摘要
Pyrolysis of three high rank coals,Changcun,Rujigou and Jincheng,were investigated by TG,and the evolved hydrogen was on-line analyzed by mass spectroscopy.The results show that Rujigou and Jincheng coals have higher initial pyrolysis temperature,higher temperature of maximum weight loss rate and lower maximum weight loss rate.This indicates that the macromolecular structure tends to be stable with the increase of coal rank.Analysis of the evolution characteristics of hydrogen indicates that the initial temperatures(t0) of hydrogen evolution increases with the increase of carbon content.The maximum rate temperature(tmax) is the highest for Changcun coal.This maybe relates to the low aromaticity of Changcun coal.The condensation between the aromatic hydrocarbons will occur up to higher temperature.The evolution intensity of hydrogen from Changcun coal is obviously higher than that for Rujigou and Jincheng coal.
Pyrolysis of three high rank coals, Changcun, Rujigou and Jincheng, were investigated by TG, and the evolved hydrogen was on -line analyzed by mass spectroscopy. The results show that Rujigou and Jincheng coals have higher initial pyrolysis temperature, higher temperature of maximum weight loss rate and lower maximum weight loss rate. This indicates that the macromolecular structure tends to be stable with the increase of coal rank. Analysis of the evolution characteristics of hydrogen indicates that the initial temperatures ( to ) of hydrogen evolution increases with the increase of carbon content. The maximum rate temperature (tmax) is the highest for Changcun coal. This maybe relates to the low aromaticity of Changcun coal. The condensation between the aromatic hydrocarbons will occur up to higher temperature. The evolution intensity of hydrogen from Changcun coal is obviously higher than that for Rujigou and Jincheng coal.
出处
《燃料化学学报》
EI
CAS
CSCD
北大核心
2007年第2期237-240,共4页
Journal of Fuel Chemistry and Technology
基金
国家自然科学基金(40572094
90410018
40372073
40002009)
教育部"长江学者及创新团队发展计划"(IRT0517)
山西省青年学术带头人资助项目
关键词
煤热解
H2
逸出特征
coal pyrolysis
H2
evolution characteristics