452
Views
19
CrossRef citations to date
0
Altmetric
Environmental Analysis

Multivariate Investigation of Heavy Metals in the Groundwater for Irrigation and Drinking in Garautha Tehsil, Jhansi District, India

, , , , ORCID Icon, , & show all
Pages 774-794 | Received 09 Aug 2019, Accepted 02 Oct 2019, Published online: 25 Oct 2019

References

  • Aizebeokhai, A. P., K. D. Oyeyemi, and A. Adeniran. 2017. An overview of the potential impacts of climate change on groundwater resources. International Conference on Science and Sustainable Development (ICSSD), 9:437–453.
  • Akhtar, N., and S. P. Rai. 2019. Physico-chemical analysis of ground water for irrigation and drinking purposes around moth block of Jhansi District, Uttar Pradesh, India. Journal of Hydrology 46(2):250–66.
  • Akhtar, N., S. P. Rai, R. Saini, and N. Pant. 2018. A comparative study of water quality of groundwater in Garautha Block, Jhansi District, Uttar. International Journal of Research in Advent Technology 6(9):2404–9.
  • Al-Fartusie, F. S., and S. N. Mohssan. 2017. Essential trace elements and their vital roles in human body. Indian Journal of Advances in Chemical Science 5(3):127–36.
  • Agency for Toxic Substances and Disease Registry (ATSDR). 2004. Toxicological profile for cobalt. Atlanta, GA: US Department of Health and Human Services.
  • Bahar, M. M., and M. S. Reza. 2010. Hydrochemical characteristics and quality assessment of shallow groundwater in a coastal area of southwest Bangladesh. Environmental Earth Sciences 61(5):1065–73. doi:10.1007/s12665-009-0427-4.
  • Bani, E. 2015. Investigating anthropogenic impact on groundwater quality in the GA East Municipality. M.Phil diss., University of Ghana, Legon.
  • Batayneh, A., and T. Zumlot. 2012. Multivariate statistical approach to geochemical methods in water quality factor identification; application to the shallow aquifer system of the Yarmouk Basin of North Jordan. Research Journal of Environmental and Earth Sciences 4(7):756–68.
  • Bhattacharjee, M. T., and M. M. Goswami. 2018. Heavy metals (As, Cd & Pb) toxicity & detection of these metals in ground water sample: A review on different techniques. International Journal of Engineering Science Invention (IJESI), 7(1):12–21.
  • Bhuiyan, M. A. H., N. I. Suruvi, S. B. Dampare, M. A. Islam, S. B. Quraishi, S. Ganyaglo, and S. Suzuki. 2011. Investigation of the possible sources of heavy metal contamination in the lagoon and canal water in the tannery industrial area in Dhaka, Bangladesh. Environmental Monitoring and Assessment 175(14):633–49. doi:10.1007/s10661-010-1557-6.
  • Bureau of Indian Standard (BIS). 2012. Indian standards drinking water specifications, ISI 10500:2012, Indian Standards Drinking Water Specifications (Vol. 2). Bahadur Shah Zafar Marg, New Delhi.
  • Brahman, K. D., T. G. Kazi, H. I. Afridi, S. Naseem, S. S. Arain, and N. Ullah. 2013. Evaluation of high levels of fluoride, arsenic species and other physicochemical parameters in underground water of two sub districts of Tharparkar, Pakistan: A multivariate study. Water Research 47(3):1005–20. doi:10.1016/j.watres.2012.10.042.
  • Brandsch, C., R. Ringseis, and K. Eder. 2002. High dietary iron concentrations enhance the formation of cholesterol oxidation products in the liver of adult rats fed salmon oil with minimal effects on antioxidant status. The Journal of Nutrition 132(8):2263–9. doi:10.1093/jn/132.8.2263.
  • Central Ground Water Board (CGWB). 2008. Ground water brochure of Jhansi District, Uttar Pradesh. New Delhi: Central Ground Water Board.
  • Central Ground Water Board (CGWB). 2017. Aquifer mapping and ground water management plan of Jhansi District, Uttar Pradesh. Northern Region, Lucknow: Central Ground Water Board.
  • Chen, K., J. J. Jiao, J. Huang, and R. Huang. 2007. Multivariate statistical evaluation of trace elements in groundwater in a coastal area in Shenzhen, China. Environmental Pollution 147(3):771–80. doi:10.1016/j.envpol.2006.09.002.
