The effect of chitosan on the flammability and thermal stability of polylactic acid/ammonium polyphosphate biocomposites

Carbohydrate Polymers - Tập 157 - Trang 1586-1593 - 2017
Chen Chen1, Xiaoyu Gu1, Xiaodong Jin1, Jun Sun1, Sheng Zhang1
1Key Laboratory of Carbon Fiber and Functional Polymers (Beijing University of Chemical Technology), Ministry of Education, Beijing 100029, China

Tài liệu tham khảo

Alexandre, 2000, Polymer- layered silicate nanocomposites: Preparation, properties and uses of a new class of materials, Materials Science and Engineering: R: Reports, 28, 1, 10.1016/S0927-796X(00)00012-7 Bourbigo, 2009 Bourbigot, 2010, Flame retardancy of polylactide: An overview, Polymer Chemistry, 1, 1413, 10.1039/c0py00106f Bourbigot, 2008, PLA nanocomposites: Quantification of clay nanodispersion and reaction to fire, International Journal of Nanotechnology, 5, 683, 10.1504/IJNT.2008.018690 Carosio, 2012, Layer by Layer ammonium polyphosphate-based coatings for flame retardancy of polyester-cotton blends, Carbohydrate Polymers, 88, 1460, 10.1016/j.carbpol.2012.02.049 Deng, 2009, Mechanism and properties of organic phosphorus-containing compounds reacting flame-retardant polylactic acid, Engineering Plastics Application, 7, 54 El-Tahlawy, 2008, Chitosan phosphate: A new way for production of eco-friendly flame-retardant cotton textiles, Journal of the Textile Institute, 99, 185, 10.1080/00405000701584311 Feng, 2011, An intumescent flame retardant system using β-cyclodextrin as a carbon source in polylactic acid (PLA), Polymers for Advanced Technologies, 22, 1115, 10.1002/pat.1954 Fox, 2014, Flame retarded poly(lactic acid) using POSS-modified cellulose. 2. Effects of intumescing flame retardant formulations on polymer degradation and composite physical properties, Polymer Degradation and Stability, 106, 54, 10.1016/j.polymdegradstab.2014.01.007 Gilman, 1997, Nanocomposites: A revolutionary new flame retardant approach, Sampe Journal, 33, 40 Hapuarachchi, 2010, Multiwalled carbon nanotubes and sepiolite nanoclays as flame retardants for polylactide and its natural fibre reinforced composites, Composites Part A: Applied Science and Manufacturing, 41, 954, 10.1016/j.compositesa.2010.03.004 Ke, 2010, Synergistic effect between a novel hyperbranched charring agent and ammonium polyphosphate on the flame retardant and anti-dripping properties of polylactide, Polymer Degradation and Stability, 95, 763, 10.1016/j.polymdegradstab.2010.02.011 Laufer, 2012, Clay-chitosan nanobrick walls: Completely renewable gas barrier and flame-retardant nanocoatings, ACS Applied Materials & Interfaces, 4, 1643, 10.1021/am2017915 Li, 2009, Influence of ammonium polyphosphate on the flame retardancy and mechanical properties of ramie fiber-reinforced poly(lactic acid) biocomposites, Polymer International, 242 Liu, 2011, Synthesis of organo-modified α −zirconium phosphate and its effect on the flame retardancy of IFR poly(lactic acid) systems, Polymer Degradation and Stability, 96, 771, 10.1016/j.polymdegradstab.2011.02.022 Murariu, 2010, New trends in polylactide (PLA)-based materials: Green PLA-Calcium sulfate (nano)composites tailored with flame retardant properties, Polymer Degradation and Stability, 95, 374, 10.1016/j.polymdegradstab.2009.11.032 Nishida, 2005, Feedstock recycling of flame-resisting poly(lactic acid) aluminum hydroxide composite to L, L-lactide, Industrial & Engineering Chemistry Research, 5, 1433, 10.1021/ie049208+ Qian, 2013, Aluminated mesoporous silica as novel high-effective flame retardant in polylactide, Composites Science and Technology, 82, 1, 10.1016/j.compscitech.2013.03.019 Réti, 2008, Flammability properties of intumescent PLA including starch and lignin, Polymers for Advanced Technologies, 19, 628, 10.1002/pat.1130 Shan, 2012, Effect of nickel-containing layered double hydroxides and cyclophosphazene compound on the thermal stability and flame retardancy of poly(lactic acid), Industrial & Engineering Chemistry Research, 51, 13037, 10.1021/ie300589p Shukor, 2014, Effect of ammonium polyphosphate on flame retardancy, thermal stability and mechanical properties of alkali treated kenaf fiber filled PLA biocomposites, Materials & Design, 54, 425, 10.1016/j.matdes.2013.07.095 Solarski, 2008, Designing polylactide/clay nanocomposites for textile applications: Effect of processing conditions, spinning, and characterization, Journal of Applied Polymer Science, 109, 841, 10.1002/app.28138 Sun, 2014, Improving the flame retardancy of polyamide 6 by incorporating hexachlorocyclotriphosphazene modified MWNT, Polymers for Advanced Technologies, 25, 1099, 10.1002/pat.3358 Wang, 2013, Comparative study on the effect of beta-cyclodextrin and polypseudorotaxane As carbon sources on the thermal stability and flame retardance of polylactic acid, Industrial & Engineering Chemistry Research, 52, 3287, 10.1021/ie303002b Xiao, 2014, Preparation of a chitosan-based flame-retardant synergist and its application in flame-retardant polypropylene, Journal of Applied Polymer Science, 131, 5829, 10.1002/app.40845 Yang, 2016, A review on chitosan-based flocculants and their applications in water treatment, Water Research, 95, 59, 10.1016/j.watres.2016.02.068 Zhu, 2011, Synergistic effect between expandable graphite and ammonium polyphosphate on flame retarded polylactide, Polymer Degradation and Stability, 96, 183, 10.1016/j.polymdegradstab.2010.11.017