Study of Environmental Isotopes and Hydrochemical Characteristics of Groundwater from Springs at Archaeological Sites in Dompu Regency, West Nusa Tenggara, Indonesia

https://doi.org/10.22146/ijc.83792

Satrio Satrio(1*), I Nyoman Rema(2), Sonny Christophorus Wibisono(3), Luh Suwita Utami(4), Nyoman Arisanti(5), I Gusti Ngurah Jayanti(6), I Wayan Rupa(7)

(1) Research Center for Radiation Process Technology, Research Organization for Nuclear Energy, National Research and Innovation Agency (BRIN), Jakarta 12440, Indonesia
(2) Research Center for Prehistoric and History Archaeology, Research Organization for Archaeology, Language and Literature, National Research and Innovation Agency (BRIN), Jakarta 12510, Indonesia
(3) Research Center for Prehistoric and History Archaeology, Research Organization for Archaeology, Language and Literature, National Research and Innovation Agency (BRIN), Jakarta 12510, Indonesia
(4) Research Center for Prehistoric and History Archaeology, Research Organization for Archaeology, Language and Literature, National Research and Innovation Agency (BRIN), Jakarta 12510, Indonesia
(5) Research Center for Environmental Archaeology, Maritime Archaeology and Cultural Sustainability, Research Organization for Archaeology, Language and Literature, National Research and Innovation Agency (BRIN), Denpasar 80223, Indonesia
(6) Research Center for Environmental Archaeology, Maritime Archaeology and Cultural Sustainability, Research Organization for Archaeology, Language and Literature, National Research and Innovation Agency (BRIN), Denpasar 80223, Indonesia
(7) Treasures of Religion and Civilization, Research Organization for Archaeology, Language and Literature, National Research and Innovation Agency (BRIN), Denpasar 80223, Indonesia
(*) Corresponding Author

Abstract


The existence of groundwater sources in several springs at archaeological sites in Dompu Regency, West Nusa Tenggara, Indonesia, has been widely used by the surrounding community for various needs. However, from a number of the springs, there are springs whose water discharge has decreased. Meanwhile, from a number of existing springs, there is one spring whose groundwater is used every day even though it tastes a bit brackish. For this reason, it is important to conduct a groundwater study in the area with the aim of knowing the characteristics, preliminary identification of recharge areas and quality of groundwater in the study area through an environmental isotope and hydrochemical. The study was conducted by taking a number of groundwater samples from several archaeological sites in Dompu Regency. The results of environmental isotope and hydrochemical analysis show that there are 2 springs (2 archaeological sites), namely the Riwo and Ncona springs, because these two areas are part of the recharge area, which must be preserved by not clearing forest land. Meanwhile, for the quality of groundwater, of the 5 springs located at the archaeological sites, only the Hodo spring is of “poor quality” with the Na–Cl water type; it is unfit for drinking water.


Keywords


Dompu groundwater; groundwater characteristics; isotope, hydrochemical; Dompu archaeological sites; water quality

Full Text:

Full Text PDF


References

[1] Vansina, J., 1985, Oral Tradition as History, University Wisconsin Press, Wisconsin, US.

[2] Hagerdal, H., 2017, Held’s History of Sumbawa, Amsterdam University Press B.V., Amsterdam, Netherland.

[3] Rema, I.N., Juliawati, N.P., and Prihatmoko, H., 2018, Doro Bata site in Dompu, Nusa Tenggara Barat: Study form, space, and time, Kapata Arkeologi, 14 (1), 79–88.

[4] Meng, Y., Liu, G., and Li, M., 2015, Tracing the sources and processes of groundwater in an Alpine glacierized region in Southwest China: Evidence from environmental isotopes, Water, 7 (6), 2673–2690.

[5] Satrio, S., Prasetio, R., Alam, B.Y.C.S.S.S., Hadian, M.S.D., Hendarmawan, H., 2021, Comparison of isotope and hydrochemical characteristics of springs in Sembalun – Rinjani Area, East Lombok, West Nusa Tenggara, Indonesia before and after the earthquake events in 2018, Bull. Geol. Soc. Malays., 71, 215–226.

[6] Rema, I.N., Satrio, S., and Arisanti, N., 2022, The Utilization of the Dorobata Terrace, Dompu Regency, West Nusa Tenggara, Proceedings of the 9th Asbam International Conference (Archeology, History, & Culture in The Nature of Malay) (ASBAM 2021), Advances in Social Science, Education and Humanities Research, Atlantis Press, 660, 70–77.

