Hydrogeochemical and geothermal features of thermal springs along the Ganzi-Yushu fault, eastern Tibetan Plateau and its geological implications
Bo Wang
1, 2
,
Xiaocheng Zhou
3, 4
,
Jing Li
4
,
Jingchao Li
4
,
Yongxian Zhang
4
,
YONGXIAN ZHANG
4
,
Junfeng Shen
3
,
Jun Zhong
1
,
Zhicheng Bao
5
1
China Earthquake Networks Center, 100045, Beijing, China
|
2
State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, Beijing, 100029, China
|
4
United Laboratory of High-Pressure Physics and Earthquake Science, Key Laboratory of Earthquake Prediction, Institute of Earthquake Forecasting, CEA, Beijing, 100036, China
|
5
Jiangxi Earthquake Agency, Nanchang, 330026, China
|
Тип публикации: Journal Article
Дата публикации: 2024-01-05
scimago Q1
wos Q1
БС1
SJR: 1.001
CiteScore: 6.7
Impact factor: 3.4
ISSN: 08832927, 18729134
Environmental Chemistry
Geochemistry and Petrology
Pollution
Краткое описание
Important fault zone processes can be discerned from the hydrothermal fluid circulation associated with active seismic sources. This study focused on the geochemical and isotopic features of the thermal waters along the Ganzi-Yushu fault (GZYSF) located in the eastern Tibetan Plateau. 22 spring samples were collected to characterize the chemical compositions and calculate the geothermal reservoir temperatures. The hydrothermal waters are mainly recharged by meteoric water based on the δ18O and δ2H values. Immature waters with a Na + -HCO3- or Ca2+(Mg2+)-HCO3- composition were recognized in the study area, combined with the poor correlation between K+, Na+, Mg2+, HCO3− and Cl− suggesting a shallow hydrothermal fluid source. The 87Sr/86Sr ratios and high concentrations of B (from 20.3 to 9445 μg/L) and Li (from 3.04 to 2380 μg/L) show a dissolution of silicate minerals containing calcium and magnesium during fluid circulation. The geothermometry in the silicon-enthalpy system suggested equilibrium temperatures up to 146 °C, whereas most are low temperatures. The shallow geothermal fields along GZYSF show that most large earthquakes (M>5) were distributed in the transitional zone between high-value area and low-value area of the shallow geothermal field, suggesting a potential genetic link between geothermal field structure and earthquake nucleation along active faults. In conclusion, we proposed a conceptual model to portray the fluid circulation process. Such work can provide insights into the potential geothermal resource in Tibetan Plateau, and also investigate the processes controlling the fluid chemistry and the correlation with occurrence of earthquakes in the region.
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Wang B. et al. Hydrogeochemical and geothermal features of thermal springs along the Ganzi-Yushu fault, eastern Tibetan Plateau and its geological implications // Applied Geochemistry. 2024. Vol. 161. p. 105898.
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Wang B., Zhou X., Li J., Li J., Zhang Y., ZHANG Y., Shen J., Zhong J., Bao Z. Hydrogeochemical and geothermal features of thermal springs along the Ganzi-Yushu fault, eastern Tibetan Plateau and its geological implications // Applied Geochemistry. 2024. Vol. 161. p. 105898.
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TY - JOUR
DO - 10.1016/j.apgeochem.2024.105898
UR - https://linkinghub.elsevier.com/retrieve/pii/S0883292724000039
TI - Hydrogeochemical and geothermal features of thermal springs along the Ganzi-Yushu fault, eastern Tibetan Plateau and its geological implications
T2 - Applied Geochemistry
AU - Wang, Bo
AU - Zhou, Xiaocheng
AU - Li, Jing
AU - Li, Jingchao
AU - Zhang, Yongxian
AU - ZHANG, YONGXIAN
AU - Shen, Junfeng
AU - Zhong, Jun
AU - Bao, Zhicheng
PY - 2024
DA - 2024/01/05
PB - Elsevier
SP - 105898
VL - 161
SN - 0883-2927
SN - 1872-9134
ER -
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@article{2024_Wang,
author = {Bo Wang and Xiaocheng Zhou and Jing Li and Jingchao Li and Yongxian Zhang and YONGXIAN ZHANG and Junfeng Shen and Jun Zhong and Zhicheng Bao},
title = {Hydrogeochemical and geothermal features of thermal springs along the Ganzi-Yushu fault, eastern Tibetan Plateau and its geological implications},
journal = {Applied Geochemistry},
year = {2024},
volume = {161},
publisher = {Elsevier},
month = {jan},
url = {https://linkinghub.elsevier.com/retrieve/pii/S0883292724000039},
pages = {105898},
doi = {10.1016/j.apgeochem.2024.105898}
}
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