journal article Jun 27, 2018

Assessment of hydrological and hydrochemical vulnerability of groundwater in semi-arid region of Rajasthan, India

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References
43
[1]
Abildtrup J, Audsley E, Fekete-Farkas M, Giupponi C, Gylling M, Rosato P, Rounsevell M (2006) Socio-economic scenario development for the assessment of climate change impacts on agricultural land use: a pairwise comparison approach. Environ Sci Policy 9(2):101–115 10.1016/j.envsci.2005.11.002
[2]
Allen RG, Smith M, Pereira LS, Perrier A (1994) An update for the calculation of reference evapotranspiration. Int Comm Irrigation Drainage (ICID) Bull 43(2):1–34
[3]
Allen RG, Pereiro LS, Raes D, Smith M (1998) Crop evapotranspirtion: guidelines for computing crop requirements. Irrigation and Drainage Paper No. 56. FAO, Rome
[4]
Allen RG, Pereira LS, Smith M, Raes D, Wright JL (2005) FAO-56 dual crop coefficient method for estimating evaporation from soil and application extensions. J Irrigation Drain Eng 131(1):2–13 10.1061/(asce)0733-9437(2005)131:1(2)
[5]
Balali H, Khalilian S, Viaggi D, Bartolini F, Ahmadian M (2011) Groundwater balance and conservation under different water pricing and agricultural policy scenarios: a case study of the Hamadan-Bahar plain. Ecol Econ 70(5):863–872. https://doi.org/10.1016/j.ecolecon.2010.12.005 10.1016/j.ecolecon.2010.12.005
[6]
Bhat AH, Sharma KC (2015) Physico-chemical analysis of groundwater quality of adjoining areas of Sambhar Lake, a Ramsar Wetland of Rajasthan, India. Curr World Environ 10(3):1039–1043 10.12944/cwe.10.3.37
[7]
Boisson A, Baïsset M, Alazard M, Perrin J, Villesseche D, Dewandel B, Maréchal JC (2014) Comparison of surface and groundwater balance approaches in the evaluation of managed aquifer recharge structures: Case of a percolation tank in a crystalline aquifer in India. J Hydrol 519(2014):1620–1633 10.1016/j.jhydrol.2014.09.022
[8]
Central Ground Water Board, Ministry of Water Resources, Government of India (2008) “Groundwater scenario Ajmer District Rajasthan”, District Groundwater Brochure. Western Region Jaipur, June 2008
[9]
Central Ground Water Board, Ministry of Water Resources, Government of India (2011) Groundwater year book 2010–11, December 2011
[10]
Central Groundwater Board (2015) Groundwater year book 2014–2015 Rajasthan state. http://cgwb.gov.in/Regions/GW-year-Books/GWYB-2014-15/GWYB%2014-15%20Rajasthan.pdf . Accessed 5 Feb 2018
[11]
Chandra S, Saksena RS (1975) Water balance study for estimation of groundwater resources. J Irrigation Power 1975:443–449
[12]
Chandra S, Sharma D, Dubey SK (2018) Linkage of urban expansion and land surface temperature using geospatial techniques for Jaipur City, India. Arab J Geosci 11(2):31 10.1007/s12517-017-3357-6
[13]
Chaudhuri S, Ale S, DeLaune P, Rajan N (2012) Spatio-temporal variability of groundwater nitrate concentration in Texas: 1960 to 2010. J Environ Qual 41(6):1806–1817 10.2134/jeq2012.0022
[14]
CPCB (2009) Status of water supply, wastewater generation and treatment in Class I cities and Class II towns of India. Central Pollution Control Board
[15]
Ghosh A, Tiwari AK, Das S (2015) A GIS based DRASTIC model for assessing groundwater vulnerability of Katri Watershed, Dhanbad, India. Model Earth Syst Environ 1(3):11 10.1007/s40808-015-0009-2
[16]
