Modelling mass transport in hollow fibre membranes used for pressure retarded osmosis
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Edvard Sivertsen | Torleif Holt | Geir Brekke | W. Thelin | E. Sivertsen | T. Holt | Geir Brekke | Willy R. Thelin | William R. Thelin
[1] Sui Zhang,et al. Effects of annealing on the microstructure and performance of cellulose acetate membranes for pressure-retarded osmosis processes , 2010 .
[2] Klaus-Viktor Peinemann,et al. Thin-film composite hollow fiber membranes: An optimized manufacturing method , 2005 .
[3] Andrea Achilli,et al. Pressure retarded osmosis: From the vision of Sidney Loeb to the first prototype installation — Review , 2010 .
[4] Kai Yu Wang,et al. Polybenzimidazole (PBI) nanofiltration hollow fiber membranes applied in forward osmosis process , 2007 .
[5] T. Holt,et al. The potential for power production from salinity gradients by pressure retarded osmosis , 2009 .
[6] Masaaki Sekino,et al. Study of an analytical model for hollow fiber reverse osmosis module systems , 1995 .
[7] Chuyang Y. Tang,et al. Synthesis and characterization of novel forward osmosis membranes based on layer-by-layer assembly. , 2011, Environmental science & technology.
[8] Qian Yang,et al. Dual-layer hollow fibers with enhanced flux as novel forward osmosis membranes for water production. , 2009, Environmental science & technology.
[9] Robert L McGinnis,et al. Desalination by ammonia–carbon dioxide forward osmosis: Influence of draw and feed solution concentrations on process performance , 2006 .
[10] Qian Yang,et al. Enhanced forward osmosis from chemically modified polybenzimidazole (PBI) nanofiltration hollow fiber membranes with a thin wall , 2009 .
[11] Jincai Su,et al. Sublayer structure and reflection coefficient and their effects on concentration polarization and me , 2011 .
[12] Chuyang Y. Tang,et al. Characterization of novel forward osmosis hollow fiber membranes , 2010 .
[13] Stein Erik Skilhagen,et al. Osmotic power — power production based on the osmotic pressure difference between waters with varying salt gradients , 2008 .
[14] Amy E. Childress,et al. Forward osmosis: Principles, applications, and recent developments , 2006 .
[15] Ngai Yin Yip,et al. Thin-film composite pressure retarded osmosis membranes for sustainable power generation from salinity gradients. , 2011, Environmental science & technology.
[16] Chuyang Y. Tang,et al. Thin-film composite hollow fiber membranes for Pressure Retarded Osmosis (PRO) process with high power density , 2012 .
[17] Stein Erik Skilhagen,et al. Membrane processes in energy supply for an osmotic power plant , 2008 .
[18] Chuyang Y. Tang,et al. Characteristics and potential applications of a novel forward osmosis hollow fiber membrane , 2010 .
[19] Qian Yang,et al. Cellulose acetate nanofiltration hollow fiber membranes for forward osmosis processes , 2010 .
[20] Menachem Elimelech,et al. High performance thin-film composite forward osmosis membrane. , 2010, Environmental science & technology.
[21] Gary L. Amy,et al. Well-constructed cellulose acetate membranes for forward osmosis: Minimized internal concentration polarization with an ultra-thin selective layer , 2010 .
[22] Qian Yang,et al. A novel dual-layer forward osmosis membrane for protein enrichment and concentration , 2009 .
[23] Rong Wang,et al. Fabrication of novel poly(amide–imide) forward osmosis hollow fiber membranes with a positively charged nanofiltration-like selective layer , 2011 .
[24] Kai Yu Wang,et al. Double-Skinned Forward Osmosis Membranes for Reducing Internal Concentration Polarization within the Porous Sublayer , 2010 .