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Characterization and reactivity of soot from fast pyrolysis of lignocellulosic compounds and monolignols

机译:木质纤维素化合物和单木质醇快速热解过程中烟灰的表征和反应性

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摘要

This study presents the effect of lignocellulosic compounds and monolignols on the yield, nanostructure and reactivity of soot generated at 1250 degrees C in a drop tube furnace. The structure of soot was characterized by electron microscopy techniques, Raman spectroscopy and electron spin resonance spectroscopy. The CO2 reactivity of soot was investigated by thermogravimetric analysis. Soot from cellulose was more reactive than soot produced from extractives, lignin and monolignols. Soot reactivity was correlated with the separation distances between adjacent graphene layers, as measured using transmission electron microscopy. Particle size, free radical concentration, differences in a degree of curvature and multi-core structures influenced the soot reactivity less than the interlayer separation distances. Soot yield was correlated with the lignin content of the feedstock. The selection of the extraction solvent had a strong influence on the soot reactivity. The Soxhlet extraction of softwood and wheat straw lignin soot using methanol decreased the soot reactivity, whereas acetone extraction had only a modest effect.
机译:这项研究提出了木质纤维素化合物和单木酚醇对滴管炉中在1250摄氏度产生的烟灰的产率,纳米结构和反应性的影响。通过电子显微镜技术,拉曼光谱和电子自旋共振光谱来表征烟灰的结构。通过热重分析研究了烟灰的CO 2反应性。纤维素中的烟灰比萃取物,木质素和单木酚醛产生的烟灰更具反应性。使用透射电子显微镜测得,烟灰反应性与相邻石墨烯层之间的分离距离相关。粒径,自由基浓度,曲率差异和多核结构对烟d反应性的影响小于层间分离距离。烟灰产量与原料的木质素含量相关。萃取溶剂的选择对烟so反应性有很大影响。用甲醇的索氏提取软木和小麦秸秆木质素煤烟降低了煤烟的反应性,而丙酮提取仅具有中等作用。

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