A Review of the Characteristics and Mechanisms of Water Environment Evolution in Hulun Lake Under the Dual Drivers of Climate Warming-Drying and Human Activities
Bingtao Hu, Yuhong Liu, Cheng Chen, Yipeng Yao, Yixue Chen, Lixin Wang, Zhongsheng Wang
Hohai University Nanjing Institute of Environmental Sciences Nanjing University Inner Mongolia University
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Hulun Lake, the largest freshwater lake in the Eurasian steppe, is a critically climate-sensitive water body facing severe ecological threats. This systematic review synthesizes multidisciplinary evidence from 1961 to 2025 to examine the characteristics and drivers of its water environment and quality evolution. The findings reveal that the primary driver of the lake’s hydrological degradation shifted from natural climate variability to anthropogenic land-use change around 1998. While ecological water diversion has partially alleviated water scarcity, it also introduces a significant external nutrient load, creating a paradox where increased water volume coincides with aggravated eutrophication. Furthermore, overgrazing in the catchment not only enhances conventional runoff pollution but also facilitates a unique “tumbleweed-mediated cross-media pollution” pathway. This review concludes that the restoration of Hulun Lake necessitates a shift from singular water quantity regulation to an integrated management strategy that concurrently addresses water quantity, quality, and aquatic ecosystem health. The insights gained are crucial for informing the sustainable management of Hulun Lake and other inland lakes in cold, arid regions under global change.
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物理Water Resources and Management
Aquatic Ecosystems and Phytoplankton Dynamics · Aquatic Ecosystems and Biodiversity
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