Abstract
Groundwater is an important water source for agricultural irrigation in Penyang County. Some traditional methods such as irrigation coefficient, sodium adsorption ratio, total alkalinity, total salinity and total dissolved solids were employed to assess groundwater quality in this area. In addition, an improved technique for order preference by similarity to ideal solution model was applied for comprehensive assessment. The origin of major ions and groundwater hydrogeochemical evolution was also discussed. Groundwater in Penyang County contains relative concentrations of dominant constituents in the following order: Na+ > Ca2+ > Mg2+ > K+ for cations and HCO3 − > SO4 2− > Cl− > CO3 2− for anions. Groundwater quality is largely excellent and/or good, suggesting general suitability for agricultural use. Calcite and dolomite are found saturated in groundwater and thus tend to precipitate out, while halite, fluorite and gypsum are unsaturated and will dissolve into groundwater during flow. Groundwater in the study area is weathering-dominated, and mineral weathering (carbonate and silicate minerals) and ion exchange are the most important factors controlling groundwater chemistry.
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References
Al-Mashaikhi K, Oswald S, Attinger S, Büchel G, Knöller K, Strauch G (2012) Evaluation of groundwater dynamics and quality in the Najd aquifers located in the Sultanate of Oman. Environ Earth Sci 66:1195–1211. doi:10.1007/s12665-011-1331-2
Appelo CAJ, Postma D (2005) Geochemistry, groundwater and pollution, 2nd edn. A.A Balkema, Amsterdam
Asawa GL (2008) Irrigation and water resources engineering. NewAge International (P) Ltd., New Delhi
Ayears RS, Westcot DW (1976) Water quality for agriculture. Food and Agriculture Organization of the United Nations, Rome
Bezborodov GA, Shadmanov DK, Mirhashimov RT, Yuldashev T, Qureshi AS, Noble AD, Qadir M (2010) Mulching and water quality effects on soil salinity and sodicity dynamics and cotton productivity in Central Asia. Agric Ecosyst Environ 138:95–102. doi:10.1016/j.agee.2010.04.005
Bureau of Quality and Technical Supervision of China (1994) National Standard of the People’s Republic of China: Quality Standard for Groundwater, GB/T 14848-93. (in Chinese)
Chidambaram S, Anandhan P, Prasanna MV, Srinivasamoorthy K, Vasanthavigar M (2012) Major ion chemistry and identification of hydrogeochemical processes controlling groundwater in and around Neyveli Lignite Mines, Tamil Nadu, South India. Arab J Geosci. doi: 10.1007/s12517-012-0589-3
De Montety V, Radakovitch O, Vallet-Coulomb C, Blavoux B, Hermitte D, Valles V (2008) Origin of groundwater salinity and hydrogeochemical processes in a confined coastal aquifer Case of the Rhône delta (Southern France). Appl Geochem 23:2337–2349. doi:10.1016/j.apgeochem.2008.03.011
Delgado C, Pacheco J, Cabrera A, Batllori E, Orellana R, Bautista F (2010) Quality of groundwater for irrigation in tropical karst environment: the case of Yucatán, Mexico. Agric Water Manag 97:1423–1433. doi:10.1016/j.agwat.2010.04.006
Fipps G (2003) Irrigation water quality standards and salinity management strategies. Texas Agricultural Extension Service, Texas A&M University System, College Station, TX (USA). B-1667, 4-03, pp 1–19
Gibbs RJ (1970) Mechanisms controlling world water chemistry. Science 17:1088–1090. doi:10.1126/science.170.3962.1088
Hakim MA, Juraimi AS, Begum M, Hasanuzzaman M, Uddin MK, Islam MM (2009) Suitability evaluation of groundwater for irrigation, drinking and industrial purposes. Am J Environ Sci 5(3):413–419
Hwang CL, Yoon K (1981) Multiple attribute decision making methods and applications. Springer, Heidelberg, Berlin
Jezierska K, Gonet B, Podraza W, Domek H (2011) A new method for the determination of water quality. Water SA 37(1):127–129
Jindal R, Sharma C (2011) Studies on water quality of Sutlej River around Ludhiana with reference to physicochemical parameters. Environ Monit Assess 174:417–425. doi:10.1007/s10661-010-1466-8
Kelemenis A, Askounis D (2010) A new TOPSIS-based multi-criteria approach to personnel selection. Expert Syst Appl 37:4999–5008
Kumar M, Kumari K, Ramanathan AL, Saxena R (2007) A comparative evaluation of groundwater suitability for irrigation and drinking purposes in two intensively cultivated districts of Punjab. India. Environmental Geology 53(3):553–574. doi:10.1007/s00254-007-0672-3
Kumar M, Kumari K, Singh UK, Ramanathan AL (2009) Hydrogeochemical processes in the groundwater environment of Muktsar, Punjab: conventional graphical and multivariate statistical approach. Environ Geol 57:873–884. doi:10.1007/s00254-008-1367-0
Li PY, Wu JH, Qian H (2010a) Groundwater quality assessment based on entropy weighted osculating value method. International Journal of Environmental Sciences 1(4):621–630
