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Biofouling in reverse and forward osmosis membrane systems
Szilard Bucs
BT/Environmental Biotechnology
Research output
:
Thesis
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Dissertation (TU Delft)
382
Downloads (Pure)
Overview
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Dive into the research topics of 'Biofouling in reverse and forward osmosis membrane systems'. Together they form a unique fingerprint.
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Engineering
Forward Osmosis
100%
Reverse Osmosis
100%
Membrane
100%
Biofouling
100%
Reverse Osmosis
100%
Desalination
60%
Fouling
60%
Driving Force
40%
Hydraulic Pressure
40%
Water
40%
Desalination Technology
40%
Major Problem
40%
Colloidal Fouling
20%
Energy Requirement
20%
Seawater Desalination
20%
Hybrid Desalination System
20%
External Energy
20%
Microbial Biofilms
20%
Low Pressure
20%
Pressure Difference
20%
Scaling
20%
Main Advantage
20%
Energy Demand
20%
High Energy
20%
Performance
20%
Fresh Water
20%
Biofilm Formation
20%
Precipitation
20%
Semipermeable Membrane
20%
Membrane Surface
20%
Limited Amount
20%
Atmospheric Aerosol
20%
INIS
membranes
100%
biofouling
100%
osmosis
100%
desalination
85%
reverse osmosis
71%
fouling
57%
hydraulics
28%
fresh water
28%
salts
28%
seawater
28%
water
28%
deposition
28%
surfaces
14%
energy
14%
accumulation
14%
demand
14%
hybrids
14%
particulates
14%
scaling
14%
comparative evaluations
14%
low pressure
14%
growth
14%
cost
14%
performance
14%
precipitation
14%
energy demand
14%
minerals
14%
Chemical Engineering
Biofouling
100%
Desalination
100%
Osmosis
100%
Reverse Osmosis
83%
Fouling
66%
Water
50%
Seawater
33%
Precipitation (Chemical)
16%
Atmospheric Aerosol
16%
Mineral
16%
Keyphrases
Fouling Deposition
66%
Desalination Technology
66%
Organic Fouling
33%
Membrane-based Process
33%
Low Pressure Reverse Osmosis
33%
Organic Macromolecules
33%
Formation Scaling
33%
Colloidal Fouling
33%
High Hydraulic Pressure
33%
Membrane Desalination
33%
Mineral Salts
33%
Hybrid Desalination System
33%
Microbial Biofilm
33%
Desalination Process
33%
Semipermeable Membrane
33%
Material Science
Membrane
100%
Osmosis Membrane
100%
Water
50%
Seawater
33%
Hydraulics
33%
Materials
16%
Biofilms
16%
Surface
16%