Geochemistry of hot springs in the Tengchong hydrothermal areas, Southwestern China

As an important volcanic geothermal region in China, Tengchong belongs to the Mediterranean–Himalayas geothermal belt and is characterized by wide distribution of volcanic rocks. Fifty-eight hydrothermal areas have been identified in Tengchong, among which the Rehai hydrothermal system is the most g...

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Published inJournal of volcanology and geothermal research Vol. 215-216; pp. 61 - 73
Main Authors Guo, Qinghai, Wang, Yanxin
Format Journal Article
LanguageEnglish
Published Oxford Elsevier B.V 15.02.2012
Elsevier
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Abstract As an important volcanic geothermal region in China, Tengchong belongs to the Mediterranean–Himalayas geothermal belt and is characterized by wide distribution of volcanic rocks. Fifty-eight hydrothermal areas have been identified in Tengchong, among which the Rehai hydrothermal system is the most geothermally active. The geothermal waters from Rehai are mainly Na-HCO3-Cl and Na-HCO3 types, whereas those from the other hydrothermal areas are mainly Na-HCO3, Na-Ca-HCO3, Ca-HCO3, Ca-Mg-HCO3, Mg-Na-Ca-HCO3, and Mg-Ca-HCO3 types. Both quartz geothermometer and K-Mg geothermometer indicate that the Rehai geothermal field has higher subsurface temperatures than the other hydrothermal areas. Except for three Rehai samples, most geothermal water samples collected from Tengchong are far from the full equilibrium line in Giggenbach's triangular diagram, suggesting that the complete chemical re-equilibrium has not been achieved as these geothermal waters flow upward from reservoirs towards spring vents and possibly mix with cooler waters. Statistical analysis shows that Cl, B, Li, Rb, and Cs are the characteristic constituents of the Tengchong geothermal waters, and the good linear relations among these elements in the Rehai geothermal waters reflect the existence of a deep parent geothermal liquid (PGL) below Rehai. An enthalpy-chloride diagram of the Rehai geothermal waters suggests that the parent geothermal liquid has Cl−concentration of 291mg/L and enthalpy of 1495J/g. The PGL ascends to the surface through different channels and may cool by conduction of heat to reservoir host rocks, by boiling, or by mixing with cooler shallow groundwaters. ► Cl, B, Li, Rb, and Cs are characteristic constituents of the Tengchong geothermal waters ► The complete chemical re-equilibrium has not been achieved for most water samples ► Rehai has higher subsurface temperatures than the other hydrothermal areas of Tengchong ► A parent geothermal liquid with Cl−of 291mg/L and enthalpy of 1495J/g is present below Rehai
AbstractList As an important volcanic geothermal region in China, Tengchong belongs to the Mediterranean–Himalayas geothermal belt and is characterized by wide distribution of volcanic rocks. Fifty-eight hydrothermal areas have been identified in Tengchong, among which the Rehai hydrothermal system is the most geothermally active. The geothermal waters from Rehai are mainly Na-HCO3-Cl and Na-HCO3 types, whereas those from the other hydrothermal areas are mainly Na-HCO3, Na-Ca-HCO3, Ca-HCO3, Ca-Mg-HCO3, Mg-Na-Ca-HCO3, and Mg-Ca-HCO3 types. Both quartz geothermometer and K-Mg geothermometer indicate that the Rehai geothermal field has higher subsurface temperatures than the other hydrothermal areas. Except for three Rehai samples, most geothermal water samples collected from Tengchong are far from the full equilibrium line in Giggenbach's triangular diagram, suggesting that the complete chemical re-equilibrium has not been achieved as these geothermal waters flow upward from reservoirs towards spring vents and possibly mix with cooler waters. Statistical analysis shows that Cl, B, Li, Rb, and Cs are the characteristic constituents of the Tengchong geothermal waters, and the good linear relations among these elements in the Rehai geothermal waters reflect the existence of a deep parent geothermal liquid (PGL) below Rehai. An enthalpy-chloride diagram of the Rehai geothermal waters suggests that the parent geothermal liquid has Cl−concentration of 291mg/L and enthalpy of 1495J/g. The PGL ascends to the surface through different channels and may cool by conduction of heat to reservoir host rocks, by boiling, or by mixing with cooler shallow groundwaters. ► Cl, B, Li, Rb, and Cs are characteristic constituents of the Tengchong geothermal waters ► The complete chemical re-equilibrium has not been achieved for most water samples ► Rehai has higher subsurface temperatures than the other hydrothermal areas of Tengchong ► A parent geothermal liquid with Cl−of 291mg/L and enthalpy of 1495J/g is present below Rehai
Author Guo, Qinghai
Wang, Yanxin
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Keywords Hot spring
Geochemistry
Parent geothermal fluid
Tengchong
Rehai
Geothermometry
mixing
ground water
reservoirs
enthalpy
aquifers
hot springs
temperature
silicates
framework silicates
geothermal fields
flow
chlorides
volcanic rocks
host rocks
quartz
concentration
igneous rocks
subsurface
halides
vents
channels
boiling
equilibrium
statistical analysis
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SSID ssj0001080
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Snippet As an important volcanic geothermal region in China, Tengchong belongs to the Mediterranean–Himalayas geothermal belt and is characterized by wide distribution...
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elsevier
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StartPage 61
SubjectTerms Crystalline rocks
Earth sciences
Earth, ocean, space
Exact sciences and technology
Geochemistry
Geothermometry
Hot spring
Igneous and metamorphic rocks petrology, volcanic processes, magmas
Parent geothermal fluid
Rehai
Tengchong
Title Geochemistry of hot springs in the Tengchong hydrothermal areas, Southwestern China
URI https://dx.doi.org/10.1016/j.jvolgeores.2011.12.003
Volume 215-216
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