首页> 外文期刊>Arabian journal of geosciences >Hydrochemistry of groundwater in a coastal region of Cuddalore district, Tamilnadu, India: implication for quality assessment
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Hydrochemistry of groundwater in a coastal region of Cuddalore district, Tamilnadu, India: implication for quality assessment

机译:印度泰米尔纳德邦Cuddalore区沿海地区的地下水水化学:对质量评估的意义

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A hydrogeochemical investigation was conducted in a coastal region of Cuddalore district to identify the influence of saltwater intrusion and suitability of groundwater for domestic and agricultural purposes. The geology of the study area comprises of sandstone, clay, alluvium, and laterite soils of Tertiary and Quaternary age. A total of 18 groundwater samples were analyzed for 14 different water quality parameters and the result indicates higher concentrations of ions like Cl (3,509 mg/l), Na (3,123 mg/l), and HCO_3 (998 mg/l) when compared with WHO, BIS, and ISI standards. A positive correlation (r~2=0.82) was observed between Na and Cl, indicating its sources from salt water intrusion. Three factors were extracted with a total variance of 64% which indicates the sources of salinization, cation exchange, and anthropogenic impact to the groundwater. The Piper trilinear diagram indicates both Na-Cl and mixed Na-HCO_3-Cl-type, indicating that groundwater was strongly affected by anthropogenic activities. The plot of (Ca+Mg)/(K+Na) indicates evidences of cation exchange and salt water intrusion. The (Ca-0.33*HCO_3)/ SO_4 plot indicates salt water intrusion for elevated SO_4 levels rather than gypsum dissolution. The spatial distribution of total dissolved solid indicates the saline water encroachment along the SW part of the study area. As per sodiumadsorption ratio (SAR), 50% of the samples with <10 SAR are suitable for irrigation and >10 SAR indicates that water is unsuitable for irrigation purposes. The residual sodium carbonate classification indicates that 50% of the samples fall in safe and 50% of the samples fall in bad zones and prolonged usage of this water will affect the crop yield. The Chloro Alkaline Index of water indicates disequilibrium due to a higher ratio of Cl>Na-K, indicating the influence of salt water intrusion. The Permeability Index of the groundwater indicates that the groundwater from the study area is moderate to good for irrigation purposes.
机译:在库达洛尔区的沿海地区进行了水文地球化学调查,以确定盐水入侵的影响以及地下水对家庭和农业用途的适用性。研究区域的地质学包括第三纪和第四纪的砂岩,粘土,冲积层和红土土壤。总共对18个地下水样品进行了14种不同水质参数的分析,结果表明,与Cl相比,Cl(3,509 mg / l),Na(3,123 mg / l)和HCO_3(998 mg / l)等离子的浓度更高。 WHO,BIS和ISI标准。 Na和Cl之间存在正相关(r〜2 = 0.82),表明其来源是盐水的入侵。提取了三个因素,总方差为64%,这表明了盐碱化,阳离子交换和人为影响地下水的来源。 Piper三线性图表明Na-Cl和Na-HCO_3-Cl混合型,表明地下水受到人为活动的强烈影响。 (Ca + Mg)/(K + Na)的图表示阳离子交换和盐水入侵的证据。 (Ca-0.33 * HCO_3)/ SO_4图表明,由于SO_4水平升高而不是石膏溶解,盐水入侵。总溶解固体的空间分布表明沿研究区域西南部分的盐水侵蚀。根据钠吸附率(SAR),<10 SAR的样本中有50%适合灌溉,而> 10 SAR的样本表明水不适合灌溉。残留的碳酸钠分类表明50%的样品属于安全区域,而50%的样品属于不良区域,长期使用这种水会影响农作物的产量。由于Cl> Na-K的比例较高,水的氯碱指数表示不平衡,这表明盐水入侵的影响。地下水的渗透指数表明,研究区域的地下水出于灌溉目的是中度到良好。

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