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首页> 外文期刊>Journal of the Geological Society of India >Hydrochemistry and quality assessment of groundwater in part of NOIDA metropolitan city, Uttar Pradesh
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Hydrochemistry and quality assessment of groundwater in part of NOIDA metropolitan city, Uttar Pradesh

机译:北方邦NOIDA大都市部分地区的地下水水化学和质量评估

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An attempt has been made to study the groundwater geochemistry in part of the NOIDA metropolitan city and assessing the hydrogeochemical processes controlling the water composition and its suitability for drinking and irrigation uses. The analytical results show that Na and Ca are the major cations and HCO _3 and Cl are the major anions in this water. The higher ratios of Na+K/TZ ~+ (0.2-0.7), Ca+Mg/HCO _3 (0.8-6.1); good correlation between Ca-Mg (0.75), Ca-Na (0.77), Mg-Na (0.96); low ratio of Ca+Mg/Na+K (1.6), Ca/Na (1.03), Mg/Na (0.64), HCO _3/Na (1.05) along with negative correlation of HCO _3 with Ca and Mg signify silicate weathering with limited contribution from carbonate dissolution. The hydro-geochemical study of the area reveals that many parameters are exceeding the desirable limits and quality of the potable water has deteriorated to a large extent at many sites. High concentrations of TDS, Na, Cl, SO _4, Fe, Mn, Pb and Ni indicate anthropogenic impact on groundwater quality and demand regional water quality investigation and integrated water management strategy. SAR, %Na, PI and Mg-hazard values show that water is of good to permissible quality and can be used for irrigation. However, higher salinity and boron concentration restrict its suitability for irrigation uses at many sites.
机译:已尝试研究NOIDA大都市部分地区的地下水地球化学,并评估控制水成分及其对饮用水和灌溉用途的适用性的水文地球化学过程。分析结果表明,Na和Ca是主要阳离子,HCO _3和Cl是该水中的主要阴离子。 Na + K / TZ〜+(0.2-0.7),Ca + Mg / HCO _3(0.8-6.1)的比例更高; Ca-Mg(0.75),Ca-Na(0.77),Mg-Na(0.96)之间具有良好的相关性; Ca + Mg / Na + K(1.6),Ca / Na(1.03),Mg / Na(0.64),HCO _3 / Na(1.05)的低比率以及HCO _3与Ca和Mg的负相关表示硅酸盐风化碳酸盐溶解的有限贡献。该地区的水文地球化学研究表明,许多参数超过了所需的极限,并且在许多地方饮用水的质量已大大恶化。 TDS,Na,Cl,SO_4,Fe,Mn,Pb和Ni的高浓度表明人为对地下水质量的影响,需要进行区域水质调查和综合水管理策略。 SAR,%Na,PI和Mg危害值表明水质达到允许的良好水平,可用于灌溉。但是,较高的盐度和硼浓度限制了其在许多地方的灌溉用途。

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