Thermal reactivities of catechols/pyrogallols and cresols/xylenols as lignin pyrolysis intermediates

愈创木酚 化学 热解 苯酚 有机化学 甲酚 反应性(心理学) 木质素 均分解 去甲基化 激进的 催化作用 基因表达 DNA甲基化 替代医学 病理 基因 医学 生物化学
作者
Mohd Asmadi,Hiroyoshi Kawamoto,Shiro Saka
出处
期刊:Journal of Analytical and Applied Pyrolysis [Elsevier BV]
卷期号:92 (1): 76-87 被引量:116
标识
DOI:10.1016/j.jaap.2011.04.012
摘要

Thermal reactivities of lignin pyrolysis intermediates, catechols/pyrogallols (O-CH3 homolysis products) and cresols/xylenols (OCH3 rearrangement products), were studied in a closed ampoule reactor (N2/600 °C/40–600 s) to understand their roles in the secondary reactions step. Reactivity tends to be enhanced by increasing the number of substituent groups on phenol and this effect was greater for –OH than for –CH3. Thus, catechols/pyrogallols were more reactive than cresols/xylenols and syringol-derived products were more reactive than corresponding guaiacol-derived products. Catechols/pyrogallols were effectively converted into CO (additionally CO2 in the case of pyrogallols) in the early stage of pyrolysis. In contrast, cresols/xylenols were comparatively stable and produced H2, CH4 and demethylation products (cresols and phenol) after prolonged heating. All intermediates except phenol and 2-ethylphenol formed coke during a long heating time of 600 s (second stage coking). Based on the present results, the roles of intermediates in tar, coke and gas formation from guaiacol and syringol are discussed at the molecular level, focusing on their differences. Molecular mechanisms of gas formation from pyrogallols and demethylation of cresols/xylenols are also discussed.
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