4.6 Article

Mass transfer intensification between fluidizing gas and Geldart-B nonmagnetizable particles in magnetized fluidized bed

期刊

AICHE JOURNAL
卷 67, 期 11, 页码 -

出版社

WILEY
DOI: 10.1002/aic.17407

关键词

intensification; interphase mass transfer; magnetic stabilization; magnetized fluidized bed; nonmagnetizable particles

资金

  1. National Natural Science Foundation of China [21808232]

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The intensification of mass transfer between fluidizing gas and Geldart-B nonmagnetizable particles was significantly enhanced by the magnetic field in the magnetic stabilization and transition flow regimes. This enhancement depended on both the intensity of the magnetic field (H) and the operation mode. Gas-solid contact performance in the magnetic stabilization flow regime was comparable to that in fixed beds.
This work aimed to intensify the mass transfer between fluidizing gas and Geldart-B nonmagnetizable particles by simultaneously introducing magnetizable particles and applying the magnetic field. The mere addition of magnetizable particles hardly affected the interphase mass transfer. Moreover, such mass transfer was not improved by the subsequent application of the magnetic field under the magnetization-LAST operation mode. However, the mass transfer was significantly enhanced by the magnetic field in the magnetic stabilization and transition flow regimes under the magnetization-FIRST operation mode. Apparently, the mass transfer intensification depended not only on the magnetic field intensify (H) but also on the operation mode. The gas-solid contact performance in the magnetic stabilization flow regime was always comparable to that in fixed beds. Hence, further increases in H could not raise the magnitude of intensification but only increase the operating range and stability of the magnetic stabilization, which was in metastable equilibrium.

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