Geochemical genesis of geothermal waters from the Longling hydrothermal area, Yunnan, Southwestern China
Qinghai Guo, Xiaobo Zhang, Mingliang Liu, J Li, Chao ZHOU, Canhai Zhang, Mingcheng Zhu, Wei Guo, Yan-xin WANG
Abstract
Open-access reader
Qinghai Guo, Xiaobo Zhang, Mingliang Liu, J Li, Chao ZHOU, Canhai Zhang, Mingcheng Zhu, Wei Guo, Yan-xin WANG
Abstract
Open-access reader
Longling is characterized by a wide distribution of hydrothermal areas,among which the Banglazhang hydrothermal system is the most geothermally active. Banglazhang is marked by intensive hydrothermal activities including hot springs,geysers,fumaroles and hydrothermal explosions. The geothermal waters from the Longling region are mainly HCO3-Na type with low but comparable SO4 and Cl concentrations. Calculations based on a variety of chemical geothermometers and a K-Ca geobarometer indicate that the Banglazhang hydrothermal system has much higher subsurface temperature and CO2 pressure compared to the other systems such as Daheba,Dazhulin and Huangcaoba. However,geothermal water samples collected from all these alternative hydrothermal areas are either partially equilibrated with reservoir minerals or are immature. The silica-enthalpy relationships of Banglazhang geothermal waters indicate the presence of a deep geothermal fluid with an enthalpy value and silica concentration of 945 J/g (up to around 220 ℃) and 339 mg/L. Our work indicates the Banglazhang area is a promising source in terms of long-term utilization of hydrothermal resources.
OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Longling is characterized by a wide distribution of hydrothermal areas,among which the Banglazhang hydrothermal system is the most geothermally active. Banglazhang is marked by intensive hydrothermal activities including hot springs,geysers,fumaroles and hydrothermal explosions. The geothermal waters from the Longling region are mainly HCO3-Na type with low but comparable SO4 and Cl concentrations. Calculations based on a variety of chemical geothermometers and a K-Ca geobarometer indicate that the Banglazhang hydrothermal system has much higher subsurface temperature and CO2 pressure compared to the other systems such as Daheba,Dazhulin and Huangcaoba. However,geothermal water samples collected from all these alternative hydrothermal areas are either partially equilibrated with reservoir minerals or are immature. The silica-enthalpy relationships of Banglazhang geothermal waters indicate the presence of a deep geothermal fluid with an enthalpy value and silica concentration of 945 J/g (up to around 220 ℃) and 339 mg/L. Our work indicates the Banglazhang area is a promising source in terms of long-term utilization of hydrothermal resources.
Key concepts: Hydrothermal circulation, Geothermal gradient, Fumarole, Geology, Geochemistry, Mineralogy, Geothermal energy, Hot spring