  • Davenport, A. 2014. Trace elements in patients with chronic kidney disease. In Chronic renal disease, 429–39. Amsterdam, Netherlands: Elsevier Inc.
  • Davis, S. N., and R. J. Dewiest. 1966. Hydrogeology. New York: Wiley.
  • Dkhar, E. N., P. S. Dkhar, and J. M. H. Anal. 2014. Trace elements analysis in drinking water of Meghalaya by using graphite furnace-atomic absorption spectroscopy and in relation to environmental and health issues. Journal of Chemistry 2014:1–8. doi:10.1155/2014/975810.
  • Edokpayi, J. N., A. M. Enitan, N. Mutileni, and J. O. Odiyo. 2018. Evaluation of water quality and human risk assessment due to heavy metals in groundwater around Muledane area of Vhembe District, Limpopo Province, South Africa. Chemistry Central Journal 12:1–16. doi:10.1186/s13065-017-0369-y.
  • Elumalai, V., K. Brindha, and E. Lakshmanan. 2017. Human exposure risk assessment due to heavy metals in groundwater by pollution index and multivariate statistical methods: A case study from South Africa. Water 234(9):1–16. doi:10.3390/w9040234.
  • Farnham, I. M., K. J. Stetzenbach, A. K. Singh, and K. H. Johannesson. 2000. Deciphering groundwater flow systems in Oasis Valley, Nevada, using trace element chemistry, multivariate statistics, and geographical information system. Mathematical Geology 32(8):943–68.
  • Hafiza, N., A. Razak, S. M. Praveena, Z. Hashim, and A. Zaharin. 2015. Drinking water studies: A review on heavy metal, application of biomarker and health risk assessment (a special focus in Malaysia). Journal of Epidemiology and Global Health 5(4):297–310. doi:10.1016/j.jegh.2015.04.003.
  • Haileslassie, T., and K. Gebremedhin. 2015. Hazards of heavy metal contamination in ground water. International Journal of Technology Enhancements and Emerging Engineering Research 3(2):1–6.
  • Hu, Y., X. Wang, Z. Dong, and G. Liu. 2015. Determination of heavy metals in the groundwater of the Huaibei plain, China, to characterize potential effects on human health. Analytical Letters 48(2):349–59. doi:10.1080/00032719.2014.940530.
  • Khan, T. A. 2011. Trace elements in the drinking water and their possible health effects in Aligarh City, India. Journal of Water Resource and Protection 3(7):522–30. doi:10.4236/jwarp.2011.37062.
  • Kazakis, N., C. Mattas, A. Pavlou, O. Patrikaki and K. Voudouris. 2017. Multivariate statistical analysis for the assessment of groundwater quality under different hydrogeological regimes. Environmental Earth Sciences 76(9): 1–13.
  • Kumar, M., M. Mahmudur, A. L. Ramanathan, and R. Naidu. 2016. Science of the total environment arsenic and other elements in drinking water and dietary components from the middle Gangetic plain of Bihar, India: Health risk index. Science of the Total Environment 539(2016):125–34. doi:10.1016/j.scitotenv.2015.08.039.
  • Liu, C.W., K. H. Lin, and Y. M. Kuo. 2003. Application of factor analysis in the assessment of groundwater quality in a Blackfoot disease area in Taiwan, The Science of Total Environment 313 (2003), 77–8.
  • Loska, K., and D. Wiechuła. 2003. Application of principal component analysis for the estimation of source of heavy metal contamination in surface sediments from the Rybnik Reservoir. Chemosphere 51(8):723–33. doi:10.1016/S0045-6535(03)00187-5.
  • Lou, S., S. Liu, C. Dai, A. Tao, B. Tan, G. Ma, R. S. Chalov, and S. R. Chalov. 2017. Heavy metal distribution and groundwater quality assessment for a coastal area on a Chinese Island. Polish Journal of Environmental Studies 26(2):733–45. doi:10.15244/pjoes/67064.
  • Mani, A., F. T. C. Tsai, S. C. Kao, B. S. Naz, M. Ashfaq, and D. Rastogi. 2016. Conjunctive management of surface and groundwater resources under projected future climate change scenarios. Journal of Hydrology 540:397–411. doi:10.1016/j.jhydrol.2016.06.021.
  • Meng, S. X., and J. B. Maynard. 2001. Use of statistical analysis to formulate conceptual models of geochemical behavior: Water chemical data Sao Paulo state, Brazil from the Botucatu aquifer in Sao Paulo state, Brazil. Journal of Hydrology 250(14):78–97. doi:10.1016/S0022-1694(01)00423-1.
