热解
PEG比率
化学
乙醚
脱氢
劈理(地质)
乙烯基醚
有机化学
核化学
高分子化学
材料科学
催化作用
共聚物
经济
复合材料
断裂(地质)
聚合物
财务
作者
Zhenkun Lin,Tianfang Wang,Xu Han,Donglin Han,Shufen Li
标识
DOI:10.1016/j.jaap.2007.09.010
摘要
Pure PEG (p-PEG) and PEG/nano-Co3O4 (PEG/n-Co3O4) were pyrolyzed in helium atmosphere from 30 °C to 350 °C with heating rate of 20 °C/min, and the online volatile pyrolysis products were detected by a coupled gas chromatography/mass spectrometry (GC/MS). Seven series of products and four linear end groups (ethyl ether, vinyl ether, hydroxyl and methyl ether) from p-PEG pyrolysis were identified. Eight series of products from PEG/n-Co3O4 pyrolysis were identified, including four series with cycloether end group which was not detected from p-PEG pyrolysis. The end groups of the detected pyrolysis products, both linear and cycloether end groups, could be explained via free radical degradation decomposition pathway. The detected cycloether end group was considered to be derived from dehydrogenation and cyclization of a free radical resulted from CO cleavage, with the existence of nano-Co3O4. The statistical results of the contents of the end groups showed that nano-Co3O4 reduced the probability of CC cleavage comparing with CO cleavage, and induced the hydrogenation of vinyl ether end group on its surface. The statistical results also confirmed the presumed approach of the cycloether end group forming.
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