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Rejection of trace organic compounds by high-pressure membranes
T. U. Kim
, Gary Amy
,
J. E. Drewes
University of Colorado Boulder
Colorado School of Mines
Research output
:
Contribution to journal
›
Article
›
peer-review
48
Scopus citations
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Keyphrases
Trace Organic Contaminants (TrOCs)
100%
Nanofiltration
100%
High-pressure Membrane
100%
Reverse Osmosis
75%
Hydrophobicity
50%
Disinfection
50%
Solute-membrane Interactions
50%
Compound Properties
50%
Membrane Properties
25%
Effective Treatment
25%
Operating Conditions
25%
Diffusion Coefficient
25%
Contact Angle
25%
Polyamide
25%
Contact Surface
25%
Mechanistic Understanding
25%
Cell Measurement
25%
Surface Charge
25%
Solute
25%
Zeta Potential
25%
Membrane-based
25%
Property Condition
25%
Health Effects
25%
Pesticides
25%
Pharmaceutically Active Compounds (PhACs)
25%
Salt Rejection
25%
Pure Water Permeability
25%
Halogenated Solvents
25%
Osmosis Pressure
25%
Membrane Pore
25%
Molecular Weight Cut-off
25%
Property Effects
25%
Diffusion Cell
25%
Treatment Barriers
25%
Endocrine Disrupting Chemicals
25%
Low-pressure Reverse Osmosis
25%
Chemical Engineering
Nanofiltration
100%
Organic Compound
100%
Membrane Pressure
100%
Reverse Osmosis
75%
Zeta Potential
25%
Polyamide
25%
Endocrine Disruptor
25%
Low Pressure Reverse Osmosis
25%
Salt Rejection
25%
Pure Water Permeability
25%
Diffusion
25%