Acknowledgement
Supported by : 한국연구재단
References
- 고용권, 김천수, 배대석, 김건영, 정형재, 1999a, 초정지역 탄산수의 지화학적 연구, 지하수환경 6(4), 171-179.
- 고용권, 김천수, 배대석, 이동익, 2000, 문경지역 심부지하수의 수리화학 및 환경동위원소 연구, 자원환경지지질, 33(6), 469-489.
- 고용권, 윤성택, 김천수, 최헌수, 김건영, 1999b, 중원지역 탄산수의 지화학적 진화, 자원환경지질, 32(5), 469-483.
- 김규한, 정윤정, 정찬호, 長尾敬介, 2008, 강화 석모도 지역 온천수와 지하수의 수리지 구화학 및 동위원소 연구, 자원환경지질, 41(1), 15-32.
- 김봉균, 지정만, 이돈영, 소칠섭, 1975, 한국지질도 1 : 50,000(현리도폭), 국립지질광물연구소, 19p.
- 김옥준, 김서운, 유병화, 박병권, 김규호, 1975, 한국지질도 1 : 50,000(북분리도폭), 국립 지질광물연구소, 17p.
- 김정찬, 고희재, 이승렬, 이창범, 최성자, 박기화, 1999, 지질도폭설명서 1 : 250,000, 강릉-속초도폭, 한국지질자원연구원, 68p.
- 손치무, 김수진, 1963, 한국지질도 1 : 50,000(춘양도폭), 국립지질조사소, 28p.
- 이대성, 윤석규, 김정진, 1975, 한국지질도 1 : 50,000(창촌도폭), 국립지질광물연구소, 19p.
- 이동우, 김상욱, 1965, 한국지질도 1 : 50,000(서벽리도폭), 국립지질조사소, 25p.
- 이종혁, 이상현, 이태우, 1989, 한국지질도, 1 : 50,000(풍기도폭), 한국동력자원연구소, 28p.
- 정찬호, 2002, 경북지역 탄산수의 생성기원과 수리화학적특성, 자원환경지질, 35(2), 121-136.
- 정찬호, 2004, 강원지역에서 산출되는 탄산천의 수리화학 및 생성환경, 한국광물학회지, 17(1), 61-73.
- 정찬호, 고용권, 신선호, Nagao, K., 김규한, 김건영, 2009, 이천 및 포천지역 온천수의 수리화학적 특성 및 영족기체 기원, 지질공학, 19(4), 529-541.
- 정찬호, 김종근, 이재영, 2001, 충청지역 탄산수의 산출양상, 지화학적 특성 및 생성기원, 자원환경지질, 34(2), 227-241.
- 정찬호, 김통권, 김천수, 김수진, 1997, 편마암-물 상호반응에 의한 지하수의 지화학적 진화 및 이차광물 생성에 대한 반응경로 모델링, 한국광물학회지, 10(1).
- 정찬호, 이진국, 2000, 경상계 퇴적암에서 산출되는 탄산 지하수의 지화학적 특성과 생성기원, 지질공학, 10(1), 51-62.
- 정찬호, 정기영, 1999, 청송지역 달기 탄산약수의 지화학적 수질특성과 생성기원, 자원 환경지질, 32(5), 455-468.
- 정찬호, 허현성, Nagao, K., 김규한, 2007, 호남지역 저온형 온천수의 수리지화학적 및 안정동위원소 특성과 영족기체의 기원에 관한 연구, 자원환경지질, 40(5), 635-649.
- 정찬호, Nagao, K., 김규한, 최훈공, Sumino, H., 박지선, 박충화, 이종익, 허순도, 2008, 동해안지역 온천 유형별 수리화학적 특성 및 영족기체 기원, 지하수토양환경, 13(1), 1-12.
- 최범영, 이승렬, 임순복, 2007, 한국지질도 1 : 50,000(양 구도폭), 한국지질자원연구원, 29p.
