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首页> 外文期刊>Journal of Biobased Materials and Bioenergy >TG-FTIR Analysis of Pyrolytic Lignin Extracted from Different Kinds of Bio-Oil
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TG-FTIR Analysis of Pyrolytic Lignin Extracted from Different Kinds of Bio-Oil

机译:从不同种类的生物油中提取的热解木质素的TG-FTIR分析

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As one of the most important components in bio-oil, pyrolytic lignin has a close relationship with the property of bio-oil, which also be considered as a potential source to produce value-added chemicals due to its aromatic structure. To improve the stability and increase the economic value of bio-oil, three types of pyrolytic lignin extracted from different kind of bio-oils were studied in this paper. Thermo-gravimetry coupled with FTIR analysis was applied to determine the thermal decomposition behavior and real-time analysis of gases generated during the pyrolysis process. The results were compared with that of the raw alkali lignin, which indicated that PL is more sensitive to temperature and has a lower decomposition temperature range. The analysis on gases generation indicated pyrolytic lignin had less ether bonds, methoxy and hydroxyl groups than alkali lignin. The TG analysis indicated that pyrolytic lignin extracted from larch bio-oil had the lowest residue yields among the three types of PL. The yields of gases from PLs pyrolysis were lower than alkali lignin.
机译:作为生物油中最重要的成分之一,热解木质素与生物油的特性有着密切的关系,由于其芳香结构,它也被认为是生产增值化学品的潜在来源。为了提高生物油的稳定性并提高其经济价值,本文研究了从不同种类生物油中提取的三种热解木质素。应用热重分析和FTIR分析来确定热分解行为并实时分析热解过程中产生的气体。将结果与粗碱木质素的结果进行比较,表明PL对温度更敏感,分解温度范围较低。对气体产生的分析表明,热解木质素比碱性木质素具有更少的醚键,甲氧基和羟基。 TG分析表明,从落叶松生物油中提取的热解木质素残留量在三种PL中最低。 PL裂解产生的气体产率低于碱木质素。

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