CO₂-DRIVEN COLD WATER GEYSERING WELL IN TRANSYLVANIA - BĂILE CHIRUI
Keywords:
hydrogeologic drilling, geysering well, cold mineral water, CO2 movement, South Harghita Moutains, Chirui Geyser.Abstract
Co2-Driven Cold Water Geysering Well in Transylvania - Băile Chirui. Cold water “geyser” or geysering well is the internationally used term of such phenomenon where cold water is erupting from a hydrogeological well due to CO2 movement. Until now there have been reported 14 geysering wells all over the World (Glennon & Pfaff, 2004). Through this article we would like to add a “new” cold water “geyser” to the above mentioned list, the so called Chirui Geyser. Investigations on Chirui Geyser were carried out several times during 2007 – 2013. Compared with the others, Chirui Geyser has the longest erupting phase with its minimum 38 hours of activity. Switching from the active to the inactive phase or vice versa the values of different parameters of the water are also changing. There has been described an oscillating phase before the water falls back into the pipe. Such activity has not been reported at other cold water geysering wells. Chirui Geyser is located in a post-volcanic area where most probably CO2 has a volcanic origin. In the South Harghita region there are several hydrogeological drillings that reached CO2 rich mineral water aquifers. Many of them could possibly have geysering activity.
References
Antolik, K. (1890), Az időszakos hidegvizű források utánzása, Fizikai Kísérletek, Természettudományi Közlöny, Vol. 22, Pótfüzet 3., Budapest
Ariniei, Șt., Pricăjan, A. (1975), Some geological connections between the mineral carbonic and thermal waters and the post-volcanic manifestations correlated with the deep geological structure of the East Carpathians territory – Romania, Institutul de Geologie și Geofizică, Studii Tehnice și Economice, Seria E, Hidrogeologie, nr. 12, Lucrările Simpozionului Internațional de Ape Minerale și Termale, Eforie, June 7-14, 1974
Assayag, N., Bickle, M., Kampman, N., Becker, J. (2009), Carbon isotopic constraints on CO2 degassing in cold-water Geysers, Green River, Utah, Energy Procedia, Vol. 1, Issue 1
Baer, J. L., Rigby, J. K. (1978), Geology of the Crystal Geyser and environmental implications of its effluent, Grand County, Utah, Utah Geology, Vol. 5, No. 2, Utah Geological and Mineral Survey, Utah Department of Natural Resources
Barth, J. A. (2012), Crystal Geyser, Utah: Active travertine deposits of a cold water carbon dioxide – driven geyser and related ancient deposits of the Little Grand Wash Fault, Thesis for the degree Master of Science, University of Houston, Department of Earth and Atmospheric Sciences, USA
Bissig, P., Goldscheider, N., Mayoraz, J., Surbeck, H., Vuataz, F.-D. (2006), Carbogaseous spring waters, coldwater geysers and dry CO2 exhalations in the tectonic window of the Lower Engadine Valley, Switzerland, Eclogae Geologicae Helvetiae, Vol. 99, Issue 2
Burnside, N. M. (2010), U-Th dating of travertines on the Colorado Plateau: implications for the leakage of the geologically stored CO2, PhD Thesis, University of Glasgow, Department of Geographical and Earth Sciences, UK
Campbell, A. J., Baer, L. J. (1978), Little Grand Wash Fault – Crystal Geyser Area, Oil and gas fields of the Four Corners Area, Vol. I-II
Czellecz B., Pál Z. (2011), The CO2 driven Lobogo mineral water in Băile Chirui, Romania, Collegium Geographicum nr.9, Special Edition, I.P. Handbook, Community Scale water management patterns in Transylvania, 13th European Seminar on Geography of water held on 4-15 July 2010 in Cluj-Napoca, Romania
Dobra, E. (1997), Najnovsie poznatky o chemizme vody Herlianskeho “gejzíra”, Acta Montanistica Slovaka, Vol. 2, Kosice
Dobra, E., Durove, J., Pinka, J., Slavkovsky, J. (2007), Od Herlianskeho gejzíru po overenie zdrojov geotermálneho potenciálu v Kosickej kotline, Acta Montanistica Slovaka, Vol. 12, Special Issue 1, Kosice
Emszt, K. (1911), Az ipolynyitrai iszőszakos szökőforrás, Földtani Közlöny, Vol. 41, No. 11-12, Budapest
Evans, J. P., Heath, J., Shipton, Z. K., Kolesar, P. T., Dockrill, B., Williams, A., Kirchner, D., Lachmar, T. E., Nelson, S. T. (2004), Natural leaking CO2-charged systems as analogs for geologic sequestration sites, Third Annual Conference on Carbon Capture and Sequestration, Alexandria, Virginia, USA
Glennon, J. A., Pfaff, R. M. (2004), The operation and geography of carbon dioxide driven, cold-water “geysers”, The GOSA Transactions, Vol. IX.
