Study of Pyrolysis Gaseous Products of Various Fibers-Relationship between Pyrolysis Products and Flame Retardancy
Study of Pyrolysis Gaseous Products of Various Fibers-Relationship between Pyrolysis Products and Flame Retardancy
批准号:
07680047
负责人:
MASUKO Fumi
金额:
$1.41万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
1995
资助国家:
日本
项目状态:
已结题
起止时间:
1995 至 1996
中文摘要
采用居里点热解-气相色谱法(Py-GC)和居里点热解-气相色谱-质谱法(Py-GC- ms)研究了棉、丝和羊毛织物的热解过程。棉花样品的热解温度为590ºC,羊毛和丝绸样品的热解温度为794ºC。未经处理的棉花的Py-GC色谱图显示了左旋葡聚糖的形成,这是纤维素热解的关键中间体。用磷阻燃剂处理的棉花样品产生的左旋葡聚糖较少。随着处理后棉花样品中磷含量的增加,挥发性热解产物的总量减少。Py-GC测得的这些值与处理后的阻燃性能一致。丝绸和羊毛样品的特征热解产物均为氰化氢、乙腈和丙烯腈,均含氮。除此之外,羊毛样品通过热解得到含硫硫化氢、羰基硫化氢和甲基硫醇。用溴或n -溴琥珀酰亚胺处理的丝绸和羊毛样品产生含溴的溴甲烷、溴乙烷、溴酚和溴甲酚。热解产物样品总量随着处理的增加而减少。综上所述,化学处理纤维的Py-GC和Py-GC- ms分析是评价化学处理纤维阻燃性和分析化学改性纤维结构的有效工具。
英文摘要
Pyrolysis of cotton, silk and wool fabrics was studied by Curie-point pyrolysis-gas chromatography (Py-GC) and Curie-point pyrolysis-gas chromatography-mass spectrometry (Py-GC-MS). The pyrolysis temperature for cotton samples was set 590゚C while that for wool and silk samples were 794゚C.A Py-GC chromatogram of the untreated cotton showed the formation of levoglucosan, a key intermediate in the pyrolysis of cellulose. Cotton samples treated with phosphorus flame retardants gave less levoglucosan. Moreover, the total amount of the volatile pyrolysis products decreased with increase in the phosphrus contents of the treated cotton samples. These values obtained by Py-GC were consistent with the flame retardancy attained by the treatment.Characteristic pyrolysis products from both silk and wool samples were hydrogen cyanide, acetonitrile and acrylonitrile all of which contain nitrogen. In addition to those, wool samples gave sulfur-containing hydrogen sulfide, carbonyl sulfide and methyl mercaptan by pyrolysis. Silk and wool samples treated with bromine or N-bromosuccinimide yielded bromine-containing bromomethane, bromoethane, bromophenol and bromocresol. The total amount of pyrolysis products samples decreased by the treatments. In conclusion it is demonstrated in this work that Py-GC and Py-GC-MS analyzes of chemically treated fibers are a useful tool for the evalution of flame retardancy of the treated fibers and the structural analysis of the chemically modified fibers.
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