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Enhanced fluidization of nanoparticles in an oscillating magnetic field
Qun Yu
,
Rajesh N. Dave
,
Chao Zhu
, Jose A. Quevedo
, Robert Pfeffer
Chemical and Materials Engineering
New Jersey Center for Engineered Particulates
Mechanical and Industrial Engr
Research output
:
Contribution to journal
›
Article
›
peer-review
133
Scopus citations
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Keyphrases
AC Magnetic Field
33%
Aerosil
33%
Agglomerates
33%
Bed Expansion
66%
Bed Pressure Drop
33%
Critical Velocity
66%
Degussa
33%
Elutriation
33%
Fluidization
100%
Fluidization Characteristics
66%
Fluidization Regime
33%
Fluidized
33%
Fumed Silica
33%
Magnetic Assistance
33%
Magnetic Particles
66%
Mass Ratio
33%
Minimum Fluidization
33%
Nano-agglomerates
66%
Nanoparticle Agglomerates
66%
Nanoparticles
100%
Oscillating Magnetic Field
100%
Permanent Magnetic
33%
Primary Particle Size
33%
Engineering
Bed Expansion
40%
Channelling
20%
Elutriation
20%
Experimental Observation
20%
Fluidization
100%
Fumed Silica
20%
Magnetic Field
100%
Mass Ratio
20%
Minimum Fluidization Velocity
40%
Nanoparticle
100%
Pressure Drop
20%
Size of Particle
20%
Chemical Engineering
Fluidization
100%
Nanoparticle
100%