Li PY, Qian H, Wu JH, Ding J (2010b) Geochemical modeling of groundwater in the southern plain area of Pengyang County, Ningxia. China. Water Science and Engineering 3(3):282–291. doi:10.3882/j.issn.1674-2370.2010.03.004
Li PY, Qian H, Wu JH (2011) Hydrochemical Characteristics and Evolution Laws of Drinking Groundwater in Pengyang County, Ningxia. Northwest China. E-Journal of Chemistry 8(2):565–575
Li PY, Wu JH, Qian H (2012) Groundwater Quality Assessment Based on Rough Sets Attribute Reduction and TOPSIS Method in a Semi-arid Area. China. Environ Monit Assess 184(8):4841–4854. doi:10.1007/s10661-011-2306-1
Liu ZC, Li GH, Zhu K (1998) Hydrogeology of Water Supply, 3rd edition. China Architecture and Building Press, Beijing. (in Chinese)
Marghade D, Malpe DB, Zade AB (2012) Major ion chemistry of shallow groundwater of a fast growing city of Central India. Environ Monit Assess 184:2405–2418. doi:10.1007/s10661-011-2126-3
Mitra BK, Sasaki C, Enari K, Matsuyama N, Fujita M (2007) Suitability assessment of shallow groundwater for agriculture in sand dune area of northwest Honshu Island Japan. Appl Ecol Environ Res 5(1):177–188
Naseem S, Rafique T, Bashir E, Bhanger MI, Laghari A, Usmani TH (2010) Lithological influences on occurrence of high-fluoride groundwater in Nagar Parkar area, Thar Desert, Pakistan. Chemosphere 78:1313–1321. doi:10.1016/j.chemosphere.2010.01.010
Pang HC, Li YY, Yang JS, Liang YS (2010) Effect of brackish water irrigation and straw mulching on soil salinity and crop yields under monsoonal climatic conditions. Agric Water Manag 97:1971–1977. doi:10.1016/j.agwat.2009.08.020
Pedrero F, Kalavrouziotis I, Alarcón JJ, Koukoulakis P, Asano T (2010) Use of treated municipal wastewater in irrigated agriculture-Review of some practices in Spain and Greece. Agric Water Manag 97:1233–1241. doi:10.1016/j.agwat.2010.03.003
Piper AM (1953) A Graphic Procedure in the Geochemical Interpretation of Water Analysis. United States Geological Survey, Washington D.C
Qiu J (2010) China faces up to groundwater crisis. Nature 466:308
Ravikumar P, Somashekar RK (2011) Geochemistry of groundwater, Markandeya River Basin, Belgaum district, Karnataka State, India. Chin J Geochem 30:51–74. doi:10.1007/s11631-011-0486-6
Ravikumar P, Somashekar RK, Angami M (2011) Hydrochemistry and evaluation of groundwater suitability for irrigation and drinking purposes in the Markandeya River basin, Belgaum District, Karnataka State, India. Environ Monit Assess 173:459–487. doi:10.1007/s10661-010-1399-2
Sadi-Nezhad S, Damghani KK (2010) Application of a fuzzy TOPSIS method base on modified preference ratio and fuzzy distance measurement in assessment of traffic police centers performance. Applied Soft Computing 10:1028–1039
Schoeller H (1967) Qualitative evaluation of groundwater resources. In: Methods and techniques of groundwater investigation and development. Water Research Series-33: UNESCO, 44–52
Subba Rao N (2002) Geochemistry of groundwater in parts of Guntur district, Andhra Pradesh. India. Environmental Geology 41(5):552–562. doi:10.1007/s002540100431
Subba Rao N (2006) Seasonal variation of groundwater quality in a part of Guntur district, Andhra Pradesh. India. Environmental Geology 49(3):413–429. doi:10.1007/s00254-005-0089-9
Wang Y, Jiao JJ (2012) Origin of groundwater salinity and hydrogeochemical processes in the confined Quaternary aquifer of the Pearl River Delta, China. J Hydrol 438–439:112–124. doi:10.1016/j.jhydrol.2012.03.008
Zhang JL, Ren J (2011) The Deficiencies and Amendments of the Calculation Formulate of Entropy and Entropy Weight in the Theory of Entropy. Statistics & Information Forum 26(1):1–5 (in Chinese)
Zhang X, Wang QS, Liu YF, Wu J, Yu M (2011) Application of multivariate statistical techniques in the assessment of water quality in the Southwest New Territories and Kowloon, Hong Kong. Environ Monit Assess 173:17–27. doi:10.1007/s10661-010-1366-y
Acknowledgments
This research was supported by the Doctoral Postgraduate Technical Project of Chang’an University (CHD2011ZY025 and CHD2011ZY022), the special Fund for Basic Scientific Research of Central Colleges, Chang’an University (CHD2011ZY020 and CHD2012TD003) and the National Natural Science Foundation of China (40772160 and 41172212). The anonymous reviewers and editor are gratefully acknowledged for their useful comments regarding the original version of this paper.
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Li, P., Wu, J. & Qian, H. Assessment of groundwater quality for irrigation purposes and identification of hydrogeochemical evolution mechanisms in Pengyang County, China. Environ Earth Sci 69, 2211–2225 (2013). https://doi.org/10.1007/s12665-012-2049-5
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DOI: https://doi.org/10.1007/s12665-012-2049-5