Spatial assessment of major ion geochemistry in the groundwater around Suryapet Region, Southern Telangana, India

Environmental Sustainability - Tập 4 Số 1 - Trang 107-122 - 2021
Shankaraiah Katla1, Sakram Gugulothu2, Ratnakar Dhakate2
1Department of Applied Geochemistry, Osmania University, Hyderabad, India
2CSIR-National Geophysical Research Institute, Hyderabad, India

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Ahmad T, Khanna PP, Chakrapani GJ, Balakrishnan S (1998) Geochemical characteristics of water and sediment of the Indus river, Trans-Himalaya, India: constraints on weathering and erosion. J Asian Earth Sci 16:333–346

Aksoy AO, Scheytt T (2007) Assessment of groundwater pollution around Torbali, Izmir, Turkey. Environ Geol 53:19–25. https://doi.org/10.1007/s00254-006-0614-5

APHA (2005) Standard methods for the examination of water and wastewater. American Public Health Association, Washington DC

Arif M, Hussain J, Hussain I, Kumar S (2013) An assessment of fluoride concentration in groundwater and risk on the health of the north part of Nagpur district, Rajasthan. India World Appl Sci J 24(2):146–153

Babiker IS, Mohamed MAA, Hiyama T (2007) Assessing groundwater quality using GIS. Water Resour Manage 21:699–715. https://doi.org/10.1007/s11269-006-9059-6

Belanger DG, Bergland GD, Wish M (1988) Some research directions for large-scale software development. AT T Tech J 67(4):77–92. https://doi.org/10.1002/j.1538-7305,1988.00640.x

Berktay Nas BA (2006) Groundwater contamination by nitrates in the city of Konya, (Turkey): a GIS perspective. J Environ Manag 79:30–37

Bhatnagar A, Devi P, George MP (2016) Impact of mass bathing and religious activities on the water quality index of prominent water bodies: a multilocation study in Haryana. Int J Ecol Environ Sci India. https://doi.org/10.1155/2016/2915905

Brindha K, Elango L (2012) Groundwater quality zonation in a shallow weathered rock aquifer using GIS. Geo-spatial Inform Sci 15(2):95–104

Canter LW (2019) Nitrates in groundwater. Routledge, Lewis Publication, P.261, ISBN:0–87371–569–1.

Caroll D (1962) Rainwater as a chemical agent of geological processes—a review. USGS Water Supply 1533:18–20

CGWB (2016) Aquifer mapping for sustainable management of groundwater resources in parts of Nalgonda district Telangana state (Phase-III). http://cgwb.gov.in/AQM/NAQUIM_REPORT/Telangana/Nalgonda-Phase-III.pdf.

Chetan PS, Ahada SS (2017) Hydrochemistry of groundwater in North Rajasthan, India: a chemical and multivariate analysis. Environ Earth Sci 76:203

Davis SN, Dewiest RJM (1967) Hydrogeology. Sons, New York. ISBN-13: 978-0894646386

Dhakate R, Mahesh J, Sankaran S, Gurunadha Rao VVS (2013) Multivariate statistical analysis for assessment of groundwater quality in Talcher Coalfield area, Orissa, India. J Geol Soc India 82(4):403–412

Dixit S, Gupta SK, Tiwari S (2005) Nutrient overloading of a freshwater lake in Bhopal, India. Electron Green J 21:2–6

Fetter CW, Boving T, Kreamer D (2017) Contaminant hydrogeology. Waveland Press, P. 647, ISBN:978–1–4786–3279–5, USA.

Fewtrell L (2004) Drinking-water nitrate, methemoglobinemia, and the global burden of disease: a discussion. Environ Health Perspect 112(14):1371–1374

Freeze RA, Cherry JA (1979) Groundwater. Prentice-Hall, Englewood Cliffs

Gnanachandrasamy G, Ramkumar T, Venkatramanan S, Vasudevan S, Chung SY, Bagyaraj M (2015) Accessing groundwater quality in the lower part of Nagapattinam district, Southern India: using hydrogeochemistry and GIS interpolation techniques. Appl Water Sci 5(1):39–55

Haidary A, Amiri BJ, Adamowski J, Fohrer N, Nakane K (2013) Assessing the impacts of four land-use types on the water quality of wetlands in Japan. Water Resour Manag 27:2217–2229. https://doi.org/10.1007/s11269-013-0284-5

Hem JD (1985) Study and interpretation of the chemical characteristics of natural waters (3rd edn.). USGS water supply paper, 2254. Washington, DC: USGS, pp. 117–120.

