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使用液膜形成装置提高扩散曝气系统中的氧传递效率。

Enhancement of oxygen transfer efficiency in diffused aeration systems using liquid-film-forming apparatus.

作者信息

Zhu H, Imai T, Tani K, Ukita M, Sekine M, Higuchi T, Zhang Z J

机构信息

Division of Symbiotic Environmental Systems Engineering, Graduate School of Science and Engineering (Engineering), Yamaguchi University, Ube city, Yamaguchi Prefecture, Japan.

出版信息

Environ Technol. 2007 May;28(5):511-9. doi: 10.1080/09593332808618813.

Abstract

Surface transfer and bubble transfer both contribute significantly to oxygen transfer in a diffused aeration system. In the present study, liquid-film-forming apparatus is successfully developed on a laboratory scale to improve considerably the surface transfer via the unique liquid film transfer technique. The experimental results show that the volumetric mass transfer coefficient for liquid-film-forming apparatus alone is found to be as much as 5.3 times higher than that for water surface and that the total volumetric mass transfer coefficient for liquid film aeration system increases by 37 % in comparison with conventional aeration system. Additionally, by tuning finely the structural parameters of the liquid-film-forming apparatus, it can also lead to high dissolved oxygen water with the dissolved oxygen percent saturation greater than 90 %. More importantly, this result is accomplished by simply offering a single-pass aeration at the depth as shallow as 26 cm. As a result, the objective of economical energy consumption in diffused aeration systems can be realized by lowering the aeration depth without sacrificing the aeration efficiency.

摘要

在曝气系统中,表面传质和气泡传质对氧的传递都有显著贡献。在本研究中,成功开发了实验室规模的液膜形成装置,通过独特的液膜传递技术显著改善了表面传质。实验结果表明,单独的液膜形成装置的体积传质系数比水面的体积传质系数高出5.3倍,并且液膜曝气系统的总容积传质系数与传统曝气系统相比提高了37%。此外,通过精细调整液膜形成装置的结构参数,还可以产生溶解氧饱和度大于90%的高溶解氧水。更重要的是,只需在仅26厘米的浅深度进行单程曝气就能实现这一结果。因此,通过降低曝气深度而不牺牲曝气效率,可以实现曝气系统经济能耗的目标。

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