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DALIAN UNIVERSITY OF TECHNOLOGY Login 中文
Yongchen Song

Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates


Gender:Male
Alma Mater:大连理工大学
Degree:Doctoral Degree
School/Department:能源与动力学院
Discipline:Energy and Environmental Engineering
Business Address:能动大楼810
Contact Information:songyc@dlut.edu.cn
E-Mail:songyc@dlut.edu.cn
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Current position: Home >> Scientific Research >> Paper Publications

Mass transfer coefficient measurement during brine flush in a CO2-filled packed bed by X-ray CT scanning

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Indexed by:期刊论文

Date of Publication:2017-12-01

Journal:INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER

Included Journals:Scopus、SCIE、EI

Volume:115

Page Number:615-624

ISSN No.:0017-9310

Key Words:CO2 saturation; Concentration; Interfacial area; Mass transfer coefficient

Abstract:A clear understanding of mass transfer properties during fluid injection in porous media is important for safe CO2 storage. In this study, dynamic experiments were conducted to elucidate transport during brine injection into a gaseous CO2-filled packed bed using X-ray CT technology. Homogenous glass beads were packed into the bed. Brine was injected downward at 0.005 and 0.03 mL/min The CO2 distribution during brine injection was visualized along the flow direction, which reflected the mechanism transform between displacement and dissolution. The results showed that the distribution was related to the pore structure of the packed bed and flow rates. In addition, CO2 saturation and concentration profiles were obtained at various time points. CO2 concentrations predicted from saturation were orders of magnitude lower than equilibrium solubility. An image analysis technique was employed to determine the interfacial area, which was a function of saturation. Local and overall mass transfer coefficients which were correlated with local concentration and specific interfacial areas were calculated. This study provided a quantitative investigation of gas-liquid mass transfer in a packed bed, which contributed a calculated mass transfer rate during CO2 storage. (C) 2017 Elsevier Ltd. All rights reserved.