Gunawat A, Dubey SK, Sharma D (2016) Development of indices for aridity and temperature changes pattern through GIS mapping for Rajasthan, India. Clim Change Environ Sustainab 4(2):178–189 10.5958/2320-642x.2016.00018.1
[17]
Gupta PK, Yadav BK (2018) Impact of hydrocarbon pollutants on partially saturated soil media in batch system: morphological analysis using SEM techniques. In: Singh V, Yadav S, Yadava R (eds) Water quality management. Springer, Singapore, pp 131–139 10.1007/978-981-10-5795-3_12
[18]
Gupta PK, Joshi P, Jahangeer G (2018) In-situ observation and transport modelling of arsenic in Gangetic plain, India. Emerg Contam. https://doi.org/10.1016/j.emcon.2018.03.001 10.1007/978-981-10-7332-8
[19]
Holman IP, Nicholls RJ, Berry PM, Harrison PA, Audsley E, Shackley S, Rounsevell MDA (2005a) A regional, multisectoral and integrated assessment of the impacts of climate and socio-economic change in the UK II. Results. Clim Change 71:43–73 10.1007/s10584-005-5956-6
[20]
Holman IP, Rounsevell MDA, Shackley S, Harrison PA, Nicholls RJ, Berry PM, Audsley E (2005b) A regional, multi-sectoral and integrated assessment of the impacts of climate and socio-economic change in the UK. I. Methodology. Clim Change 71:9–41 10.1007/s10584-005-5927-y
[21]
Huan H, Wang J, Teng Y (2012) Assessment and validation of groundwater vulnerability to nitrate based on a modified DRASTIC model: a case study in Jilin City of northeast China. Sci Total Environ 440:14–23 10.1016/j.scitotenv.2012.08.037
[22]
Hussain HM, Joshi H, Singhal DC, Kumar S, Rao MS (2012) Development of an index of aquifer water quality within GIS environment. Iran J Earth Sci 4:44–50
[23]
Jahangeer, Gupta PK, Yadav BK (2017) Transient water flow and nitrate movement simulation in partially saturated zone. J Irrigation Drain Eng 143(12):04017048 10.1061/(asce)ir.1943-4774.0001238
[24]
Jha MP, Panwar M, Khandelwal D (2012) Mining & land Management of Kishangarh (Rajasthan) with the integrations of GIS Technique. Int J Remote Sens Geosci 1(2):2012 (ISSN No: 2319–3484)
[25]
Kumar D, Adamowski J, Suresh R, Ozga-Zielinski B (2016) Estimating evapotranspiration using an extreme learning machine model: case study in north Bihar, India. J Irrigation Drain Eng 142(9):04016032 10.1061/(asce)ir.1943-4774.0001044
[26]
Li X, Lee SL, Wong SC, Shi W, Thornton I (2004) The study of metal contamination in urban soils of Hong Kong using a GIS-based approach. Environ Pollut 129(1):113–124 10.1016/j.envpol.2003.09.030
[27]
Mishra SK, Singh VP (2003) Soil conservation service curve number (SCS-CN) methodology, chap 2. Water science and technology library, vol 42. Kluwer Academic, Boston 10.1007/978-94-017-0147-1
[28]
Mishra SK, Singh VP (2005) Catchment area-based evaluation of the AMC-dependent SCS-CN based rainfall-runoff models. Hydrol Progr 19:2701–2718 pp 10.1002/hyp.5736
[29]
Mishra SK, Jain MK, Pandey RP, Singh VP (2011) Evaluation of the AMC-dependent SCS-CN-based models using large data of small watersheds. Water Energy Int J Central Board Irrigation Power (CBIP) 13:23
[30]
Mohammadi Z, Salimi M, Faghih A (2014) Assessment of groundwater recharge in a semi-arid groundwater system using water balance equation, southern Iran. J Afr Earth Sc 95:1–8. https://doi.org/10.1016/j.jafrearsci.2014.02.006 10.1016/j.jafrearsci.2014.02.006
[31]