Huang X, Sillanpää M, Gjessing ET, Vogt RD (2009) Water quality in the Tibetan Plateau: major ions and trace elements in the headwaters of four major Asian rivers. Sci Total Environ 407:6242–6254

Hussain I, Arif M, Hussain J (2012) Fluoride contamination in drinking water in rural habitations of Central Rajasthan, India. Environ Monit Assess 184(8):5151–5158

Inker LA, Astor BC, Fox CH, Isakova T, Lash JP, Peralta CA, Feldman HI (2014) KDOQI US commentary on the 2012 KDIGO clinical practice guideline for the evaluation and management of CKD. Am J Kidney Dis 63(5):713–735

Jameel AA, Sirajudeen J (2006) Risk assessment of physico-chemical contaminants in groundwater of Pettavaithalai Area, Tiruchirappalli, Tamil Nadu, India. Environ Monit Assess 123(1–3):299–312

Jerry AN (1986) Basic environmental technology (water supply, waste disposal and pollution control). Wiley, New York

Jiang L, Yao Z, Liu Z, Wang R, Wu S (2015) Hydrochemistry and its controlling factors of rivers in the source region of the Yangtze River on the Tibetan Plateau. J Geochem Explor 155:76–83

Katla S, Kota N, Sanatana R (2017) Supervised classification for Land use land cover analysis and its integration with Geology for land resource evaluation in and around Suryapet, Nalgonda district, Telangana, India. Int J Appl Res 3(7):1047–1059

Kumar M, Kumari K, Ramanathan AL, Saxena R (2007) A comparative evaluation of groundwater suitability for irrigation and drinking purposes in two agriculture dominated districts of Punjab, India. Environ Geol 53:553–574

Laxman Kumar D, Satyanarayana E, Dhakate R, Saxena PR (2019) Hydrogeochemical characteristics concerning fluoride contamination in groundwater of Maheshwaram Mandal, RR District, Telangana State, India. Groundw Sustain Dev 8:474–483. https://doi.org/10.1016/j.gsd.2019.01.008

Lima TB, Silva ON, Oliveira JTA, Vasconcelos IM, Scalabrin FB, Rocha TL, Castro CFS (2010) Identification of E. dysenteric laxative peptide: a novel strategy in the treatment of chronic constipation and irritable bowel syndrome. Peptides 31(8):1426–1433

Lloyd JW, Heathcote J (1985) Natural inorganic hydrochemistry in relation to groundwater. P.296, III, https://trove.nla.gov.au/version/45045800.

Machender G, Dhakate R, Reddy MN (2014) Hydrochemistry of groundwater (GW) and Surface water (SW) for assessment of fluoride in Chinnaeru river basin, Nalgonda District, (A.P) India. Environ Earth Sci 72(10):4017–4034

Magesh NS, Chandrasekar N (2013) Evaluation of spatial variations in groundwater quality by WQI and GIS technique: a case study of Virudunagar District, Tamil Nadu, India. Arab J Geosci 6(6):1883–1898

Maheshwari RC (2006) Fluoride in drinking water and its removal. J Hazard Mater 137(1):456–463

Moghaddam AA, Fijani E (2008) Distribution of fluoride in groundwater of Maku area, northwest of Iran. Environ Geol 56(2):281–287

Mukherjee I, Singh UK (2018) Groundwater fluoride contamination, probable release, and containment mechanisms: a review on the Indian context. Environ Geochem Health 40(6):2259–2301

Murphy HM, Mc Bean EA, Farah BK (2010) A critical evaluation of two point-of-use water treatment technologies: can they provide water that meets WHO drinking water guidelines. J Water Health 8(4):611–630

Paliwal KV (1972) Irrigation with Saline Water, Monogram No. 2 (New Series). IARI, New Delhi, 198.

Pandian K, Sankar K (2007) Hydrogeochemistry and Groundwater Quality in the Vaippar River Basin, Tamil Nadu.

