干旱区科学2024,Vol.16Issue(10) :1365-1379.DOI:10.1007/s40333-024-0085-0

Oxygen and hydrogen isotope characteristics of different water bodies in the Burqin River Basin of the Altay Mountains,China

XIE Yida WANG Feiteng LIU Shuangshuang
干旱区科学2024,Vol.16Issue(10) :1365-1379.DOI:10.1007/s40333-024-0085-0

Oxygen and hydrogen isotope characteristics of different water bodies in the Burqin River Basin of the Altay Mountains,China

XIE Yida 1WANG Feiteng 2LIU Shuangshuang2
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作者信息

  • 1. Key Laboratory of Cryospheric Science and Frozen Soil Engineering,Northwest Institute of Eco-Environment and Resources,Chinese Academy of Sciences,Lanzhou 730000,China;University of Chinese Academy of Sciences,Beijing 100049,China
  • 2. Key Laboratory of Cryospheric Science and Frozen Soil Engineering,Northwest Institute of Eco-Environment and Resources,Chinese Academy of Sciences,Lanzhou 730000,China
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Abstract

Characterization of the spatial and temporal variability of stable isotopes in surface water is essential for interpreting hydrological processes.In this study,we collected the water samples of river water,groundwater,and reservoir water in the Burqin River Basin of the Altay Mountains,China in 2021,and characterized the oxygen and hydrogen isotope variations in different water bodies via instrumental analytics and modeling.Results showed significant seasonal variations in stable isotope ratios of oxygen and hydrogen(δ18O and δ2H,respectively)and significant differences in δ18O and δ2H among different water bodies.Higher δ18O and δ2H values were mainly found in river water,while groundwater and reservoir water had lower isotope ratios.River water and groundwater showed different δ18O-δ2H relationships with the local meteoric water line,implying that river water and groundwater are controlled by evaporative enrichment and multi-source recharge processes.The evaporative enrichment experienced by reservoir water was less significant and largely influenced by topography,recharge sources,local moisture cycling,and anthropogenic factors.Higher deuterium excess(d-excess)value of 14.34‰ for river water probably represented the isotopic signature of combined contributions from direct precipitation,snow and glacial meltwater,and groundwater recharge.The average annual d-excess values of groundwater(10.60‰)and reservoir water(11.49‰)were similar to the value of global precipitation(10.00‰).The findings contribute to understanding the hydroclimatic information reflected in the month-by-month variations in stable isotopes in different water bodies and provide a reference for the study of hydrological processes and climate change in the Altay Mountains,China.

Key words

water bodies/stable isotopes/deuterium excess(d-excess)/Hybrid Single-Particle Lagrangian Integrated Trajectory(HYSPLIT)model/Burqin River Basin/Altay Mountains

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基金项目

Science and Technology Program of Gansu Province(23ZDFA017)

Science and Technology Program of Gansu Province(22ZD6FA005)

Third Xinjiang Scientific Expedition Program(2022xjkk0802)

出版年

2024
干旱区科学
中国科学院新疆生态与地理研究所,科学出版社

干旱区科学

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影响因子:1.743
ISSN:1674-6767
参考文献量1
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