Gouveia, F., Johnson, M., Leif, R., Friedmann, J. (2005), Aerometric measurement and modeling of the mass of the CO2 emissions from Crystal Geyser, Utah, Lawrence Livermore National Laboratory Report – UCRL-TR-211870
Han, W. S., Lu, M., McPherson, B. J., Keating, E. H., Moore, J., Park, E., Watson, Z. T., Jung, N.-H. (2013), Characteristics of CO2-driven cold-water geysers, Crystal Geyser in Utah: experimental observation and mechanism analysis, Geofluids, Vol. 13, Issue 3
Heath, J. E., Lachmar, T. E., Evans, J. P., Kolesar, P. T., Williams, A. P. (2009), Hydrogeochemical characterization of leaking, carbon dioxide – charged fault zones in east-central Utah, with implications for geologic carbon storage, Carbon Sequestration and its role in the global carbon cycle, Geophysical Monograph Series 183, 2009, American Geophysical Union
Kampman, N., Maskell, A., Bickle, M. J., Evans, J. P., Schaller, M., Purser, G., Zhou, Z., Gattacceca, J., Peitre, E. S., Rochelle, C. A., Ballentine, C. J., Busch, A. (2013), Scientific drilling and downhole fluid sampling of a natural CO2 reservoir, Green River, Utah, Scientific Drilling, Vol. 16
Ladd, B. (2014), Insights into geyser behavior: The role of non-condensable gas, Thesis for the degree of Master of Science, University of Calgary, Department of Geoscience, Alberta, USA
László, A., Botár, N., Dávid, A. (1999), Raport geologic privind lucrările hidrogeologice din perimetrul Chirui, Selters, Vlăhița, jud. Harghita, Ministerul Industriei și Comerțului, D.G.S.I.M.G. București, S.C. Geoloex S.A. Miercurea-Ciuc
Lu, X., Watson, A. (2002), A review of geysering flows, Proceedings 24th NZ Geothermal Workshop 2002
Lu, X., Watson, A. (2005), A review of progress in understanding geysers, Proceedings World Geothermal Congress 2005, Antalya, Turkey, 24-29 April, 2005
Lu, X., Watson, A., Gorin, A.V., Deans, J. (2005), Measurements in a low temperature CO2-driven geysering well, viewed in relation to natural geysers, Geothermics, Vol. 34, Issue 4
Lucz, I. (1884), A Rank-Herlányi időszakos szökőkút tüneményeinek kisérleti előállítása, Természettudományi Közlöny, Vol. 16, No. 181, Budapest
Mayo, A. L., Shrum, D. B., Chidsey, T. C. Jr. (1991), Factors contributing to exsolving carbon dioxide in ground water systems in the Colorado Plateau, Utah, Geology of East-Central Utah
Nurkamal, I., Lu, X., Watson, A., Gorine, V. (2001), Flow measurements in the bore of a carbon-dioxide driven geysering well, Proceedings 23rd NZ Geothermal Workshop 2001
Rinehart, J. S. (1974), Geysers, EOS Transactions, Vol. 55, Issue 12, American Geophysical Union
Rinehart, J. S. (1976), Geysers and geothermal energy, Naturwissenschaften, Vol. 63, Springer-Verlag
Rinehart, J. S. (1980), The role of gases in geysers, Geysers and Geothermal Energy (eds.: Rinehart), Chapter 4, Springer, New York
Shipton, Z. K., Evens J. P., Kirschner, D., Kolesar, P. T., Williams, A. P., Heath, J. E. (2004), Analysis of CO2 leakage through “low-permeability” faults from natural reservoirs in the Colorado Plateau, east-central Utah, Geological storage of Carbon Dioxide (eds.: Baines & Worden), Geological Society, London, Special Publications, Vol. 233
Szakács A., Seghedi, I. (1995), The Călimani-Gurghiu-Harghita volcanic chain, East Carpathians, Romania: volcanological features, Acta Vulcanologica, Vol. 7, Nr. 2
Waltham, T. (2001), Crystal Geyser – Utah’s cold one, Geology Today, Vol. 17, Issue 1
Watson, Z. T. (2014), An analysis of CO2-driven Cold-water Geysers in Green River, Utah and Chimayo, New Mexico, Thesis for the degree of Master of Science, Geosciences, University of Wisconsin-Milwaukee, USA
Wilkinson, M., Gilfillan, S. M. V., Haszeldine, R. S., Ballentine, C. J. (2007), Plumbing the depths: Testing natural tracers of subsurface CO2 origin and migration, Utah, Carbon dioxide sequestration in geological media – State of the science (eds.: M. Grobe, J. C. Pashin, R. L. Dodge), AAPG Studies 59
Zsigmondy, B. (1875), A Rank-Herlányi artézi szökőkút, Természettudományi Közlöny, Vol. 7, No. 75, Budapest
*, (1914), Málnás-fürdő, Erdély, Vol. 23, No. 3, Kolozsvár
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