期刊文献+

Influence of Ammonium Polyphosphate on Thermal Decomposition of Reconstituted Tobacco and CO Evolution

多聚磷酸铵对再造烟叶热解行为与CO释放量的影响
下载PDF
导出
摘要 The thermal behaviors and burning characteristics of reconstituted tobacco (RT) are strongly related with evolved gaseous products. The effect of ammonium polyphosphate (APP) as an additive of RT on the pyrolysis behavior and CO evolution was studied, emphasizing the role of heating velocity in reducing CO delivery of the mainstream smoke by APP. Thermogravimetric analysis (TGA) was employed to investigate the influence of APP on RT thermal behavior. Slow and flash pyrolysis of RT were compared to discuss the role of heating rate in decreasing CO by APP. TGA results demonstrated that, in dependence on APP concentration, APP influenced exothermal amount and weight loss rate during RT thermal decomposition, promoted the formation of char and retarded the thermal decomposition of RT. In addition, APP had a considerable influence on the evolution of gaseous products during thermal decomposition of RT. Both CO delivery per cigarette and that per puff in the smoking process were significantly reduced in dependence on APP content in RT. Comparative analysis of CO evolution patterns in the flash and slow pyrolysis elucidated that heating rate played a key role in decreasing CO evolution by APP. The results suggest that APP is a potential burning additive for controlling CO delivery in mainstream smoke of RT.
出处 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2014年第2期243-248,I0004,共7页 化学物理学报(英文)
关键词 Thermal decomposition Reconstituted tobacco Ammonium polyphosphate CO 热降解 再造烟叶 多聚磷酸铵 CO
  • 相关文献

参考文献24

  • 1R.F.Shehadeh,http://www.legacy.library.ucsf.edu/tid/bzu03f00/pdf.
  • 2T.M.Halter and T.I.Ito,J.Natl.Cancer.Inst.48,1867(1972).
  • 3W.S.Schlotzhauer and O.T.Chortyk,Beitr.Tabak-forsch.8,84(1975).
  • 4R.R.Baker,Prog.Energ.Combust.Sci.32,373(2006).
  • 5A.A.Rostami,M.R.Hajaligo,P.Li,S.Rabiei,and M.S.Rostami,Beitr.Tabakforsch.20,439(2003).
  • 6C.Liu and A.Parry,Beitr.Tabakforsch.20,341(2003).
  • 7P.Li,Nanotechnology in Catalysis,vol.2,New York:Kluwer Academic/Plenum Publishers,515(2003).
  • 8A.Marcilla,M.Beltran,A.G6mez-Siurana,I.Mar-tinez,and D.Berenguer,Thermochim.Acta 518,47(2011).
  • 9M.S.Stavanja,G.M.Curtin,P.H.Ayres,E.R.Bombick,M.F.Borgerding,W.T.Morgan,C.D.Gar-ner,D.H.Pence,and J.E.Swauger,Exp.Toxicol.Pathol.59,339(2008).
  • 10A.Tzamtzis,A.Pappa,and A.Mourikis,Polym.De-grad.Stabil.66,55(1999).

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部