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Original Articles

Preparation and Characterization of Chitosan-Based Flame Retardant and Its Thermal and Combustible Behavior on Polyvinyl Alcohol

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Pages 393-399 | Published online: 14 Mar 2013

REFERENCES

  • Irvine , D.J. ; McCluskey , J.A. ; Robinson , I.M. Fire hazards and some common polymers . Polym. Degrad. Stab. 2000 , 67 , 383 – 396 .
  • Lomakin , S.M. ; Zaikov , G.E. Ecological Aspects of Polymer Flame Retardancy , VSP : Utrecht , The Netherlands , 1999 .
  • Wang , J.J. ; Wang , L. ; Xiao , A. Recent research progress on the flame retardant mechanism of halogen free flame retardant polypropylene . Polym-Plast. Technol. 2009 , 48 , 297 – 302 .
  • Du , L. ; Xu , G. ; Zhang , Y. ; Qian , J. ; Chen , J. Synthesis and properties of a novel intumescent flame retardant (IFR) and its application in halogen-free flame retardant ethylene propylene diene terpolymer (EPDM) . Polym-Plast. Technol. 2011 , 50 , 372 – 378 .
  • Almeras , X. ; Dabrowski , F. ; Le Bras , M. Using polyamide-6 as charring agent in intumescent polypropylene formulations II . Thermal degradation. Polym. Degrad. Stab. 2002 , 77 , 315 – 323 .
  • Derksen , J.T.P. ; Cuperus , F.P. ; Kolster , P. Paints and coatings from renewable resources . Ind. Crops. Prod. 1995 , 3 , 225 – 236 .
  • Blayo , A. ; Gandini , A. ; Nest , J.F.L. Chemical and rheological characterizations of some vegetable oils derivatives commonly used in printing inks . Ind. Crops. Prod. 2001 , 14 , 155 – 167 .
  • Ikhuoria , E.U. ; Aigbodion , A.I. ; Okiemen , F.E. Preparation and characterisation of water-reducible alkyds with fumarized rubber seed oil . Prog. Org. Coat. 2005 , 52 , 238 – 240 .
  • Reti , C. ; Casetta , M. ; Duquesne , S. ; Bourbigot , S. ; Delobel , R. Flammability properties of intumescent PLA including starch and lignin . Polym. Adv. Technol. 2008 , 19 , 628 – 635 .
  • Anna , P. ; Zimonyi , E. ; Marton , A. ; Szep , A. ; Matko , S. ; Keszei , S. ; Bertalan , G. ; Marosi , G. Surface treated cellulose fibres in flame retarded PP composites . Macromol. Symp. 2003 , 202 , 245 – 254 .
  • Reti , C. ; Casetta , M. ; Duquesne , S. ; Delobel , R. ; Soulestin , J. ; Bourbigot , S. Intumescent biobased-polylactide films to flame retard nonwovens . J. Eng. Fibers Fabrics. 2009 , 4 , 33 – 39 .
  • Feng , J.X. ; Sub , S.P. ; Zhua , J. An intumescent flame retardant system using beta-cyclodextrin as a carbon source in polylactic acid (PLA) . Polym. Adv. Technol. 2011 , 22 , 1115 – 1122 .
  • Horrocks , A.R. ; Zhang , S. Enhancing polymer flame retardancy by reaction with phosphorylated polyols . Part 2. Cellulose treated with a phosphonium salt urea condensate (Proban CC9) flame retardant. Fire Mater. 2002 , 26 , 173 – 182 .
  • Chen , Y.H. ; Wang , Q. Reaction of melamine phosphate with pentaerythritol and its products for flame retardation of polypropylene . Polym. Adv. Technol. 2007 , 18 , 587 – 600 .