-
Aires-Barros, L., Marques, J. M., Graca, R. C., Matias, M. J., Van Der Weijden, C., Kreulen, H. R. and Eggenkamp, H. C., 1998, Hot and cold
$CO_2$ -rich mineral waters in Chaves geothermal area(Northern Portugal), Geothermic 27, 89-107. https://doi.org/10.1016/S0375-6505(97)84483-5 - Aka, F. T., Kusakabe, M., Nagiouang, K. and Tanyileke, G., 2000, Noble gas isotopic compositions and water/gas chemistry of soda springs from the islands of bioko, Sotom and Annobon, along with Cameroon Volcanic Line, West Africa. App Geochem., 16, 323-338.
- Bakalowicz, M., 1979, Contribution de geochime deseaux a la connaissance de Iáquifere karstque et de la karstification. PhD thesis, Univ., Pierre et Marie Curie, Paris, France. 153p.
- Barnes, I., Irwin, W. P. and White, D. E., 1978, Global distribution of carbon dioxide discharges and major zones of seismicity. Open-File Rept. Water Resources investigations, 78-39. Menlo park, Calif., US Geol. Survey, 1-12.
- Blavoux, B., Dazy, J. and Sarrot-Reynauld, J., 1982, Information about the origin of thermomineral waters and gas by means of environment isotopes in eastern Azerbijan, Iran and southeast France. J. Hydrol., 56, 23-28. https://doi.org/10.1016/0022-1694(82)90054-3
-
Ceron, J. C., Bosch, A. P. and Galdeano, C. S., 1998, Isotopic identification of
$CO_2$ from a deep origin in thermomineral water of southeastern Spain. Chem. Geol., 149, 251-258. https://doi.org/10.1016/S0009-2541(98)00045-X - Clark, I. and Fritz, P., 1997, Environmental isotopes in hydrology, Lewis publisers, 323p.
-
Cornides, I. and Cornides, M., 1983, Isotope geochemical study of the
$CO_2$ occurremces in the Eastern Carpathians. Foldt. Kozl, Budapest, 121-125. - Cornides, I and Kecskes. A., 1974, A genetic investigation of the carbon dioxids occurrences in the Carpathian Basin. Part . Publ. Hung. Mining Res. Inst., Budapest, 17, 263-266.
- Cornides, I and Kecskes. A., 1982, Deep-seated carbon dioxide in Slovakia : the problem of its origin. Geol. Zbornik. Geol. Carpahtica, 33, 183-190.
- Craig, H., 1953, The geochemistry of the stable carbon isotopes. Geochem. et Cosmochim. Acta, 3, 53-92. https://doi.org/10.1016/0016-7037(53)90001-5
- Griesshaber, E., ONions, R. K. and Oxburgh, E. R., 1992, Helium and carbon isotope system atics in crustal fluids from the Eifel, the Rhine Graben and Black Forest, F.R.G. Chem,. Geol., 99, 213-235. https://doi.org/10.1016/0009-2541(92)90178-8
- Hem, J. D., 1992, Study and interpretation of the chemical characteristics of natural water, 4rd ed., US Government printing office, Washington, 182p.
- Hoeft, J., 1997, Stable Isotope Geochemistry, Springer, 201p.
- Irwin, W. P. and Barnes, I., 1980, Tectonic relation of carbon dioxide discharges and earthquakes, J. Geophys.. Res., 85, 3115-3121. https://doi.org/10.1029/JB085iB06p03115
- Ishibashi, J., Sano, Y., Wakita, H., Gamo, T., Tsutsumi, M, and Sakai, H., 1995, Helium and carbon geochemistry of hydrothermal fluids from the mid-Okinawa Trough Bak arc Basin, southwest of Japan, Chem. Geol., 123, 1-15. https://doi.org/10.1016/0009-2541(95)00051-M
-
Jeong, C. H., Kim, H. J. and Lee, S. Y., 2005, Hydrochemistry and genesis of
$CO_2$ -rich springs from Mesozoic granitoids and their adjacent rocks in South Korea, Geochemical Journal, 39, 517-530. https://doi.org/10.2343/geochemj.39.517 - Kendall, C. and McDonnell, J. J., 1998, Isotope tracers in catchment hydrology, Elsevier, Amsterdam, 839p.
