37 research outputs found
Molecular design of the morphology and pore size of PVDF hollow fiber membranes for ethanol-water separation employing the modified pore-flow concept
10.1016/j.memsci.2011.03.016Journal of Membrane Science3741-267-82JMES
High performance thin-film composite forward osmosis hollow fiber membranes with macrovoid-free and highly porous structure for sustainable water production
10.1021/es301559zEnvironmental Science and Technology46137358-7365ESTH
PVDF hollow fiber membrane formation: Fundamental study on the roles of phase inversion, crystallization and rheology on morphology and mechanical properties
Conference Proceedings - 2009 AIChE Annual Meeting, 09AIChE
Molecular elucidation of morphology and mechanical properties of PVDF hollow fiber membranes from aspects of phase inversion, crystallization and rheology
10.1016/j.memsci.2009.05.029Journal of Membrane Science3401-2192-205JMES
PVDF/nanosilica dual-layer hollow fibers with enhanced selectivity and flux as novel membranes for ethanol recovery
10.1021/ie202116hIndustrial and Engineering Chemistry Research512978-993IECR
Design of robust hollow fiber membranes with high power density for osmotic energy production
10.1016/j.cej.2013.10.063Chemical Engineering Journal241457-465CMEJ
Modified pore-flow model for pervaporation mass transport in PVDF hollow fiber membranes for ethanol-water separation
10.1016/j.memsci.2010.06.062Journal of Membrane Science3621-2393-406JMES
Erratum to "Modified pore-flow model for pervaporation mass transport in PVDF hollow fiber membranes for ethanol-water separation" [J. Membr. Sci. 362 (2010) 393-406]
10.1016/j.memsci.2011.09.010Journal of Membrane Science3841-2226-227JMES
Membrane Pervaporation
10.1002/9781118493441.ch10Separation and Purification Technologies in Biorefineries259-29