摘要
采用热重分析(TGA)、Kissinger、Flynn-Wall-Ozawa、Friedman和Modified Coats-Redfem方法,在氮气气氛和升温速率分别为5℃/min、10℃/min、15℃/min和20℃/min条件下,研究了质子交换膜的热稳定性及热降解动力学。TG-DTG曲线显示该质子交换膜分解率达到5%时,最低热降解温度大于350℃,热分解过程经历两个阶段,第一和第二阶段热分解区间分别出现在340℃~440℃和405℃~600℃之间。采用不同方法的计算结果显示,第一阶段的平均表观活化能为155.8kJ/mol,第二阶段的平均表观活化能为177.1kJ/mol。
The thermal stability and thermal degradation kinetics of the proton exchange membrane were investigated by using the thermogravimetry analysis (TGA)、Kissinger、Flynn-Wall-Ozawa、Friedman and Modified Coats-Redfern methods under the conditions of nitrogen atmosphere and heating rate of 5 ℃/min、10 ℃/min、15 ℃/min and 20 ℃/min. TG-DTG curves showed that the minimum temperature of the thermal degradation is greater than 350 ℃,as the decomposition rate reaches 5%. TGA result implied that the proton exchange membrane shows two stages of thermal degradation. Thermal decomposition range in first and secnd stage is among 340 ℃~440 ℃ and 405 ℃~600 ℃ respectively. The results calculated by various methods indicate that the average value of apparent activation energy in first stage is about 155.8 kJ/mol,and the average value of apparent activation energy in second stage is about 177.1 kJ/mol.
出处
《高分子材料科学与工程》
EI
CAS
CSCD
北大核心
2010年第5期61-64,共4页
Polymer Materials Science & Engineering
基金
安徽省国际科技合作计划资助项目(06088018)
淮南市科技计划资助项目
关键词
燃料电池
质子交换膜
氮气
热分解动力学
fuel cell
proton-exchange membrane
nitrogen gas
thermal decomposition kinetics