Environmental Engineering Reference
In-Depth Information
58. Salehi E., S.S. Madaeni, L. Rajabi, V. Vatanpour, A.A. Derakhshan, S. Zinadini, Sh. Ghorabi, H.
Ahmadi Monfared. Novel chitosan/poly(vinyl) alcohol thin adsorptive membranes modiied
with amino functionalized multi-walled carbon nanotubes from Cu(II) removal from water:
Preparation, characterization, adsorption kinetics and thermodynamics. Sep. Purif. Technol. , 89:
309-319, 2012.
59. Urgun-Demirtas M., P.L. Benda, P.S. Gillenwater, M.C. Nedri, H. Xiong, S.W. Snyder. Achieving
very low mercury levels in reinery wastewater by membrane iltration. J. Hazard. Mater. , 215-
216: 98-107, 2012.
60. Vasanth D., G. Pugazhenthi, R. Uppaluri. Biomass assisted microiltration of chromium(VI)
using Baker's yeast by ceramic membrane prepared from low cost raw materials. Desalination ,
285: 239-244, 2012.
61. Song J., H. Oh, H. Kong, J. Jang. Polyrhodanine modiied anodic aluminium oxide membrane
for heavy metal ions removal. J. Hazard. Mater. , 187: 311-317, 2011.
62. Tian Y., M. Wu, R. Liu, Y. Li, D. Wang, J. Tan, R. Wu, Y. Huang. Electrospun membrane of cellu-
lose acetate for heavy metal ion adsoroption in water treatment. Carbohydr. Polym. , 83: 743-748,
2011.
63. Ferella F., M. Prisciandro, I. De Michelis, F. Veglio. Removal of heavy metals by surfactant-
enhanced ultrailtration from waste waters. Desalination , 207: 125-133, 2007.
64. Hashim M.A., S. Mukhopadhay, J.N. Sahu, B. Sengupta. Remediation technologies for heavy
metal contaminated ground water. J. Environ. Manage. , 92: 2355-2388, 2011.
65. Chang C.-F., Q.D. Truong, J.-R. Chen. Graphene sheets synthesized by ionic-liquid-assisted
electrolysis for application in water puriication. Appl. Surf. Sci ., 64: 329-334, 2013.
66. Frey M.W. Electrospinning cellulose and cellulose derivatives. Polym. Rev. , 48: 378-391, 2008.
67. Demirbas A. Heavy metal adsorption onto agro-based waste materials: A review. J. Hazard.
Mater. , 157: 220-229, 2008.
68. Cai Z.-X., X.-M. Mo, K.-H. Zhang, L.-P. Fan, A.-L. Yin, C.-L. He, H.-S. Wang. Fabrication of
chitosan/silk ibroin composite nanoibers for wound-dressing applications. Int. J. Mol. Sci. , 11:
3529-3539, 2010.
69. Pillai C.K.S., C.P. Sharma. Electrospinning of chitin and chitosan nanoibres. Trends Biomater.
Artif. Organs ., 22: 179-201, 2009.
70. Kriegel C., K. Kit, D.J. McClements, J. Weiss. Inluence of surfactant type and concentration on
electrospinning of chitosan-poly(ethylene oxide) blend nanoibers. Food Biophys. , 4: 213-228,
2009.
71. Zhou Y., D. Yang, J. Nie. Electrospinning of chitosan/poly(vinyl alcohol)/acrylic acid aqueous
solutions. J. Appl. Polym. Sci. , 102: 5692-5697, 2006.
72. Schiffman J.D., C.L. Schauer. Cross-linking of nanoibers. Biomacromolecules , 8: 594-601, 2007.
73. Musyoka S., C. Ngila, B. Moodley, A. Kindness, L. Petrik, C. Greyling. Oxolane-2,5-dione
modiied electrospun cellulose nanoibers for heavy metals adsorption. J. Hazard. Mater. , 192:
922-927, 2011.
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