-
Marques, J. M., Monteiro Santos F. A., Graca, R. C., Castro, R., Aires-Barros, L. and Mentes Victor, L.A., 2001, A geohemical and geophysical aapproach to derive a conceptual circulation model of
$CO_2$ -rich mineral waters: A case study of Vilarelho de Raia, Northern Portugal. Hydrogeology Journal, 9, 584-596. https://doi.org/10.1007/s10040-001-0162-8 -
Mayo, A. L. and Muller, A. B., 1997, Low temperature diagenetic-metamorphic and magmatic and magmatic contributions of external
$CO_2$ gas to shallow groundwater system, J. of Hydrology, 197, 286-304. https://doi.org/10.1016/S0022-1694(96)03276-3 - McCrea, J. M., 1950, The isotopic chemistry of carbonates and a paleotemperature csale, J. Chem, Phys., 18, 849-857. https://doi.org/10.1063/1.1747785
-
Moore, J. G., Bachelder, J. N. and Cunningham, C. G., 1997,
$CO_2$ -filled vesicles in mid-ocean basalt. J. Volcanol. Geothermal Res., 2, 309-327. -
Pineau. P., Javoy, M. and Bottinga, Y., 1976,
$^{13}C/^{12}C $ ratios of rocks and inclusions in popping rocks of the mid-Atlantic Ridge and their vearing on the problem of isotopic compositions of deep seated carbon, Earth Planet. Sci. Lett., 29, 914-923. - Sumino, H., 2001, Origin of alkali basalt volcanism inferred from noble gas isotopic systematics: Implications for mantle dynamics in back arc region of subduction zone. Ph. D. thesis, Univ. Tokyo, Japan. 185p.
Cited by
- Monitoring of CO2-rich waters with low pH and low EC: an analogue study of CO2 leakage into shallow aquifers vol.75, pp.5, 2016, https://doi.org/10.1007/s12665-015-5206-9
- Hydrogeochemical modeling on water-rock-CO2 interactions within a CO2-injected shallow aquifer vol.53, pp.5, 2017, https://doi.org/10.14770/jgsk.2017.53.5.657
- Compositional data analysis and geochemical modeling of CO2–water–rock interactions in three provinces of Korea 2019, https://doi.org/10.1007/s10653-017-0057-9
- Geochemical Study on CO2-rich Waters of Daepyeong Area, Korea: Monitoring Implication for CO2 Geological Storage vol.37, 2013, https://doi.org/10.1016/j.egypro.2013.06.339
- Status of Community Drinking Water in Korea and Implications for Appropriate Management vol.18, pp.6, 2013, https://doi.org/10.7857/JSGE.2013.18.6.056
- 청송 달기탄산약수의 수리지화학과 탄산 및 영족기체 기원 vol.22, pp.1, 2011, https://doi.org/10.9720/kseg.2012.22.1.123
- 제주도 서귀포지역 천연탄산수의 기원과 수리화학특성 vol.26, pp.4, 2011, https://doi.org/10.9720/kseg.2016.4.515
- Evaluation of Long-Term Impacts of CO2 Leakage on Groundwater Quality Using Hydrochemical Data from a Natural Analogue Site in South Korea vol.12, pp.5, 2011, https://doi.org/10.3390/w12051457
- Hydrochemical Parameters to Assess the Evolutionary Process of CO2-Rich Spring Water: A Suggestion for Evaluating CO2 Leakage Stages in Silicate Rocks vol.12, pp.12, 2020, https://doi.org/10.3390/w12123421