Mondal NC, Adike S, Singh VS, Ahmed S, Jayakumar KV (2017) Determining shallow aquifer vulnerability by the DRASTIC model and hydrochemistry in granitic terrain, southern India. J Earth Syst Sci 126(6):89 10.1007/s12040-017-0870-7
[32]
Mondal NC, Adike S, Raj PA, Singh VS, Ahmed S, Jayakumar KV (2018) Assessing aquifer vulnerability using GIS-based DRASTIC model coupling with hydrochemical parameters in hard rock area from Southern India. In: Singh V, Yadav S, Yadava R (eds) Groundwater. Springer, Singapore, pp 67–82 10.1007/978-981-10-5789-2_6
[33]
Rahmati O, Samani AN, Mahmoodi N, Mahdavi M (2015) Assessment of the contribution of N-fertilizers to nitrate pollution of groundwater in western Iran (Case Study: Ghorveh–Dehgelan Aquifer). Water Quality Exposure Health 7(2):143–151 10.1007/s12403-014-0135-5
[34]
Ramadas M, Samantaray AK (2018) Applications of remote sensing and GIS in water quality monitoring and Remediation: a state-of-the-art review. In: Bhattacharya S, Gupta AB, Gupta A, Pandey A (eds) Water remediation. Springer, Singapore, pp 225–246 10.1007/978-981-10-7551-3_13
[35]
Sciuto G, Diekkrüger B (2010) Influence of soil heterogeneity and spatial discretization on catchment water balance modeling. Vadose Zone Journal 9(4):955. https://doi.org/10.2136/vzj2009.0166 10.2136/vzj2009.0166
[36]
Sharma D, Kumar V (2002) Application of SCS model with GIS databases for estimation of runoff in an arid watershed. Indian J Soil Conserv 30(2):141–145 (ISSN: 0970–3349)
[37]
Singhal DC, Israil M, Sharma VK, Kumar B (2010) Evaluation of groundwater resource and estimation of its potential in Pathri Rao watershed, district Haridwar (Uttarakhand). Curr Sci 98(2):162–170
[38]
Tiwari AK, Singh PK, De Maio M (2016a) Evaluation of aquifer vulnerability in a coal mining of India by using GIS-based DRASTIC model. Arab J Geosci 9(6):438 10.1007/s12517-016-2456-0
[39]
Tiwari AK, De Maio M, Singh PK, Singh AK (2016b) Hydrogeochemical characterization and groundwater quality assessment in a coal mining area, India. Arab J Geosci 9(3):177 10.1007/s12517-015-2209-5
[40]
Tiwari AK, Singh AK, Mahato MK (2017) GIS based evaluation of fluoride contamination and assessment of fluoride exposure dose in groundwater of a district in Uttar Pradesh, India. Hum Ecol Risk Assess Int J 23(1):56–66 10.1080/10807039.2016.1220824
[41]
Vikas C, Kushwaha RK, Pandit MK (2009) Hydrochemical status of groundwater in District Ajmer (NW India) with reference to fluoride distribution. J Geol Soc India 73:773–784 10.1007/s12594-009-0062-4
[42]
Yadav BK, Junaid SM (2014) Groundwater vulnerability assessment to contamination using soil moisture flow and solute transport modeling. J Irrigation Drain Eng 141(7):04014077 10.1061/(asce)ir.1943-4774.0000841
[43]
Yadav BK, Hassanizadeh SM, Rajbhandari S (2012) Biodegradation of toluene under seasonal and diurnal fluctuations of soil-water temperature conditions. Water Air Soil Pollut 223(7):3579–3588 10.1007/s11270-011-1052-x
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Published
Jun 27, 2018
Vol/Issue
5(2)
Pages
847-861
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Cite This Article
Pankaj Kumar Gupta, Devesh Sharma (2018). Assessment of hydrological and hydrochemical vulnerability of groundwater in semi-arid region of Rajasthan, India. Sustainable Water Resources Management, 5(2), 847-861. https://doi.org/10.1007/s40899-018-0260-6
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