Environmental Engineering Reference
In-Depth Information
84. Chung, T.-S., S. Zhang, K. Wanga, J. Sua, and M. Linga, Forward osmosis processes: Yesterday,
today and tomorrow. Desalination , 2012. 287 (78-81).
85. Tang, C.Y., Q. She, W.C.L. Lay, R. Wang, and A.G. Fane, Coupled effects of internal concentra-
tion polarization and fouling on lux behavior of forward osmosis membranes during humic
acid iltration. Journal of Membrane Science , 2010. 354 (1-2): pp. 123-133.
86. McCutcheon, J.R., R.L. McGinnis, and M. Elimelech, A novel ammonia-carbon dioxide forward
(direct) osmosis desalination process. Desalination , 2005. 174 : pp. 1-11.
87. Thompson, N.A., and P.G. Nicoll, Forward osmosis desalination: A commercial reality, in IDA
World Congress . 2011, Perth, Western Australia.
88. Gray, G.T., R.L. McCutcheon, and M. Elimelech, Internal concentration polarization in forward
osmosis: Role of membrane orientation. Desalination , 2006. 197 : pp. 1-8.
89. Pedley, T.J., Calculation of unstirred layer thickness in membrane transport experiments: A
survey. Quarterly Review of Biophysics , 1983. 16 : pp. 115-150.
90. Pu, Q., J. Yun, H. Temkin, and S. Liu, Ion-enrichment and ion-depletion effect of nanochannel
structures. Nanoletters , 2004. 4 (6): pp. 1099-1103.
91. Prakash, S., M.B. Karacor, and S. Banerjee, Surface modiication in microsystems and nanosys-
tems. Surface Science Reports , 2009. 64 : pp. 233-254.
92. Asatekin, A., A. Menniti, S. Kang, M. Elimelech, E. Morgenroth, and A.M. Mayes, Antifouling
nanoiltration membranes for membrane bioreactors from self-assembling graft copolymers.
Journal of Membrane Science , 2006. 285 : pp. 81-89.
93. Asatekin, A., S. Kang, M. Elimelech, and A.M. Mayes, Anti-fouling ultrailtration membranes
containing polyacrylonitrile-graft-poly(ethylene oxide) comb copolymer additives. Journal of
Membrane Science , 2007. 298 : pp. 136-146.
94. Ahn, C.H., Y. Baek, C. Lee, S.O. Kim, S. Kim, S. Lee, S.-H. Kim, S.S. Bae, J. Park, and J. Yoon,
Carbon nanotube-based membranes: Fabrication and application to desalination. Journal of
Industrial and Engineering Chemistry , 2012. 18 : pp. 1551-1559.
95. Corry, B., Water and ion transport through functionalised carbon nanotubes: Implications for
desalination technology. Energy and Environmental Science , 2011. 4 : pp. 751-759.
96. Majumder, M., A. Stinchcomb, and B.J. Hinds, Towards mimicking natural protein channels with
alighned carbon nanotube membranes for active drug delivery. Life Sciences , 2010. 86 : pp. 563-568.
97. Ajmani, G.S., D. Goodwin, K. Marsh, D.H. Fairbrother, K.J. Schwab, J.G. Jacangelo, and H.
Huang, Modiication of low pressure membranes with carbon nanotube layer for fouling con-
trol. Water Research , 2012. 46 : pp. 5645-5654.
98. Paul, D.R., Create new types of carbon-based membranes. Science , 2012. 335 : pp. 413-414.
99. Wang, E.N., and R. Karnik, Graphene cleans up water. Nature Nanotechnology , 2012. 7 :
pp. 552-554.
100. Hilder, T.A., D. Gordon, and S.-H. Chung, Salt rejection and water transport through boron
nitride nanotubes. Small , 2009. 5 (19): pp. 2183-2190.
101. Nair, R.R., H.A. Wu, P.N. Jayaram, I.V. Grigorieva, and A.K. Geim, Unimpeded permeation of
water through helium-leak-tight graphene-based membranes. Science , 2012. 335 : pp. 442-444.
102. Karan, S., S. Samitsu, X. Peng, K. Kurashima, and I. Ichinose, Ultrafast viscous permeation of
organic solvents through diamond-like carbon nanosheets. Science , 2012. 2012 : p. 335.
103. Suk, M.E., A.V. Raghunathan, and N.R. Aluru, Fast reverse osmosis using boron nitride and
carbon nanotubes. Applied Physics Letters , 2008. 92 : Article no. 133120 (3 pp.).
104. Golberg, D., Y. Bando, Y. Huang, T. Terao, M. Mitome, C. Tang, and C. Zhi, Boron nitride nano-
tubes and nanosheets. ACS Nano , 2010. 4 (6): pp. 2979-2993.
105. Choi, J., H.-K. Jeong, M.A. Snyder, J.A. Stoeger, R.I. Masel, and M. Tsapatsis, Grain bound-
ary defect elimination in a zeolite membrane by rapid thermal processing. Science , 2009. 325 :
pp. 590-593.
106. Ettouney, H., Design and analysis of humidiication dehumidiication desalination processes.
Desalination , 2005. 183 : pp. 341-352.
107. Wheeler, T.D., and A.D. Stroock, The transpiration of water at negative pressures in a synthetic
tree. Nature , 2008. 455 : pp. 208-212.
Search WWH ::




Custom Search