Mass transfer of CO2 gas pocket in the horizontal pipe flow

Linjiang Guo, Lei Fang, Pengcheng Li, Yiyi Ma
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Abstract

The mass transfer from a stagnant CO2 gas pocket to the flowing water in a horizontal pipe was investigated experimentally, considering the application of pH adjustment by injecting gaseous CO2 for raw water in water treatment industries. In the experiments, the variation of the CO2 gas pocket volume and the corresponding pH values of the pipe flow with time under different conditions were recorded. The mass transfer coefficient of the CO2 gas pocket in the pipe flow was then calculated. The results showed that the injection of gaseous CO2 into the pipe flow could effectively adjust the pH. The volume of the CO2 gas pocket decreased exponentially. Different from most studies on bubble mass transfer, it was found that the ambient CO2 concentration could not be neglected in this study due to the large volume of the gas pocket and the restricted space in the pipe. The mass transfer coefficient increased with the increasing ratio of the CO2 injection rate to the water flow rate and exhibited a sharp reduction as the volume of the CO2 gas pocket decreased by about 80%. The outcomes of this paper can contribute to a better understanding of gas bubble mass transfer in pipe flows.
水平管流中二氧化碳气袋的质量传递
考虑到在水处理行业中通过注入气态二氧化碳调节原水 pH 值的应用,我们通过实验研究了水平管道中停滞的二氧化碳气穴向流动水中的传质。在实验中,记录了不同条件下二氧化碳气穴体积和相应的管道水流 pH 值随时间的变化情况。然后计算了管流中二氧化碳气阱的传质系数。结果表明,向管流中注入气态二氧化碳可有效调节 pH 值。二氧化碳气穴的体积呈指数下降。与大多数关于气泡传质的研究不同,本研究发现,由于气穴体积较大,管道空间有限,因此不能忽略环境中的二氧化碳浓度。传质系数随着二氧化碳注入率与水流量比值的增大而增大,当二氧化碳气穴体积减少约 80% 时,传质系数急剧下降。本文的研究成果有助于更好地理解管道流中气泡的传质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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