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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Cellulose-Hemicellulose and Cellulose-Lignin Interactions during Fast Pyrolysis
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Cellulose-Hemicellulose and Cellulose-Lignin Interactions during Fast Pyrolysis

机译:快速热解过程中的纤维素-半纤维素和纤维素-木质素相互作用

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Previously, the primary product distribution resulting from fast pyrolysis of cellulose, hemicellulose, and lignin was quantified. This study extends the analysis to the examinations of interactions between cellulose-hemicellulose and cellulose-lignin, which were determined by comparing the pyrolysis products from their native mixture, physical mixture, and superposition of individual components. Negligible interactions were found for both binary physical mixtures. For the native cellulose-hemicellulose mixture, no significant interaction was identified either. In the case of the native cellulose-lignin mixture, herbaceous biomass exhibited an apparent interaction, represented by diminished yield of levoglucosan and enhanced yield of low molecular weight compounds and furans. However, such an interaction was not found for woody biomass. It is speculated that these results are due to different amounts of covalent linkages in these biomass samples. This study provides insight into the chemistry involved during the pyrolysis of multicomponent biomass, which can facilitate building a model for bio-oil composition prediction.
机译:以前,对纤维素,半纤维素和木质素快速热解所产生的主要产物分布进行了定量。这项研究将分析扩展到了纤维素-半纤维素和纤维素-木质素之间的相互作用的检测,这是通过比较热解产物的天然混合物,物理混合物和各个组分的叠加来确定的。两种二元物理混合物的相互作用都可以忽略不计。对于天然纤维素-半纤维素混合物,也没有发现明显的相互作用。在天然纤维素-木质素混合物的情况下,草本生物质表现出明显的相互作用,表现为左旋葡聚糖的产量减少和低分子量化合物和呋喃的产量增加。然而,对于木质生物质未发现这种相互作用。据推测,这些结果是由于这些生物质样品中共价键的数量不同所致。这项研究提供了对多组分生物质热解过程中涉及的化学的认识,这可以促进建立生物油成分预测模型。

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