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Contaminated drinking water and rural health perspectives in Rajasthan, India: an overview of recent case studies

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Abstract

Access to safe drinking water is an important issue of health and development at national, regional, and local levels. The concept of safe drinking water assumes greater significance in countries like India where the majority of the population lives in villages with bare infrastructures and poor sanitation facilities. This review presents an overview of drinking water quality in rural habitations of northern Rajasthan, India. Although fluoride is an endemic problem to the groundwater of this region, recently, other anthropogenic chemicals has also been reported in the local groundwater. Recent case studies indicate that about 95% of sites of this region contain a higher fluoride level in groundwater than the maximum permissible limit as decided by the Bureau of Indian Standards. Nitrate (as NO\(_{3}^{\,\,-})\) contamination has appeared as another anthropogenic threat to some intensively cultivable rural habitations of this region. Biological contamination has appeared as another issue of unsafe drinking water resources in rural areas of the state. Recent studies have claimed a wide variety of pathogenic bacteria including members of the family Enterobacteriaceae in local drinking water resources. Overall, the quality of drinking water in this area is not up to the safe level, and much work is still required to establish a safe drinking water supply program in this area.

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References

  • Agrawal, V., Vaish, A. K., & Vaish, P. (1987). Groundwater quality: Focus on fluoride and fluorosis in Rajasthan. Current Science, 73(9), 743–746.

    Google Scholar 

  • Aral, M. M. (2009). Water quality, exposure and health: Purpose and goals. Water Quality, Exposure and Health, 1(1), 1–4.

    Article  Google Scholar 

  • Ashbolt, N. J. (2004). Microbial contamination of drinking water and disease outcome in developing regions. Toxicology, 198, 229–238.

    Article  CAS  Google Scholar 

  • Bober, J., Kucharska, E., Zawierta, J., Machoy, Z., Chlubek, D., & Ciechanowski, K. (2000). The influence of fluoride ions on the viability, reduction of NBT, cytolysis, degranulation, and phagocytosis of human and rabbit neutrophils. Fluoride, 33(3), 108–114.

    CAS  Google Scholar 

  • Bijay-Singh, & Singh, Y. (2004). Balanced fertilization for environmental quality. Fertilizer News, 49, 107–108.

    Google Scholar 

  • Bijay-Singh, Singh, Y., & Sekhon, G. S. (1995). Fertilizer-N use efficiency and nitrate pollution of groundwater in developing countries. Journal of Contaminant Hydrology, 20, 167–184.

    Article  CAS  Google Scholar 

  • BIS (1992). Bureau of Indian Standards. IS:10500. New Delhi: Manak Bhawan.

    Google Scholar 

  • Chaudhary, V., Kumar, M., Sharma, M., & Yadav, B. S. (2010). Fluoride, boron and nitrate toxicity in groundwater of northwest Rajasthan. Environmental Monitoring and Assessment, 161, 343–348.

    Article  CAS  Google Scholar 

  • Chhimpa, V., Suthar, S., Bishnoi, R.K., Sharan, I., Beniwal, V., Chhokar, V., & Pareek, B. (2008). Coliforms bacterial contamination of drinking water in some rural areas of northern Rajasthan. In J. Singh (Ed.), Proc. international conference on biodiversity, environment and sustainability challenges for future (pp. 415–421). University of Delhi.

  • Chlubek, D., Poreba, R., & Machalinski, B. (1998). Fluoride and calcium distribution in human placenta. Fluoride, 31(3), 131–136.

    CAS  Google Scholar 

  • Deshpande, S. M., Kaplay, R. D., & Kulkarni, S. G. (1999). Nitrate contamination in groundwater of Paithan, Aurangabad District. Pollution Research, 18, 191–192.

    CAS  Google Scholar 

  • FAO (2000). Assessing soil contamination: A reference manual. FAO pesticide disposal series. Rome: Food and Agriculture Organization of the United Nations.

    Google Scholar 

  • Fan, A. M., Willhite, C. C., & Book, S. A. (1987). Evaluation of the nitrate drinking water standard with reference to infant methemoglobinemia and protein reproductive toxicity. Regulatory Toxicology and Pharmacology, 7(2), 135–148.

    Article  CAS  Google Scholar 

  • Freni, S. C. (1994). Exposure to high fluoride concentration in drinking water is associated with decreased birth rate. Journal of Toxicology and Environmental Health, 42(1), 109–121.

    Article  CAS  Google Scholar 

  • Froda, A. S., Joshi, D. C., & Ram, B. (1999). Agroecological zone of north-western hot arid region of India (p. 24). India: CAZRI.

    Google Scholar 

  • Gadgil, A. (1998). Drinking water in developing countries. Annual Review of Energy and The Environment, 23, 253–286.

    Article  Google Scholar 

  • Garg, V. K., Suthar, S., Singh, S., Sheoran, A., Garima, Meenakshi, & Jain, S. (2009). Drinking water quality in villages of southwestern Haryana, India: Assessing human health risks associated with hydrochemistry. Environmental Geology, 58(6), 1329–1340.

    Article  CAS  Google Scholar 

  • Klein, D. A., & Casida, L. E. (1967). E. coli die out from normal soil as related to nutrient availability and the indigenous microflora. Canadian Journal of Microbiology, 13, 1456–1461.

    Google Scholar 

  • Koss, B. C., Ayebo, A. D., & Fuortes, L. J. (1992). Methemoglobinemia: nitrate toxicity in rural America. American Family Physician, 46(1), 183–188.

