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Assessment of Groundwater Pollution Due to Textile Industrial Activities in and Around Tirupur Region, Tamil Nadu, India

机译:印度泰米尔纳德邦及周边地区纺织工业活动因纺织工业活动而评估地下水污染

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Groundwater is the most important resource for human consumption and the support of habitat and for maintaining the feature of base flow to river courses, while its quality is necessary to ensure sustainable safe exploit of the resources for all purposes. The untreated or inappropriate industrial effluents discharge on the surface causes harsh groundwater pollution in the industrial area of the nation. Sixty groundwater samples have been collected from boreholes and water samples were analysed to examine the groundwater quality of Avinashi-Tirupur-Palladam region. The samples were examined for the physico-chemical parameters like pH, electrical conductivity (EC) and total dissolved solids (TDS), major cations like calcium (Ca 2+ ), magnesium (Mg 2+ ), sodium (Na + ), potassium (K + ) and major anions like bicarbonate (HCO 3 - ), carbonate (CO 3 2- ), chloride (Cl - ), nitrate (NO 3 - ) and sulphate (SO 4 2- ), along with fluoride. The abundance of major cations and anions was investigated. Spatial distribution map based on total dissolved solids indicates that the Noyyal and Nallar river basins, central regions of the study area, are more affected. The chemical parameter data of groundwater samples of the study area are plotted in Gibbs’s diagram. Based on the Piper diagram, different water types were identified. Hydro-chemically, the quality of the groundwater for human consumption was determined. The ion concentration distribution indicates that most of the groundwater sample locations in the study area are not suitable for domestic use.
机译:地下水是人类消费最重要的资源和栖息地的支持,以及维持河流课程的基础流的特征,而其质量是必要的,以确保所有目的的资源的可持续利用。未经处理的或不适当的工业污水排放表面导致国家工业区的苛刻地下水污染。已经从钻孔和水样中收集了六十个地下水样品,以检查Avinashi-Tirupur-Palladam地区的地下水质量。检测样品,用于pH值,电导率(EC)和总溶解固体(TDS),钙(Ca 2+),镁(Mg 2+),钠(Na +),钾等主要阳离子,如溶解固体(TDS)。 (K +)和像碳酸氢盐(HCO 3 - ),碳酸盐(CO 3 2-),氯化物(Cl - ),硝酸盐(NO 3 - )和硫酸盐(SO 4 2-)以及氟化物等主要阴离子。调查了主要阳离子和阴离子的丰富。基于总溶解固体的空间分布图表明,研究区域的中央区域诺伊山和纳瓦尔河流域更受影响。研究区域的地下水样本的化学参数数据绘制在Gibbs的图中。基于吹笛式图,鉴定了不同的水类型。水化学上,确定了人类消费地下水的质量。离子浓度分布表明研究区域中的大多数地下水样品位置不适合国内使用。

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