Abstract
An integrated approach based on hydro geochemistry was adopted in order to establish the quality oriented utilization of groundwater in study area which is situated in the northern side of Chidambaram Town. The study area falls on the banks of the Vellar River represented by sedimentary terrain composed of alluvial sands, clay, and sands. The thickness of the top clay layer is about 4 to 6 m followed by sandy clay and sand. Seventeen groundwater samples were collected and analyzed for major and minor ions. In general, groundwater is colorless and odorless. The majority of the groundwater samples are suitable for drinking and domestic purpose. The aquifer chemical facies study reveals that in the cation plot, most water samples falls in calcium-magnesium facies type and few samples fall in calcium-sodium facies type, whereas in the anion plot chloride-sulfate-bicarbonate facies type is observed. In few places, the concentration of chloride exceeds the maximum limit which indicates the influence of natural anthropogenic effect. Samples also indicate natural contamination and anthropogenic influence. The USSL plot for irrigation shows most samples are affected by water-soluble salts in the soil. All groundwater samples falls within the class I category of permeability and thus reflect that the groundwater is good and suitable for irrigation. The groundwater hydrogeochemistry of the region is dominantly controlled by the local geochemical factors.





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References
Abraha N et al (2011) Effect of chemical and mineralogical composition of rocks in the groundwater chemistry of Hewanie and its surrounding areas, Southern Tigray, Ethiopia. Ethiopian Journal of Environmental Studies and Management 4(4):2011
APHA (2005) Standard methods for the examination of water and wastewater 21STED. American Public Health Association, Washington ,DC
Balasubramanaian A, Thirugnana S, Chellaswamy R, Radhakrishnan V (1993) Numerical modeling for prediction and control of saltwater encroachment in the coastal aquifers of Tuticorin, Tamil Nadu (21). Tech, Report
Balasubramanian A (1986) Hydrogeological investigations of Tambaraparni River Basin, Tamilnadu, unpublished Ph.D Thesis, University of Mysore, p 349
CGWB (2009) District groundwater brochure Cuddalore district. Tamil Nadu, Central Ground Water Board, South Eastern Coastal Region, Chennai
Chidambaram S, Ramanathan AL, Srinivasamoorthy K Anandhan K (2004) WATCLAST- A computer program for hydrogeochemical studies. Recent trends in hydrogeochemistry (case studies from surface and subsurface waters of selected countries).published by Capital Publishing Company, New Delhi, pp203-207
Chidambaram S, Ramanathan AL, Prasanna MV, Karmegam U, Dheivanayagi V, Ramesh R, Johnsonbabu G, Premchander B, Manikandan S (2010) Study on the hydrogeochemical characteristics in groundwater, post-and pre-tsunami scenario, from Portnova to Pumpuhar, southeast coast of India. Environ Monit Assess 169(1):553–568
Chidambaram S, Prasanna MV, Singaraja C, Thilagavathi R, Pethaperumal S, Tirumalesh K (2012) Study on the saturation index of the carbonates in the groundwater using WATEQ4F, in layered coastal aquifers of Pondicherry. J Geol Soc India 80(6):813–882
Doneen LD (1948) The quality of irrigation water. California Agriculture Dept 4(11):6–14
Eaten EM (1950) Significance of carbonate in irrigation water. Soil Sci 69:123–133
Gurugnanam B, Suvedha M, Vasudevan S, Murugiah M, Kerthikeyan C (2009) Groundwater quality investigation in Veeranam catchment area, Tamil Nadu, India. Jl of Applied Geochemistry 11(1):pp76–pp83
Handa BK (1964) Modified classification procedure for rating irrigation waters. Soil Sci 98(2):264-269
Handa BK (1975) Chemistry and genesis of fluoride containing ground waters, India. Gruond water Bull 3:275–281
Handa BK (1978) Occurrence of heavy metals and cyanides as indicates of groundwater pollution. JIPHE India 1978(1):pp30–pp35
