不同木质生物质中木质素热解特性的TG-FTIR研究

Xueyong Ren, Hongzhen Cai, Jian-min Chang, Yong-Ming Fan
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引用次数: 6

摘要

采用热重分析仪和傅里叶变换红外光谱仪(TG-FTIR)研究了从杉木、落叶松、杨木和桉树四种不同木材中分离的木质素与商品木质素的热解特性。采用三维扩散模型计算了木质素热裂解反应的活化能和指前因子等动力学参数。软木木质素的残碳率和活化能均高于硬木木质素,说明在热解过程中,软木木质素比硬木木质素分解相对困难。通过分析气相产物的三维红外光谱,在最大失重速率附近观察到小分子气体和含氧化学物质(如醚、酚、酸、醛和醇)的明显特征峰。讨论了主要气态产物的生成途径,其释放量顺序为:CO2>CH4>H2O>CO。相信这些结果将从原料的角度为木质素热化学转化过程提供有价值的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TG-FTIR Study on the Pyrolysis Properties of Lignin from Different Kinds of Woody Biomass
Pyrolysis properties of lignin separated from four different kinds of wood (fir, larch, poplar, and eucalyptus) compared with commercial lignin were investigated using a thermogravimetric analyzer coupled to a Fouriertransform infrared spectrometer(TG-FTIR). Kinetic parameters of lignin thermal cracking reaction, such as activation energy and pre-exponential factor, were calculated using a three-dimensional diffusion model. The carbon residue rate and activation energy of softwood lignin were higher than those of hardwood lignin, showing that the decomposition of the former is relatively more difficult than that of the latter during pyrolysis. The distinct characteristic peaks of small-molecule gases and oxygenated chemicals such as ethers, phenols, acids, aldehydes, and alcohols were observed near the maximum weight loss rate by analyzing the 3D IR spectrum of the gas phase products. The formation routes of the main gaseous products were discussed, and the following order of releasing amounts was noted: CO2>CH4>H2O>CO. It is believed that these results will provide valuable information for the thermochemical conversion process of lignin from the point of view of feedstock.
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