  • Miranda, J., E. Andrade, A. López-Suárez, R. Ledesma, T.A. Cahill, and P.H. Wakabayashi. 1996. A receptor model for atmospheric aerosols from a south western site in Mexico City. Atmospheric Environment 30(20):3471–9. doi:10.1016/1352-2310(95)00477-7.
  • Muangthong, S., and S. Shrestha. 2015. Assessment of surface water quality using multivariate statistical techniques: A case study of the Nampong River and Songkhram River, Thailand. Environmental Monitoring and Assessment 187(9):1–12. doi:10.1007/s10661-015-4774-1.
  • Niu, B., H. Wang, H. A. Loáiciga, S. Hong, and W. Shao. 2017. Science of the total environment temporal variations of groundwater quality in the Western Jianghan. Science of the Total Environment 578(2017):542–50. doi:10.1016/j.scitotenv.2016.10.225.
  • Ochsenku, K. M., J. Kontoyannakos, and M. OchsenküHn-Petropulu. 1997. A new approach to a hydrochemical study of groundwater flow. Journal of Hydrology 194(1997):64–75. doi:10.1016/S0022-1694(96)03218-0.
  • Oketola, A. A., S. M. Adekolurejo, and O. Osibanjo. 2013. Water quality assessment of river Ogun using multivariate statistical techniques. Journal of Environmental Protection 4(5):466–79. doi:10.4236/jep.2013.45055.
  • Pritchard, M., T. Mkandawire, and J. G. O’Neill. 2008. Assessment of groundwater quality in shallow wells within the southern districts of Malawi. Physics and Chemistry of the Earth 33(813):812–23. doi:10.1016/j.pce.2008.06.036.
  • Ragunath, H. M. 1987. Ground water. 2nd ed., 563. New Delhi: Wiley Eastern, Ltd.
  • Sahoo, M. M., and K. C. Patra. 2018. Spatiotemporal evaluation of trace elements in river water using multivariate methods. Human and Ecological Risk Assessment 25 (5): 1311–1335.
  • Seyhan, E., A. A. V. D. Griend, and G. B. Engelen. 1985. Multivariate analysis and interpretation of the hydrochemistry of a dolomitic reef aquifer, Northern Italy. Water Resources Research 21(7):1010–24. doi:10.1029/WR021i007p01010.
  • Singh, A K., B. Raj, A. K. Tiwari, and M. K. Mahato. 2013. Evaluation of hydrogeochemical processes and groundwater quality in the Jhansi district of Bundelkhand region, India. Environmental Earth Sciences 70(3):1225–47. doi:10.1007/s12665-012-2209-7.
  • Singovszka, E., and M. Balintov. 2012. Application factor analysis for the evaluation of surface water and sediment quality. Chemical Engineering Transactions 26:183–8.
  • Taqveem, A. K. 2011. Multivariate analysis of hydrochemical data of the groundwater in parts of Karwan – Sengar Sub-Basin, Central Ganga Basin, India. Global Nest Journal 13(3):229–36.
  • Thyne, G., C. Güler, and E. Poeter. 2004. Sequential analysis of hydrochemical data for watershed characterization. Ground Water 42(5):711–23. doi:10.1111/j.1745-6584.2004.tb02725.x.
  • Varol, S., and A. Davraz. 2015. Evaluation of the groundwater quality with WQI (Water Quality Index) and multivariate analysis: A case study of the Tefenni plain (Burdur/Turkey). Environmental Earth Sciences 73(4):1725–44. doi:10.1007/s12665-014-3531-z.
  • World Health Organization (WHO). 1997. Guidelines for drinking-water quality, vol. 3. Geneva: World Health Organization.
  • Xie, Z., H. Zhang, X. Zhao, Z. Du, L. Xiang, and W. Wang. 2016. Assessment of heavy metal contamination and wetland management in a newly created coastal natural reserve, China. Journal of Coastal Research 32(2):374–86. doi:10.2112/JCOASTRES-D-14-00222.1.
  • Zhang, Z., J. Abuduwaili, and F. Jiang. 2013. Determination of occurrence characteristics of heavy metals in soil and water environments in Tianshan Mountains, Central Asia. Journal of Hydrology 46(13):2122–31. doi:10.1080/00032719.2013.784919.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.