危险,对低钠含量区。吉布斯的情节表明,水岩过程控制季风季节的Aland地区的地球化学。 Chadha的图描绘了56.25%的地下水样品下落在Ca2 + -MG2 + -Cl-水型子场下,在季风季节期间具有永久性硬度,而50%的地下水样品下落在Ca2 + -mg2 + -HCO3 - 水的子场下在季风季节期间临时硬度的类型。

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