Environmental Engineering Reference
In-Depth Information
[35] liu FJ, guo r, Shen MW, Wang SY, Shi XY. Effect of processing variables on the morphology of electrospun poly[(lactic acid)-co-(glycolic
acid)] nanofibers. Macromol Mater Eng 2009;294:666.
[36] liu F, guo r, Shen M, Cao X, Mo X, Wang S, Shi X. Effect of the porous microstructures of poly (lactic-co-glycolic acid)/carbon nanotube
composites on the growth of fibroblast cells. Soft Mater 2010;8:239.
[37] liao H, Qi r, Shen M, Cao X, guo r, Zhang Y, Shi X. Improved cellular response on multiwalled carbon nanotube-incorporated electrospun
polyvinyl alcohol/chitosan nanofibrous scaffolds. Colloid Surf b biointerfaces 2011;84:528.
[38] Wang S, Cao X, Shen M, guo r, bányai I, Shi X. Fabrication and morphology control of electrospun poly(gamma-glutamic acid) nanofibers
for biomedical applications. Colloid Surf b biointerfaces 2012;89:254.
[39] Veleirinho b, rei MF, lopes-da-Silva JA. Solvent and concentration effects on the properties of electrospun poly(ethylene terephthalate)
nanofiber mats. J Polym Sci b 2008;46:460.
[40] lin SH, lin CM. Treatment of textile waste effluents by ozonation and chemical coagulation. Water res 1993;27:1743.
[41] ganesh r, boardman gd, Michelsen d. Fate of azodyes in sludges. Water res 1994;28:1367.
[42] Volesky b, Holan Zr. biosorption of heavy metals. biotechnol Prog 1995;11:235.
[43] Kumar P, dushenkov V, Motto H, raskin I. Phytoextraction: the use of plants to remove heavy metals from soils. Environ Sci Technol
1995;29:1232.
[44] Annadurai g, ling lY, lee JF. Adsorption of reactive dye from an aqueous solution by chitosan: isotherm, kinetic and thermodynamic
analysis. J Hazard Mater 2008;152:337.
[45] Chen S, Zou Y, Yan Z, Shen W, Shi S, Zhang X, Wang H. Carboxymethylated-bacterial cellulose for copper and lead ion removal.
J Hazard Mater 2009;161:1355.
[46] Fillipi br, Scamehorn JF, Christian Sd, Taylor rW. A comparative economic-analysis of copper removal from water by ligand-modified
micellar-enhanced ultrafiltration and by conventional solvent-extraction. J Membr Sci 1998;145:27.
[47] Choi H, Al-Abed Sr, Agarwal S, dionysiou dd. Synthesis of reactive nano Fe/Pd bimetallic system-impregnated activated carbon for
the simultaneous adsorption and dechlorination of PCbs. Chem Mater 2008;20:3649.
[48] darab Jg, Amonette Ab, burke dSd, orr rd, Ponder SM, Schrick b, Mallouk TE, lukens WW, Caulder dl, Shuh dK. removal of
pertechnetate from simulated nuclear waste streams using supported zero valent iron. Chem Mater 2007;19:5703.
[49] Formhals A. Process and apparatus for preparing artificial threads. US patent US1975504. 1934; Method and apparatus for spinning. US
patent US2160962. 1939; Artificial thread and method of producing same. US patent US2187306. 1940; Production of artificial fibers
from fiber forming liquids. US patent US2323025. 1943; Method and apparatus for spinning. US patent US2349950. 1944.
[50] Wang S, Zhao Y, Shen M, Shi X. Electrospun hybrid nanofibers doped with nanoparticles or nanotubes for biomedical applications. Ther deliv
2012;3:1155.
[51] bhardwaj N, Kundu SC. Electrospinning: a fascinating fiber fabrication technique. biotechnol Adv 2010;28:325.
[52] li d, Xia Y. Fabrication of titania nanofibers by electrospinning. Nano lett 2003;3:555.
[53] li MY, Mondrinos MJ, gandhi Mr, Ko FK, Weiss AS, lelkes PI. Electrospun protein fibers as matrices for tissue engineering.
biomaterials 2005;26:5999.
[54] luu YK, Kim K, Hsiao bS, Chu b, Hadjiargyrou M. development of a nanostructured dNA delivery scaffold via electrospinning of
PlgA and PlA-PEg block copolymers. J Control release 2003;89:341.
[55] Wu H, Zhang r, liu X, lin d, Pan W. Electrospinning of Fe, Co, and Ni nanofibers: synthesis, assembly, and magnetic properties.
Chem Mater 2007;19:3506.
[56] Fang d, Hsiao bS, Chu b. Multiple-jet electrospinning of non-woven nanofiber articles. Polym Preprs 2003;44:59.
[57] Carnell lS, Siochi EJ, Wincheski rA, Holloway NM, Clark rl. Electric field effects on fiber alignment using an auxiliary electrode
during electrospinning. Scr Mater 2009;60:359.
[58] Theron A, Zussman E, Yarin Al. Electrostatic field-assisted alignment of electrospun nanofibres. Nanotechnology 2001;12:384.
[59] Yang d, lu b, Zhao Y, Jiang X. Fabrication of aligned fibrous arrays by magnetic electrospinning. Adv Mater 2007;19:3702.
[60] Wang X, Niu H, lin T. Needleless electrospinning of nanofibers with a conical wire coil. Polym Eng Sci 2009;49:1582.
[61] Teo WE, Kotaki M, Mo XM, ramakrishna S. Porous tubular structures with controlled fibre orientation using a modified electrospinning
method. Nanotechnology 2005;16:918.
[62] Zhang YZ, Huang ZM, Xu XJ, lim CT, ramakrishna S. Preparation of core-shell structured PCl-r-gelatin bi-component nanofibers by
coaxial electrospinning. Chem Mater 2004;16:3406.
[63] Wu Y, dong Z, Wilson S, Clark rl. Template-assisted assembly of electrospun fibers. Polymer 2010;51:3244.
[64] doshi J, reneker dH. Electrospinning process and applications of electrospun fibers. J Electrostat 1995;35:151.
[65] Zuo W, Zhu M, Yang W, Yu H, Chen Y, Zhang Y. Experimental study on relationship between jet instability and formation of beaded
fibers during electrospinning. Polym Eng Sci 2005;45:704.
Search WWH ::




Custom Search