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Isotope and chemical geothermometry and its applications 被引量:2

Isotope and chemical geothermometry and its applications
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摘要 The Na-K-Mg Geoindicator created by Giggenbach (1988) is convenient to use but it is still based on the empirical geothermometry equations and discrepancy for different cation geo-thermometers is observed. In fact, the location of the curve of 'full equilibrium' is different if a different Na-K geothermometry equation is used. The difference is pronounced for temperatures lower than about 220℃. A case study on the Zhangzhou geothermal field of SE China resulted in a reliable estimate of reservoir temperature of 150℃ by the SO4-H2O pair Oxygen-18 isotope geothermometer. This has provided an example of attained equilibrium of the marine sulphate in the geothermal system in the low-medium temperature range (<150℃). A recent refinement of the theoretical geothermometry was achieved by the FixAl method, which provides the possibility to identify and solve problems such as an erroneous analytical value of Aluminium, and influence of processes such as mixing and degassing, and therefore makes it possible to reconstruct most of the 'lost equilibrium' in geothermal systems.
作者 庞忠和
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2001年第S1期16-20,共5页 中国科学(技术科学英文版)
关键词 ISOTOPE GEOTHERMOMETRY GEOTHERMAL RESOURCES Zhangzhou China. isotope, geothermometry, geothermal resources, Zhangzhou, China.
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  • 1Lloyd,R. M.Oxygen isotope behaviour in the sulphate-water system, J[].Geophysical Research Letters.1968
  • 2Arnorsson,S.Chemical equilibrium in Icelandic geothermal systems: implications for chemical geothermometry investigations[].Geothermics.1983
  • 3Giggenbach,W.Geothermal solute equilibrium, derivation of the Na-K-Mg Geoindicator, Geochim.Cosmochim[].Acta.1988

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