The Mechanism behind Vibration Assisted Fluidization of Cohesive Micro-Silica

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Abstract

Vibro-assisted fluidization of cohesive micro-silica has been studied by means of X-ray imaging, pressure drop measurements, and off-line determination of the agglomerate size. Pressure drop and bed height development could be explained by observable phenomena taking place in the bed; slugging, channeling, fluidization or densification. It was observed that channeling is the main cause of poor fluidization of the micro-silica, resulting in poor gas-solid contact and little internal mixing. Improvement in fluidization upon starting the mechanical vibration was achieved by disrupting the channels. Agglomerate sizes were found to not significantly change during experiments.

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Kamphorst, R., van der Sande, P. C., Wu, K., Wagner, E. C., David, M. K., Meesters, G. M. H., & Ruud van Ommen, J. (2024). The Mechanism behind Vibration Assisted Fluidization of Cohesive Micro-Silica. KONA Powder and Particle Journal, 41, 254–264. https://doi.org/10.14356/kona.2024007

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