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Bubble size fractal dimension,gas holdup,and mass transfer in a bubble column with dual internals
Authors:Xiao Xu  Junjie Wang  Qiang Yang  Lei Wang  Hao Lu  Honglai Liu  Hualin Wang
Affiliation:1.School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai 200237, China;2.National Engineering Laboratory for Industrial Wastewater Treatment, East China University of Science and Technology, Shanghai 200237, China;3.State Key Laboratory of Chemical Engineering, East China University of Science and Technology, Shanghai 200237, China
Abstract:As the scale of residual oil treatment increases and cleaner production improves in China, slurry bubble column reactors face many challenges and opportunities for residual oil hydrogenation technology. The internals development is critical to adapt the long-term stable operation. In this paper, the volumetric mass transfer coefficient, gas holdup and bubble size in a gas–liquid up-flow column are studied with two kinds of internals. The gas holdup and volumetric mass transfer coefficient increase by 120% and 42% when the fractal dimension of bubbles increases from 0.56 to 2.56, respectively. The enhanced mass transfer processing may improve the coke suppression ability in the slurry reactor for residual oil treatment. The results can be useful for the exploration of reacting conditions, scale-up strategies, and oil adaptability. This work is valuable for the design of reactor systems and technological processes.
Keywords:Gas-liquid reactor  Fractal dimension  Mass transfer  Bubble column  
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