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Microfiltration of water in oil emulsions and evaluation of fouling mechanism
B. Hu
, K. Scott
Research output
:
Journal Publication
›
Article
›
peer-review
70
Citations (Scopus)
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Keyphrases
Behavior Prediction
33%
Best Prediction
33%
Cake Filtration
33%
Cake Formation
100%
Copper Sulfate
33%
Cross-flow Velocity
33%
Crossflow Microfiltration
33%
Emulsion
66%
Filtration
66%
Filtration Model
33%
Filtration Time
33%
Flux Decline
33%
Fouling Mechanism
100%
Intermediate Pore Blocking
66%
Kerosene
33%
Membrane Flux
66%
Membrane Materials
33%
Microfiltration
100%
Oil-in-water Emulsion
100%
Pore Blocking
33%
Pressure-driven Flow
33%
Pressure-temperature
33%
PTFE Membrane
33%
PVDF Membrane
33%
Regenerated Cellulose
33%
Regenerated Cellulose Membrane
33%
Span 80
33%
Surfactant
33%
Transmembrane Pressure
66%
Engineering
Cake Filtration
33%
Cellulose Membrane
33%
Do Model
33%
Flow Rate
33%
Fouling Mechanism
100%
Initial Phase
33%
Membrane Flux
66%
Microfiltration
100%
Pore Blocking
100%
Regenerated Cellulose
66%
Surfactant
33%
Chemical Engineering
Fouling
100%
Microfiltration
100%
Polytetrafluoroethylene
100%
Surfactant
50%