Pant RR, Zhang F, Rehman FU, Wang G, Ye M, Zeng C, Tang H (2018) Spatiotemporal variations of hydro-geochemistry and its controlling factors in the Gandaki River Basin. Central Himalaya Nepal Sci Total Environ 622–623:770–782

Pimentel D (2006) Soil erosion: a food and environmental threat. Environ Dev Sustain 8(1):119–137

Piper AM (1944) A geographic procedure in the geochemical interpretation of water analysis. Transactions American Geophysical Union (Vol. 25, pp. 914–928). Washington D.C.

Qu B, Paudyal R, Pant RR, Qaiser FUR (2020) Inorganic components in river waters in the Third Pole. Water Qual Third Pole. https://doi.org/10.1016/b978-0-12-816489-1.00004-9

Ravindra K, Garg VK (2007) Hydro-chemical survey of groundwater of Hisar city and assessment of defluorination methods used in India. Environ Monit Assess 132(1–3):33–43

Reddy M, Sakram G (2014) Climate Change and water resources: Implications and mitigation, International Journal of Recent Scientific Research. (ISSN 0976–3031, Volume 05, No. 01: pp 201–204

Rehman Qaisar FU, Zhang F, Pant RR, Wang G, Khan S, Zeng C (2018) Spatial variation, source identification, and quality assessment of surface water geochemical composition in the Indus River Basin, Pakistan. Environ Sci Pollut Res 25:12749–12763

RGNDWM (2010) Evaluation Study on Rajiv Gandhi National Drinking Water Mission, Programme Evaluation Organization, Planning Commission, Government of India, New Delhi, pp 1–98

Richards LA (1954) Diagnosis and improvement of saline and alkali soils. United States Department of Agriculture, Washington, D.C.

Sakram G, Narsimha A (2018) Hydrogeochemical characterization and assessment of water suitability for drinking and irrigation in crystalline rocks of Mothkur region, Telangana State, South India. Appl Water Sci 8:143

Sakram G, Laxman Kumar D, Sundaraiah R, Sanda Rajitha, Ramana Kumar M, Praveen Raj Saxena (2013) Application of Remote Sensing, GIS and Geophysical Techniques in Groundwater Exploration in Karanja Vagu Watershed, Medak District, Andhra Pradesh. Volume 06, No. 02 (01) pp. 123–129, International Journal of Earth Science and Engineering.

Sakram G, Machender G, Ratnakar D, Praveen Raj Saxena (2015) Assessment of Trace Elements in soils around Zaheerabad Town, Medak District, Andhra Pradesh, India. Environ Earth Sci 73:4511–4524, ISSN 1866–6280, Volume 73, Number 8, Environmental Earth Science.

Sakram G, Dhakate R, Machender G, Sreedhar K, Narsimha A (2019) Multivariate statistical approach for the assessment of fluoride and nitrate concentration in groundwater from Zaheerabad area, Telangana State, India. Sustain Water Resour Manag 5:785–796. https://doi.org/10.1007/s40899-018-0258-0

Sakram G, Ratnakar D, Sreedhar K, Ramesh A, Saxena PR (2020) Geophysical and hydrochemical studies for sustainable development of groundwater resources in North-Western part of Medak District, Telangana State, India. J Earth Syst Sci. https://doi.org/10.1007/s12040-020-01452-7

Sarin MM, Krishnaswami S, Dilli K, Somayajulu BLK, Moore WS (1989) Major ion chemistry of the Ganga-Brahmaputra river system: weathering processes and fluxes to the Bay of Bengal. Geochim Cosmochim Acta 53:997–1009

Satyanarayana E, Dhakate R, Laxman Kumar D, Ravindar P, Muralidhar M (2017) Hydrochemical characteristics of groundwater quality with special reference to fluoride concentration in parts of Mulugu-Venkatapur Mandal, Warangal District. J Geol Soc India 89:247–258

Sawyer CN, McCarty PL (1967) Chemistry for sanitary engineers, 2nd edn. McGraw Hill, New York, p 518

Sebilo M, Mayer B, Nicolardot B, Pinay G, Mariotti A (2013) Long-term fate of nitrate fertilizer in agricultural soils. Proc Natl Acad Sci 110(45):18185–18189

Shankaraiah K, Saxena PR, Kota N (2017) Hydrological and surface analysis using remote sensing and GIS techniques in parts of Nalgonda district, Telangana. India IJAR 3(7):1272–1276

Shankariah K, Saxena PR (2015) Geomorphological mapping using remote sensing and GIS a tool for land use planning in and around Suryapet City, T.S., India. Int J Appl Res 1(9):616–619.

