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生态学杂志 ›› 2025, Vol. 44 ›› Issue (12): 4171-4176.doi: 10.13292/j.1000-4890.202512.033

• 研究报告 • 上一篇    下一篇

高坝泄流总溶解气体过饱和的来源、测量方法、生成与释放机制及减缓技术研究进展

谢培,郝晨林,乔飞*   

  1. (中国环境科学研究院水生态环境研究所, 北京 100012)

  • 出版日期:2025-12-10 发布日期:2025-12-11

Research progress on sources, measurement methods, generation and release mechanisms, and mitigation technologies of total dissolved gas supersaturation in high dam discharge.

XIE Pei, HAO Chenlin, QIAO Fei*#br#

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  1. (Institute of Water Ecology and Environment, Chinese Research Academy of Environmental Sciences, Beijing 100012, China).

  • Online:2025-12-10 Published:2025-12-11

摘要: 高坝泄洪会导致下游水体总溶解气体过饱和,给水生态系统健康带来严重危害。随着中国越来越多的高坝工程投入运行,高坝泄水引起下游水体总溶解气体过饱和的问题日益引起人们的关注。本文综述了高坝泄水总溶解气体的来源、评价标准、测量方法、生成和释放过程及影响因素、减缓技术等方面的研究进展。总溶解气体的来源为高坝泄流在消力池的深、高压区域气体过溶。基于国内外总溶解气体相关评价标准制定现状,指出我国水环境标准中的总溶解气体限值的必要性。总结了总溶解气体饱和度的两种测量方法,其一为采用水中溶解气体压力表征总溶解气体饱和度的函数,其二为采用浓度和溶解度表征总溶解气体饱和度的函数。阐述总溶解气体过饱和生成过程和释放过程及其影响因素,并分别对两个过程提出减缓技术。本文成果旨在为高坝泄水气体过饱和问题提供思路借鉴和科学依据。


关键词: 高坝泄流, 总溶解气体, 测量方法, 影响因子

Abstract: The discharge of water from high dams can lead to the supersaturation of total dissolved gas (TDG) in downstream water bodies, posing serious risks to the health of aquatic ecosystems. With an increasing number of high dam projects coming into operation in China, the issue of TDG supersaturation in downstream water caused by high dam discharge has attracted growing attention. We review the research progress in the sources, evaluation criteria, measurement methods, generation and release processes, influencing factors, and mitigation techniques of TDG in high dam discharges. The occurrence of TDG can be attributed to the over-dissolution of gases in the deep and high-pressure areas of the stilling basin during high dam discharge. Based on the current status of TDG-related evaluation criteria, the necessity of setting limits for TDG in water environmental standards in China is pointed out. Two methods for measuring TDG saturation are summarized. The first one used the pressure of dissolved gases in water to represent the function of TDG saturation, and the other used concentration and solubility to represent the function of TDG saturation. The generation and release processes of TDG supersaturation and their influencing factors are elaborated, and mitigation techniques are proposed for each process. Our findings would provide ideas and scientific basis for addressing TDG supersaturation in high dam discharges.


Key words: high dam discharge, total dissolved gas, measurement method, influencing factor