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Increased mass transfer to microorganisms with fluid motion
Bruce E. Logan
, James W. Dettmer
Civil and Environmental Engineering
Materials Research Institute (MRI)
Institute of Energy and the Environment (IEE)
Research output
:
Contribution to journal
›
Article
›
peer-review
28
Scopus citations
Overview
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Keyphrases
Mass Transfer
100%
Microorganisms
100%
Fluid Motion
100%
Leucine Uptake
100%
Microbial Uptake
66%
Bioreactor
33%
Flow Field
33%
Fluid Flow
33%
Mass Transfer Rate
33%
Binding Protein
33%
Suspended Cells
33%
Leucine
33%
Shear Rate
33%
Wastewater Treatment
33%
Advective Flow
33%
Advective
33%
Fluid Environment
33%
Suspended Culture
33%
Attached Cells
33%
Uptake by Cells
33%
Zoogloea
33%
Flow Shear
33%
Engineering
Microbial
100%
Bioreactor
50%
Fluid Flow
50%
Shear Rate
50%
Mass Transfer Rate
50%
Suspended Cell
50%
Boundary Layer
50%
Wastewater Treatment
50%
Sherwood Number
50%
Immunology and Microbiology
Liquid
100%
Motion
100%
Leucine
100%
Surface Area
25%
Protein Binding
25%
Cell Surface
25%
Fluid Flow
25%
Shear Rate
25%
Chemical Engineering
Biochemical Reactor
100%
Fluid Flow
100%
Wastewater Treatment
100%
Material Science
Fluid Flow
25%
Boundary Layer
25%
Binding Protein
25%