    Google Scholar 

  • Kundu, M. C., Mandal, B., & Sarkar, D. (2008). Assessment of the potential hazards of nitrate contamination in surface and groundwater in a heavily fertilized and intensively cultivated district of India. Environmental Monitoring and Assessment, 146, 1573–2959.

    Article  Google Scholar 

  • Machalinski, B., Zejmo, M., Stecewice, I., Machalinski, A., Machoy, Z., & Ratajczak, M. Z. (2000). The influence of sodium fluoride on the clonogenecity of human hematopoietic progenitor cells: Preliminary reports. Fluoride, 33(4), 168–173.

    CAS  Google Scholar 

  • Raja-Reddy, D. (1979). Hand book of neurology (p. 465). Amsterdam: North Holland Publishing Co.

    Google Scholar 

  • Reddy, A. G. S., Kumar, K. N., Rao, D. S., & Rao, S. S. (2009). Assessment of nitrate contamination due to groundwater pollution in north eastern part of Anantapur District, A.P., India. Environmental Monitoring and Assessment, 148, 463–476.

    Article  CAS  Google Scholar 

  • Sankararamakrishnan, N., Sharma, A. K., & Iyenger, L. (2008). Contamination of nitrate and fluoride in groundwater along the Ganges Alluvial Plain of Kanpur district. Environmental Monitoring and Assessment, 146, 375–382.

    Article  CAS  Google Scholar 

  • Suthar, S., Singh, C., Kumar, R., Daiya, G. S., & Kaushik, M. K. (2005). Ground water quality of Sri Ganganagar City. Nat Env Poll Tech, 4(4), 515–519.

    CAS  Google Scholar 

  • Suthar, S., Garg, V. K., Jangir, S., Kaur, S., Goswami, N., & Singh, S. (2008a). Fluoride contamination in drinking water in rural habitations of northern Rajasthan, India. Environmental Monitoring and Assessment, 145, 1–6.

    Article  CAS  Google Scholar 

  • Suthar, S., Singh, S., Chhimpa, V., Bishnoi, R. K., Saharan, I., Mittal, N., & Garg, V. K. (2008b). The problem of safe drinking water in Northern Rajasthan, India. In Puranik, et al. (Eds.), Proceeding 16th national symposium on environment (pp. 491–496). Hisar: Dept. of Environmental Science & Technology, G. J. U. Sci & Tech.

    Google Scholar 

  • Suthar, S., Chhimpa, V., & Singh, S. (2008c). Bacterial contamination in drinking water in rural areas of northern Rajasthan, India. Environmental Monitoring and Assessment, 159, 43–50.

    Article  Google Scholar 

  • Suthar, S., Bishnoi, P., Singh, S., Mutiyar, P. K., Nema, A. K., & Patil, N. S. (2009). Nitrate contamination in groundwater of some rural areas of Rajasthan, India. Journal of Hazardous Materials, 171, 189–199.

    Article  CAS  Google Scholar 

  • Takahashi, K. (1998). Fluoride-linked down syndrome births and their estimated occurrence due to water-fluoridation. Fluoride, 31(2), 61–73.

    Google Scholar 

  • Trabulsi, L. R., Keller, R., & Tardelli Gromes, T. A. (2002). Typical and atypical enteropathogenic Escherichia coli. Emerging Infectious Diseases, 8(5), 508–513.

    Google Scholar 

  • Tricker, A. R., & Preussmann, R. (1991). Carcinogenic N-nitrosamines in the diet: occurrence, formation, mechanisms and carcinogenic potential. Mutation Research, 259, 277–289.

    Article  CAS  Google Scholar 

  • UNICEF (1999). States of the art report on the extent of fluoride in drinking water and the resulting endemicity in India. Report by Fluorosis and Rural Development Foundation for UNICEF, New Delhi.

  • USPHS (1962). Drinking water standards. USPHS Publication 956, USGPO, Washington, DC.

  • Walker, R. (1990). Nitrates, nitrites and N-nitroso compounds: A review of the occurrence in food and diet and the toxicological implications. Food Additives and Contaminants, 7, 717–768.

    CAS  Google Scholar 

  • Walsh, J. A. (1990). Estimating the burden of illness in the tropics. In K. S. Warren, & A. A. F. Mahoud (Eds.), Tropical and geographical medicines (2nd ed., p. 190). New York: Mc-Graw Hill.

    Google Scholar 

  • WHO (1984). Guidelines for drinking water quality recommendations. Geneva: World Health Organization (WHO).

    Google Scholar 

  • WHO (1997). Guideline for drinking water quality health criteria and other supporting information (Vol. 2, 2nd ed.). Geneva.

  • WHO (1998). Guidelines for drinking water quality. Geneva: World Health Organization.

    Google Scholar 

  • WHO (2003). Emerging issues in water and infectious disease. Geneva: World Health Organization (WHO).

    Google Scholar 

  • WHO (2006). Fluoride in drinking water (p. 144). London: IWA publishing.

    Google Scholar 

  • WHO (2007). Chemical safety of drinking water: Assessing priorities for risk managements (p. 160). Geneva: WHO.

    Google Scholar 

  • World Bank (1992). World development report: Development and environment—world development indicators (p. 308). New York: Oxford University Press.

    Google Scholar 

  • Yang, C. Y., Wu, D. C., & Chang, C. C. (2007). Nitrate in drinking and risk of death from colon cancer in Taiwan. Environment International, 33, 649–653.

    Article  Google Scholar 

Download references

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Suthar, S. Contaminated drinking water and rural health perspectives in Rajasthan, India: an overview of recent case studies. Environ Monit Assess 173, 837–849 (2011). https://doi.org/10.1007/s10661-010-1427-2

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  • DOI: https://doi.org/10.1007/s10661-010-1427-2

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