玛纳斯河流域不同水体转化动力学的稳定同位素示踪

IF 5.7 3区 环境科学与生态学 Q1 WATER RESOURCES
Heng Zhang, Lijun Tian, Hao Tian, Muhammad Arsalan Farid, Xiaolong Li, Bing Liu, Lianqing Xue, Yongli Gao, Yi Li, Fadong Li, Xinlin He, Hui Yong, Guang Yang
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引用次数: 0

摘要

西北干旱区是典型的大陆性气候,水资源极为有限。为了阐明干旱区不同水体之间的转化关系,在玛纳斯河流域采集了降水、地表水、土壤水和地下水样品。本研究描绘了水稳定同位素组成的时空变化特征,并利用MeteoInfo和MixSIAR模型阐明了MRB各水体之间的起源和转化动力学。降水同位素组成具有明显的季节变化特征,冬季减少,夏季增加。相对于全球大气水线而言,局地大气水线的斜率和截距较小,表明存在较大的次云蒸发效应。地表水和土壤水同位素从山地到沙漠逐渐富集,与地下水相反。地下水与地表水的转换主要发生在山区,平均交换率为85%,而绿洲向沙漠的水转换主要由上游过程驱动。这些发现增强了我们对干旱区水循环的认识,并为湄公河流域可持续水资源管理战略提供了指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stable isotope tracing the transformation dynamics of diverse water bodies in the Manas River Basin, Northwest China

The arid region of Northwest China is characterized by a typical continental climate with extremely limited water resources. To elucidate the transformation relationships among different water bodies in arid regions, samples of precipitation, surface water, soil water, and groundwater were collected from the Manas River Basin (MRB). This study delineated the spatiotemporal variation characteristics of stable isotopic composition of waters, and employed the MeteoInfo and MixSIAR models to elucidate the origins and transformation dynamics among the various water bodies in the MRB. The isotopic composition of precipitation exhibited significant seasonal variations, with depletion in winter and enrichment in summer. The smaller slope and intercept of the local meteoric water line relative to the global meteoric water line suggest a substantial sub-cloud evaporation effect. Surface and soil water isotopes gradually enriched from mountainous to desert regions in the MRB, inversely to those in groundwater. The conversions between groundwater and surface water predominantly occur in mountainous areas in the MRB, with an average exchange rate of 85%, while water transitions from oases to deserts are mainly driven by upstream processes. These findings enhance our understanding of water cycles in arid regions and offer guidance for sustainable water resource management strategies in the MRB.

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来源期刊
Applied Water Science
Applied Water Science WATER RESOURCES-
CiteScore
9.90
自引率
3.60%
发文量
268
审稿时长
13 weeks
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