地质学报(英文版)2024,Vol.98Issue(3) :801-818.DOI:10.1111/1755-6724.15161

Geochemical and Isotopic Techniques Constraints on the Origin,Evolution,and Residence Time of Low-enthalpy Geothermal Water in Western Wugongshan,SE China

WANG Luyao LIU Kai MA Yan ZHANG Yaoyao TONG Jue JIA Wuhui ZHANG Shouchuan SUN Junliang
地质学报(英文版)2024,Vol.98Issue(3) :801-818.DOI:10.1111/1755-6724.15161

Geochemical and Isotopic Techniques Constraints on the Origin,Evolution,and Residence Time of Low-enthalpy Geothermal Water in Western Wugongshan,SE China

WANG Luyao 1LIU Kai 2MA Yan 1ZHANG Yaoyao 1TONG Jue 3JIA Wuhui 1ZHANG Shouchuan 1SUN Junliang4
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作者信息

  • 1. Chinese Academy of Geological Sciences,Beijing 100037,China
  • 2. Chinese Academy of Geological Sciences,Beijing 100037,China;School of Water Resources and Environment,China University of Geoscience(Beijing),Beijing 100083,China
  • 3. The Fourth Geological Brigade of Jiangxi Geological Bureau,Pingxiang,Jiangxi 337000,China
  • 4. School of Water Resources and Environment,China University of Geoscience(Beijing),Beijing 100083,China
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Abstract

Geothermal resources are increasingly gaining attention as a competitive,clean energy source to address the energy crisis and mitigate climate change.The Wugongshan area,situated in the southeast coast geothermal belt of China,is a typical geothermal anomaly and contains abundant medium-and low-temperature geothermal resources.This study employed hydrogeochemical and isotopic techniques to explore the cyclic evolution of geothermal water in the western Wugongshan region,encompassing the recharge origin,water-rock interaction mechanisms,and residence time.The results show that the geothermal water in the western region of Wugongshan is weakly alkaline,with low enthalpy and mineralization levels.The hydrochemistry of geothermal waters is dominated by Na-HCO3 and Na-SO4,while the hydrochemistry types of cold springs are all Na-HCO3.The hydrochemistry types of surface waters and rain waters are Na-HCO3 or Ca-HCO3.The δD and δ18O values reveal that the geothermal waters are recharged by atmospheric precipitation at an altitude between 550.0 and 1218.6 m.Molar ratios of major solutes and isotopic compositions of 87Sr/86Sr underscore the significant role of silicate weathering,dissolution,and cation exchange in controlling geothermal water chemistry.Additionally,geothermal waters experienced varying degrees of mixing with cold water during their ascent.The δ13C values suggest that the primary sources of carbon in the geothermal waters were biogenic and organic.The δ34S value suggests that the sulfates in geothermal water originate from sulfide minerals in the surrounding rock.Age dating using 3H and 14C isotopes suggests that geothermal waters have a residence time exceeding 1 kaBP and undergo a long-distance cycling process.

Key words

geothermal water/hydrochemistry/isotope/residence time/Wugongshan area

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基金项目

中国地调局项目(DD20221677-2)

Central Public-Interest Scientific Institution Basal Research Fund(JKYQN202307)

出版年

2024
地质学报(英文版)
中国地质学会

地质学报(英文版)

CSTPCD
影响因子:1.414
ISSN:1000-9515
参考文献量86
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