首页  科学研究  学术论文  2015年
 
H. Ge, G. Tang, W. Z. Hu, B. B. Wang, Y. Pan, L. Song and Y. Hu (2015) Journal Of Hazardous Materials 294 186-194.
文章来源:SKLFS    作者:SKLFS    发布时间:2016-03-01

H. Ge, G. Tang, W. Z. Hu, B. B. Wang, Y. Pan, L. Song and Y. Hu (2015) Aluminum hypophosphite microencapsulated to improve its safety and application to flame retardant polyamide 6. Journal/Journal Of Hazardous Materials 294 186-194. [In English]
Web link: http://dx.doi.org/10.1016/j.jhazmat.2015.04.002
Keywords: Microencapsulation; Aluminum hypophosphite; Safety; Flame retardancy; BIOBASED POLYLACTIDE COMPOSITES; RARE-EARTH HYPOPHOSPHITE; AMMONIUM; POLYPHOSPHATE; MELAMINE-CYANURATE; THERMAL-DEGRADATION; FIRE; PERFORMANCE; ALIPHATIC NYLONS; HALOGEN-FREE; POLYPROPYLENE; TEREPHTHALATE)
Abstract: Aluminum hypophosphite (AHP) is an effective phosphorus-containing flame retardant. But AHP also has fire risk that it will decompose and release phosphine which is spontaneously flammable in air and even can form explosive mixtures with air in extreme cases. In this paper, AHP has been microencapsulated by melamine cyanurate (MCA) to prepare microencapsulated aluminum hypophosphite (MCAHP) with the aim of enhancing the fire safety in the procedure of production, storage and use. Meanwhile, MCA was a nitrogen-containing flame retardant that can work with AHP via the nitrogen-phosphorus synergistic effect to show improved flame-retardant property than other capsule materials. After microencapsulation, MCA presented as a protection layer inhibit the degradation of AHP and postpone the generation of phosphine. Furthermore, the phosphine concentration could be effectively diluted by inert decomposition products of MCA. These nonflammable decomposition products of MCA could separate phosphine from air delay the oxidizing reaction with oxygen and decrease the heat release rate, which imply that the fire safety of AHP has been improved. Furthermore, MCAHP was added into polyamide 6 to prepare flame retardant polyamide 6 composites (FR-PA6) which show good flame retardancy. (C) 2015 Elsevier B.V. All rights reserved.

 

 
 
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H. Ge, G. Tang, W. Z. Hu, B. B. Wang, Y. Pan, L. Song and Y. Hu (2015) Journal Of Hazardous Materials 294 186-194.
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