  • Wang , D.Y. ; Liu , Y. ; Wang , Y.Z. ; Artiles , C.P. ; Hull , T.R. ; Price , D. Fire retardancy of a reactively extruded intumescent flame retardant polyethylene system enhanced by metal chelates . Polym. Degrad. Stab. 2007 , 92 , 1592 – 1598 .
  • Spagnaa , G. ; Barbagalloa , R.N. ; Casarinib , D. ; Pifferic , P.G. A novel chitosan derivative to immobilize α-L-rhamnopyranosidase from Aspergillus niger for application in beverage technologies . Enzyme Microb. Tech. 2001 , 28 , 427 – 438 .
  • Lee , E.J. ; Shin , D.S. ; Kim , H.E. ; Kim , H.W. ; Koh , Y.H. ; Jang , J.H. Membrane of hybrid chitosan-silica xerogel for guided bone regeneration . Biomaterials 2009 , 30 , 743 – 750 .
  • Salmah , H. ; Faisal , A. ; Kamarudin , H. ; Hanafi , I. Mechanical and thermal properties of chitosan-filled polypropylene composites: The effect of acrylic acid . J. Vinyl Addit. Techn. 2011 , 2 , 125 – 131 .
  • Don , T.M. ; Hsu , S.C. ; Chiu , W.Y. Structures and thermal properties of chitosan- modified poly(methyl methacrylate) . J. Polym. Sci. Pol. Chem. 2001 , 39 , 1646 – 1655 .
  • Nishi , N. ; Ebina , A. ; Nishimura , S. ; Tsutsumi , A. ; Hasegawa , O. ; Tokura , S. Highly phosphorylated derivatives of chitin, partially deacetylated chitin and chitosan as new functional polymers: preparation and characterization . Int. J. Biol. Macromol. 1986 , 8 , 311 – 317 .
  • Wang , X.H. ; Ma , J.B. ; Wang , Y. ; He , B.L. Structural characterization of phosphorylated chitosan and their applications as effective additives of calcium phosphate cements . Biomaterials 2001 , 22 , 2247 – 2255 .
  • Tokura , S. ; Nishi , N. ; Tsutsumi , A. ; Somorin , O. Studies on chitin VIII . Some properties of water soluble chitin derivatives. Polym. J. (Tokyo) 1983 , 15 , 485 – 489 .
  • Costa , L. ; Camino , G. Mechanism of thermal-degradation of fire-retardant melamine salts. ACS Symp. Ser. 1990, 425, 211–38.
  • Camino , G.. ; Martinasso , G. ; Costa , L. ; Gobetto , R. Thermal-degradation of pentaerythritol diphosphate, model-compound for fire retardant intumescent systems . 2. intumescence step. Polym. Degrad. Stab. 1990 , 28 , 17 – 38 .
  • Camino , G. ; Costa , L. Overview of fire retardant mechanisms . Polym. Degrad. Stab. 1991 , 33 , 154 .
  • Weil , E.D. ; Zhu , W.M. ; Patel , N. ; Mukhopadhyay , S.M. A systems approach to flame retardancy and comments on modes of action . Polym. Degrad. Stab. 1996 , 54 , 125 – 136 .
  • Bugajny , M. ; Bourbigot , S. The origin and nature of flame retardance in ethylene-vinyl acetate copolymers containing Hostaflam AP 750 . Polym. Int. 1999 , 48 , 264 – 270 .
  • Liu , W. ; Chen , D.Q. ; Wang , Y.Z. ; Wang , D.Y. ; Qu , M.H. Char-forming mechanism of a novel polymeric flame retardant with char agent . Polym. Degrad. Stab. 2007 , 92 , 1046 – 1052 .
  • Zhan , J. ; Song , L. ; Nie , S.B. ; Hu , Y. Combustion properties and thermal degradation behavior of polylactide with an effective intumescent flame retardant . Polym. Degrad. Stab. 2009 , 94 , 291 – 296 .
  • Lyon , R.E. ; Worcester , M.A. Seventh International Symposium on Fire Safety Science, Worcester Polytechnic Institute, Worcester, MA, 2002.

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