Statistical approaches for hydrogeochemical characterization of groundwater in West Delhi, India

被引:0
作者
Partha Pratim Adhikary
H. Chandrasekharan
Debashis Chakraborty
Bhisam Kumar
B. R. Yadav
机构
[1] Indian Agricultural Research Institute,Division of Agricultural Physics
[2] National Institute of Hydrology,undefined
来源
Environmental Monitoring and Assessment | 2009年 / 154卷
关键词
Correlation; Regression models; Hydro-chemistry; Groundwater quality;
D O I
暂无
中图分类号
学科分类号
摘要
Parametric statistical approaches, correlations and multiple linear regressions were used to develop models for the interpretation of hydrogeochemical parameters in the Western part of Delhi sate, India. The hydrogeochemical parameters indicated that the groundwater quality is not safe for consumption. The water is moderately saline and the salinity level is increasing over time. There is also the problem of nitrate pollution. The correlation between electrical conductivity (EC) and other water quality parameters except potassium (K+), nitrate (NO3−) and bicarbonate (HCO3−) is significantly positive and Ca++ + Mg++/Na+ + K+ is significantly negative. In predicting EC, the multiple R2 values of 0.996 and 0.985 indicate that 99.6% and 98.5% variability in the observed EC could be ascribed to the combined effect of Na+, HCO3−, Cl−, SO4−−, NO3− and Ca++ + Mg++ for the year of 2005 and 2006 respectively. Out of 99.6% of the variability in EC in 2005, 51.2% was due to Cl− alone, and 8.5%, 12.5%, 6.1%, 14.7% and 6.7% were due to Na+, HCO3−, SO4−−, NO3− and Ca++ + Mg++. Similarly in 2006, out of 98.5% of the variability in EC, 48.5% was due to Cl− alone, and 10.4%, 12.7%, 5.3%, 17.2% and 4.4% were due to Na+, HCO3−, SO4−−, NO3− and Ca++ + Mg++. The analysis shows that a good correlation exists between EC, Cl− and SO4−− either individually or in combination with other ions and the multiple regression models can predict EC at 5% level of significance.
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页码:41 / 52
页数:11
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共 43 条
  • [1] Biswal A.(2004)Assessment of ground water quality at IARI farm, New Delhi Journal of Water Management 12 40-46
  • [2] Singh A. K.(1996)Major ion chemistry of groundwater in Delhi area: Chemical weathering process and groundwater flow regime Journal of Geological Society of India 47 179-188
  • [3] Tadi G.(1997)Assessment of groundwater contamination from fertilizers in Delhi area based on 18O, NO3- and K+ composition Journal of Contaminant Hydrology 27 249-262
  • [4] Chandrasekharan H.(1970)Mechanisms controlling world water chemistry Science 170 1088-1090
  • [5] Datta P. S.(1991)Indian standard specification for drinking water ISI 10500 1-5
  • [6] Tyagi S. K.(2006)Seasonal evaluation of hydro-chemical parameters using correlation and regression analysis Current Science 91 820-826
  • [7] Datta P. S.(1997)Factor analysis in hydrogeochemistry of coastal aquifers – a preliminary study Environmental Geology 31 174-177
  • [8] Deb D. L.(1979)Land application of waste–an accident waiting to happen Ground Water 17 69-72
  • [9] Tyagi S. K.(2004)Groundwater quality in some villages of Haryana, India: Focus on fluoride and fluorosis Journal of Hazardous Materials 106 85-97
  • [10] Gibbs R. J.(1980)Correlation of selected well water quality parameters with soil and aquifer hydrologic properties Water Resources Bulletin 16 702-709