|
Volumn 278, Issue 1-2, 2006, Pages 308-317
|
Numerical simulation of a UV photografting process for hollow-fiber membranes
|
Author keywords
Hollow fiber; Membrane surface modification; Nanofiltration; Numerical model; UV photografting
|
Indexed keywords
APPROXIMATION THEORY;
COMPUTER SIMULATION;
EVAPORATION;
MASS TRANSFER;
MATHEMATICAL MODELS;
MECHANICAL PERMEABILITY;
NANOFILTRATION;
SURFACE TREATMENT;
MEMBRANE SURFACE MODIFICATIONS;
NUMERICAL MODELS;
UV PHOTOGRAFTING;
FIBROUS MEMBRANES;
POLYMER;
APPROXIMATION THEORY;
COMPUTER SIMULATION;
EVAPORATION;
FIBROUS MEMBRANES;
MASS TRANSFER;
MATHEMATICAL MODELS;
MECHANICAL PERMEABILITY;
NANOFILTRATION;
SURFACE TREATMENT;
ARTICLE;
CHEMICAL REACTION;
EVAPORATION;
HEAT TRANSFER;
HOLLOW FIBER MEMBRANE;
MASS;
POLYMERIZATION;
PRIORITY JOURNAL;
ULTRAVIOLET RADIATION;
EVAPORATION;
FILTRATION;
HOLLOW SYNTHETIC FIBERS;
MASS TRANSFER;
MATHEMATICAL MODELS;
MEMBRANES;
PERMEABILITY;
SURFACE TREATMENT;
|
EID: 33646795645
PISSN: 03767388
EISSN: None
Source Type: Journal
DOI: 10.1016/j.memsci.2005.11.013 Document Type: Article |
Times cited : (14)
|
References (14)
|