Evaluation of groundwater tritium content and mixing behavior of Tatapani geothermal systems, Chhattisgarh, India

Isotopic investigations were carried out on hot springs, groundwater and surface water to evaluate the mixing processes within the geothermal system. Physico-chemical parameter (EC, pH, Temp.) and tritium content of groundwater, hot springs and surface water were measured. The temperature of the hot...

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Veröffentlicht in:Journal of radioanalytical and nuclear chemistry 2017-09, Vol.313 (3), p.617-623
Hauptverfasser: Ansari, Md. Arzoo, Sinha, U. K., Deodhar, Archana, Mendhekar, G. N., Kumar, Mukund, Patbhaje, S. D., Dash, Ashutosh
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Sprache:eng
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Zusammenfassung:Isotopic investigations were carried out on hot springs, groundwater and surface water to evaluate the mixing processes within the geothermal system. Physico-chemical parameter (EC, pH, Temp.) and tritium content of groundwater, hot springs and surface water were measured. The temperature of the hot springs were varied from 60 to 98.8 °C and EC from 674 to 728 μS/cm. The tritium content of groundwater varies from 1.5 to 5 TU whereas, geothermal water have slightly less tritium and their values ranges from 1.4 to 4.4 TU. Low tritium, higher EC and high temperature of a few hot springs indicate insignificant mixing whereas high tritium, lower EC and low temperature indicates significant mixing of thermal and non-thermal water. The degree of mixing for geothermal springs is estimated. It is found that the groundwater components present in the diluted thermal waters are about 25–80%. It is also observed that mixing process is prominent along the fault and in the area where groundwater exploitation is more. Extensive pumping of groundwater causes an increase in the rate of mixing of thermal and non-thermal water. The tritium content of groundwater, surface water and hot springs are indicating, it is of modern recharge.
ISSN:0236-5731
1588-2780
DOI:10.1007/s10967-017-5377-9