基于CCME-WQI和TM-WQI的印度安得拉邦Vizianagaram地区Garividi地区地下水质量评价

Rupakumari G., G. S. Rao, Kalyanaramu B.
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摘要

采用加拿大环境部长理事会方法(CCME)和Tiwari and Mishra (TM)提出的对数聚集法(Logarithmic Aggregation method)对印度安得拉邦Vizianagaram地区中部的Garividi地区(Gurla、Gajapatinagaram、Dattirajeru、Merakamuidam、Cheepurupalli和Garividi mandals)的饮用地下水水质进行了评价。2018年11月至2019年10月,在研究区选定采样点的38口井中每月采集地下水样本。采用标准实验室程序分析样品的pH、EC、TDS、TH、TA、Ca2+、Mg2+、Na+、CO32-、HCO3-、Cl-、SO42-、NO3-、F-等14项参数。本文介绍了利用CCME和TM水质指数法评价地下水饮用水质,并利用回归相关分析分析了季风前后和季风期间水质参数的变化。通过CCME-WQI分析可知,约2.63%的水样质量为优,约28.95%的水样质量为良,约52.63%的水样质量为一般,约5.26%的水样质量为一般,其余10.53%的水样质量为差。通过tcm - wqi分析可知,约2.63%的水样质量为优,约42.1%的水样质量为良,约39.5%的水样质量为中,在研究区内,约有13.2%水质较差,其余2.63%不适合饮用。从相关分析可以看出,EC和TDS是重要的参数,它们与其他参数显著相关。
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CCME-WQI and TM-WQI based Assessment for Groundwater Quality in Garividi region of Vizianagaram District, Andhra Pradesh, India
The Canadian Council of Ministers of the Environment method (CCME) and the Logarithmic Aggregation method proposed by Tiwari and Mishra (TM) were used to assess the groundwater quality for drinking in Garividi region (Gurla, Gajapatinagaram, Dattirajeru, Merakamuidam, Cheepurupalli and Garividi mandals) which occupy some central part of Vizianagaram district of Andhra Pradesh, India. The groundwater samples were collected during every month from November 2018 to October 2019 from 38 bore wells of selected sampling locations in the study area. Fourteen parameters such as pH, EC, TDS, TH, TA, Ca2+, Mg2+, Na+, CO32-, HCO3-, Cl-, SO42-, NO3-, F- of samples were analyzed using standard laboratory procedures. This paper describes the assessment of ground water quality for drinking purposes using CCME and TM water quality index methods and water quality parameters variation with regression correlation analysis during Post and Pre monsoons and monsoon. From CCME-WQI analysis, it is observed that quality of about 2.63% of the water samples is Excellent, about 28.95% of the water samples is Good, about 52.63% of the water samples is Fair, about 5.26% is Marginal and remaining 10.53% is Poor and from TM-WQI analysis, it is observed that quality of about 2.63% of the water samples is Excellent, quality of about 42.1% of the water samples is good, about 39.5% is Medium, about 13.2% is poor and remaining 2.63% is unsuitable for drinking purpose in the study area. From the correlation analysis, it is observed that EC and TDS are the important parameters, as they are significantly correlated with other parameters.
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