Handa BK (1986) Water quality and water pollution problems on the Indian sub pollution and monitering. Csio Chandigarh, pp:473–492
Jain CK, Bhatia KKS, Vijay T (1997) Groundwater quality in a coastal region of Andhra Pradesh. Indian Jour Env Health 39:182–192
Jayakumar R (1993) Deterministic and predictive models for characteristics in saline and alkaline soils. In: Geographical Perspectives on Irrigation (Edt) by Ramkumar. Rawat Publication, Jaipur, pp 69–80
Krupanidhi KVJR (1986) CGWB. Groundwater resources and development potential of Broach (Bharuch) District, Gujarat
Lawrence JF (1995) Digital evaluations of groundwater resources in Ramanathapuram DIST., Tamilnadu, Unpublished Ph.D Thesis, ManonmanianSundaranar University p291
Mohan R, Singh AK, Tripathi J, Chowdhary GC (2000) Hydrochemistry and quality assessment of groudwater in Naini Industrial area, Allahabad District, Uttapradesh. Jgeol Soc of India 55(1):77–90
Piper A (1954) A graphic procedure in the geochemical interpretation of water analysis, USGS Groundwater Note 12:63
Puranik SC, Abbi AK (2000) Agricultural suitability of groundwater and conjuctive use of groundwater – canal water in TupariHalla Basin, Karnataka. In : Proceedings of International Seminar on Applied Hydrogeochemistry, Annamalai University pp 250-255
Rajaram T Ashuthosh Das (2008) Water pollution by industrial effluents in India
Ramanathan AL, Subramaniyan V, Das PK (1996) Biochemical studies in Cauvery Estuary, east coast of India. Indian J Marine sciences 25:71–73
Ramkumar T, Venkatramanan S, Anithamary I, Tamilselvi M, Ramesh G (2010) Hydrogeochemical quality of groundwater in Vedaranniyam town, Tamilnadu, India. Research Journal of Environmental and Earth Sciences. Maxwell Scientific Organization 2(1):44–48
Richards LA (1954) Diagnosis and Improvement of Saline and Alkali Soils, Agric. Handbook 60, U.S Department of Agriculture. Washington D.C, p 160
Sako A., Yaro JM. Bamba O.(2018) Impacts of hydrogeochemical processes and anthropogenic activities on groundwater quality in the Upper Precambrian sedimentary aquifer of northwestern Burkina Faso, Applied Water Science volume 8, Article number: 88
Sondhi TN, Ramprakash (2000) Impact of nitrate phosphate and potassium on agriculture in Ganga Basin, Uttar pradesh .In:Proceedings of International seminar on applied hydro geochmistry , Annamalai University pp10-213
Srinivasamoorthy K, Chidambaram S, Anandhan P Vasudevan, S. (2003) Hydrogeochemistry and quality assessment of groundwater from a industrial town. In: Symposium on Clay in relation to environment ,p337
Srinivasamoorthy K, Chidambaram S, Anandhan P, Vasudevan S (2005) Application of statistical analysis of the hydrogeochemical study of groundwater in hard rock terrain, Salem district, Tamilnadu. Journal of geochemistry 20:181–190
Stuyfzand PJ (1989) Nonpoint sources of trace elements in potable groundwater in the Netherlands. Proceedings of 18th TWSA Water Workings. Testing and Research Institute KIWA
USSL (1954) Diagnosis and improvement of saline and alkali soils. USDA Handbook 60:147
Vasudevan S, Ramkumar T, Srinivasamoorthy K, Vijayakumar V, Venkataramanan V, Chidambaram S (2010) Hydrogeochemistry in parts of Ariyalur region, Perambalur district, Tamilnadu, India. Jr of Applied Geochemistry 12(2):253–260
Venkatramanan S, Ramkumar T, Vasudevan S, Ramesh G, Anithamary I, Vijayakumar V (2009) Assessment of hydrogeochemistry of groundwater in Muthupet coastal region, Tamilnadu, India. International Journal of Applied environmental sciences (IJAES) 4(2):165–172
Wilcox LV (1955) Classification and use of irrigation water. US Geol Dept Agri Circle 969:19
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Chockalingam, K., Mohan, R. & Palusamy, A. Hydro geochemical study of groundwater in eastern part of Vellar River, Chidambaram Taluk, Cuddalore District, Tamil Nadu. Arab J Geosci 14, 1128 (2021). https://doi.org/10.1007/s12517-021-07466-9
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DOI: https://doi.org/10.1007/s12517-021-07466-9