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曝气系统对过饱和总溶解气体传质性能的影响研究

Study on the effect of aeration system on the mass transfer performance of supersaturated total dissolved gas.

作者信息

Yang Ling, Liang Jiajia, Yang Huixia, Wang Yunyun, Wang Shun

机构信息

College of Civil Engineering, Guizhou University, Guiyang, People's Republic of China.

出版信息

Environ Technol. 2025 Feb;46(6):963-975. doi: 10.1080/09593330.2024.2374026. Epub 2024 Jul 7.

DOI:10.1080/09593330.2024.2374026
PMID:38972296
Abstract

The release of supersaturated total dissolved gas (STDG) from dams has been linked to the development of gas bubble disease, which can ultimately result in the death of fish. In order to minimize the impact of STDG on aquatic ecology, the effect of aeration on mass transfer at the air-liquid interface is taken into account. This paper selects four commonly used aerators to carry out indoor aeration tower experiments under different aeration conditions (aeration aperture, aeration water depth, and aeration volume), exploring aerators that can efficiently promote STDG release. The results indicated that the diaphragm aerator was found to have the greatest effect on STDG release, followed by corundum and spin mix aerator. In contrast, a pinhole aerator was found to have the least beneficial impact on STDG release. The increase in the release coefficient for the diaphragm aerator in comparison to the pinhole aerator is 32%. A prediction model for the aeration system was developed based on the mass transfer mechanism at the gas-liquid interface. The parameters in the model were determined using experimental data, which effectively improved the model's prediction accuracy. The findings of this study may serve as a reference point for the selection of the most suitable aerator in the actual engineering of STDG mitigation by aeration technology.

摘要

大坝中超饱和总溶解气体(STDG)的释放与气泡病的发生有关,气泡病最终可能导致鱼类死亡。为了将STDG对水生生态的影响降至最低,需考虑曝气对气液界面传质的影响。本文选取四种常用曝气器,在不同曝气条件(曝气孔径、曝气水深和曝气流量)下进行室内曝气塔实验,探索能有效促进STDG释放的曝气器。结果表明,膜片曝气器对STDG释放的效果最佳,其次是刚玉曝气器和旋混曝气器。相比之下,针孔曝气器对STDG释放的影响最小。膜片曝气器的释放系数相较于针孔曝气器提高了32%。基于气液界面传质机理建立了曝气系统预测模型。利用实验数据确定模型参数,有效提高了模型预测精度。本研究结果可为曝气技术缓解STDG实际工程中选择最合适的曝气器提供参考。

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