[7] Irvine, D.J., Wood, C., Cartwright, I., and Oliver, T., 2021, Depth to water table correction for initial carbon-14 activities in groundwater mean residence time estimation, Hydrol. Earth Syst. Sci., 276, 5415–5424.

[8] Mook, W.G., 2000, Environmental Isotopes in The Hydrological Cycle: Principles and Applications, International Atomic Energy Agency and United Nations Educational, Scientific and Cultural Organization, Paris, France.

[9] Hershey, R.L., Fereday, W., and Thomas, J.M., 2016, Dissolved Organic Carbon 14C in Southern Nevada Groundwater and Implications for Groundwater Travel Times, Technical Report, Nevada Field Office, National Nuclear Security Administration, U.S. Department of Energy, Las Vegas, Nevada, Publication No. 45268.

[10] Smerdon, B.D., Redding, T.E., and Beckers, J., 2009, An overview of the effects of forest management on groundwater hydrology, J. Ecosyst. Manage., 10, 22–44.

[11] IAEA, 2013, Isotope Methods for Dating Old Groundwater, Isotopes in Environmental and Health Studies, International Atomic Energy Agency, Vienna, Austria.

[12] Boschetti, T., Cifuentes, J., Iacumin, P., and Selmo, E., 2019, Local meteoric water line of Northern Chile (18° S–30° S): An application of error-in-variables regression to the oxygen and hydrogen stable isotope ratio of precipitation, Water, 11 (4), 791.

[13] Torbehbar, A.K., and Sattari, S.M., 2015, Geochemistry and Isotope Study of Discharged Geothermal Fluids, NW Sabalan Geothermal Field, NW Iran, Proceedings World Geothermal Congress 2015, 19-25 April 2015, Melbourne, Australia.

[14] Luo, W., Gao, X., and Zhang, X., 2018, Geochemical processes controlling the groundwater chemistry and fluoride contamination in the Yuncheng Basin, China–An area with complex hydrogeochemical conditions, PLoS One, 13 (7), e0199082.

[15] Lu, Y., Tang, C., Chen, J., and Chen, J., 2015, Groundwater recharge and hydrogeochemical evolution in Leizhou Peninsula, China, J. Chem., 2015, 427579.

[16] Dedzo, M.G., Tsozué, D., Mimba, M.E., Teddy, F., Nembungwe, R.M., and Linida, S., 2017, Importance of rocks and their weathering products on groundwater quality in Central-East Cameroon, Hydrology, 4 (2), 23.

[17] Lyu, M., Pang, Z., Yin, L., Zhang, J., Huang, T., Yang, S., Li, Z., Wang, X., and Gulbostan, T., 2019, The control of groundwater flow systems and geochemical processes on groundwater chemistry: A case study in Wushenzhao basin, NW China, Water, 11 (4), 790.

[18] Zhang, B., Zhao, D., Zhou, P., Qu, S., Liao, F., and Wang, G., 2020, Hydrochemical characteristics of groundwater and dominant water–rock interactions in the Delingha area, Qaidam basin, northwest China, Water, 12 (3), 836.

[19] Wu, C., Wu, X., Qian, C., Zhu, G., 2018, Hydrogeochemistry and groundwater quality assessment of high fluoride levels in the Yanchi endorheic region, northwest China, Appl. Geochem., 98, 404–417.

[20] Badr, E.A., and Al-Naeem, A.A., 2021, Assessment of drinking water purification plant efficiency in Al-Hassa, eastern region of Saudi Arabia, Sustainability, 13 (11), 6122.

[21] Reyes-Toscano, Claudia A., Alfaro-Cuevas-Villanueva, R., Cortés-Martínez, R., Morton-Bermea, O., Hernández-Álvarez, E., Buenrostro-Delgado, O., and Ávila-Olivera, J.A., 2020, Hydrogeochemical characteristics and assessment of drinking water quality in the urban area of drinking water quality in the urban area of Zamora, Mexico, Water, 12 (2), 556.



DOI: https://doi.org/10.22146/ijc.83792

Article Metrics

Abstract views : 738 | views : 281


Copyright (c) 2023 Indonesian Journal of Chemistry

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

 


Indonesian Journal of Chemistry (ISSN 1411-9420 /e-ISSN 2460-1578) - Chemistry Department, Universitas Gadjah Mada, Indonesia.

Web
Analytics View The Statistics of Indones. J. Chem.