A route for the study on mass transfer enhancement by adding particles in liquid phase
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A route for the study on mass transfer enhancement by adding particles in liquid phase
A route for the study on mass transfer enhancement by adding particles in liquid phase
中国化学工程学报(英文版)2022年48卷第8期 页码:158-165
Affiliations:
1. College of Chemical and Material Engineering, Quzhou University,Quzhou,China,324000
2. State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology,Beijing,China,100029
3. Research Center of the Ministry of Education for High Gravity Engineering and Technology, Beijing University of Chemical Technology,Beijing,China,100029
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纸质出版:2022
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Xing Su, Ning Qiao, Bao-Chang Sun. A route for the study on mass transfer enhancement by adding particles in liquid phase[J]. 中国化学工程学报(英文版), 2022,48(8):158-165.
Xing Su, Ning Qiao, Bao-Chang Sun. A route for the study on mass transfer enhancement by adding particles in liquid phase[J]. Chinese Journal of Chemical Engineering, 2022, 48(8): 158-165.
Xing Su, Ning Qiao, Bao-Chang Sun. A route for the study on mass transfer enhancement by adding particles in liquid phase[J]. 中国化学工程学报(英文版), 2022,48(8):158-165.DOI:
Xing Su, Ning Qiao, Bao-Chang Sun. A route for the study on mass transfer enhancement by adding particles in liquid phase[J]. Chinese Journal of Chemical Engineering, 2022, 48(8): 158-165.DOI:
A route for the study on mass transfer enhancement by adding particles in liquid phase
This work presents a route for the study on the absorption performance of gas into liquid under the condition of adding particles in a stirred constant temperature reactor. Two evaluated systems
hydrogen–water and hydrogen–methanol
with the addition of activated carbon particles (ACP) were carried out
respectively. The results showed that the addition of ACP into the water can enhance the mass transfer between hydrogen and water
the enhancement factor increases rapidly with the increase of the ACP content
and then tends to be unchanged. However
for the hydrogen–methanol system
ACP has little effect on the mass transfer performance. In addition
a gas–liquid mass transfer model considering the effect of solid particle enhancement was established based on the shuttle effect and two-film model. Results indicated that the predicted value agreed well with the experimental value in both hydrogen–methanol–ACP and hydrogen–water–ACP systems.
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