Sharma CM, Kang S, Tripathee L, Paudyal R, Sillanpää, M (2020) Major ions, and irrigation water quality assessment of the Nepalese Himalayan rivers. Environ Dev Sustain:1–13

Singh PK, Malik A, Mohan D, Sinha S (2004) Multivariate statistical techniques for the evaluation of spatial and temporal variations in water quality of Gomti River (India)—a case study. Water Res 38:3980–3992

Sreedhar K, Sakram G, Madhusudhan N, Praveen Raj Saxena (2018) Drainage basin analysis through GIS: a case study of Lakhnapur Reservoir Watershed in Rangareddy District, Telangana State, India. ISSN: 2320–0294, International Journal of Engineering, Science, and Mathematics.

Stallard RF, Edmond JM (1983) Geochemistry of the Amazon: 2. The influence of geology and weathering environment on the dissolved load. J Geophys Res Oceans 88:9671–9688

Subba Rao N, Surya Rao P, Venktram Reddy G (2012) Chemical characteristics of groundwater and assessment of groundwater quality in Varaha River Basin, Visakhapatnam District, Andhra Pradesh, India. Environ Monit Assess 184:5189–5214

Subba Rao N, Deepali M, Dinakar A (2017) Geochemical characteristics and controlling factors of the chemical composition of groundwater in a part of Guntur district, Andhra Pradesh India. Environ Earth Sci 76:747

Subrahmanyam K, Yadaiah P (2001) Assessment of the impact of industrial effluents on water quality in Patancheru and environs, Medak district, Andhra Pradesh, India. Hydrogeol J 9:297–312

Sudheer Kumar M, Ratnakar Dhakate, Yadagiri G, Srinivasa Reddy K (2017) Principal component and multivariate statistical approach for evaluation of hydrogeochemical characterization of fluoride rich groundwater of Shasilair Vagu Watershed, Nalgonda District, India. Arab Jo Geosci 10(4): 1–17 (Article No. 83)

Sun H, Han J, Li D, Zhang S, Lu X (2010) Chemical weathering inferred from riverine water chemistry in the lower Xijiang basin. South China Sci Total Environ 408:4749–4760

Szabolcs I, Darab C (1964) The Influence of Irrigation Water of High Sodium Carbonate Content of Soils. In: Proceedings of 8th International Congress of ISSS, Trans II, 803–812.

Tripathee L, Guo J, Kang S, Paudyal R, Sharma CM, Huang J, Chen P, Ghimire PS, Sigdel M, Sillanpää M (2020) Measurement of mercury, other trace elements and major ions in wet deposition at Jomsom: the semi-arid mountain valley of the Central Himalaya. Atmos Res 234:104691

Tripathee L, Kang S, Li C, Sun S, Sharma CM (2020b) Chemical components and distributions in precipitation in the Third Pole. In Water Quality in the Third Pole (pp. 3–41). Elsevier.

Vikas C, Kushwaha R, Ahmad W, Prasanna Kumar V, Raghunath R (2013) Genesis and geochemistry of high fluoride bearing groundwater from a semi-arid terrain of NW India. Environ Earth Sci 68(1):289–305

WHO (2006) Guidelines for drinking-water quality: incorporating first addendum. Vol. 1, Recommendations. 3 ed. https://www.who.int/water_sanitation_health/dwq/gdwq0506.pdf

Wilcox LV (1955) Classification and use of irrigation waters, USDA circular 969, 19 p.

Wolf L, Eiswirth M, Hötzl H (2006) Assessing sewer–groundwater interaction at the city scale based on individual sewer defects and marker species distributions. Environ Geol 49:849–857

Yang L, Song X, Zhang Y, Yuan R, Ma Y, Han D (2012) A Hydrochemical framework and water quality assessment of river water in the upper riches of the Huai River Basin, China. Environ Earth Sci 67:2141–2153

Zhang F, Qaiser FR, Zeng C, Pant RR, Wang G, Zhang H, Chen D (2019) Meltwater hydrochemistry at four glacial catchments in the headwater of Indus River. Environ Sci Pollut Res 26: 23645–23660 https://doi.org/10.1007/s11356-019-05422-5)