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Initial Products and Reaction Mechanisms for Fast Pyrolysis of Synthetic G-Lignin Oligomers with b-O-4 Linkages via On-Line Mass Spectrometry and Quantum Chemical Calculations

机译:通过在线质谱和量子化学计算的B-O-4连接的合成G-Lignin低聚物快速热解的初始产物和反应机制

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摘要

The products of fast pyrolysis that first leave the hot pyrolysis surface were identified for three G-lignin model compounds, a trimer, a tetramer and a synthetic polymer, all containing β-O-4 linkages, by using a very fast heating pyrolysis probe coupled with a linear quadrupole ion trap mass spectrometer or a linear quadrupole ion trap coupled with an orbitrap detector. Highresolution measurements were used to determine the elemental compositions of the deprotonated pyrolysis products. Their structures were examined using collision-activated dissociation experiments and via comparison to the dissociation reactions of ionized authentic compounds. The initial pyrolysis products for all model compounds range from monomers to tetramers. Even for the polymer, no products larger than tetramers were observed. None of the products were radicals. The observed trimers and tetramers were formed directly from the intact model compounds rather than from repolymerization of initially formed monomers. Both the observed product distributions and quantum chemical calculations suggest that the mechanism(s) of the major reactions occurring under the conditions employed here are Maccoll and/or retro-ene eliminations rather than radical reactions. Based on a comparison of the behavior of the smaller β-O-4 model compounds to the synthetic β-O-4 lignin polymer, the smaller model compounds appear to be good surrogates for further studies of the mechanisms of fast pyrolysis of lignin.
机译:通过使用非常快速的加热热量解析探针耦合的三种G-Lignin模型化合物,三种蛋白质,四聚体和合成聚合物,都可以鉴定出三种G-Lignin模型化合物,三聚体,四聚体和合成聚合物的快速热解的产物,它们均包含β-O-4链接带有线性四极离子陷阱质谱仪或与Orbitrap检测器耦合的线性四极离子陷阱。高分辨率测量用于确定去质子化热解产物的元素组成。使用碰撞激活的解离实验和与电离真实化合物的解离反应进行了比较,检查了它们的结构。所有模型化合物的初始热解产品范围从单体到四聚体。即使对于聚合物,也没有观察到大于四聚体的产物。这些产品都不是激进分子。观察到的三聚体和四聚体是直接由完整的模型化合物形成的,而不是由最初形成的单体的重聚。观察到的产品分布和量子化学计算都表明,在此处采用的条件下发生的主要反应的机制是MacColl和/或恢复的消除,而不是根本反应。基于较小β-O-4模型化合物与合成β-O-4木质素聚合物的行为的比较,较小的模型化合物似乎是对木质素快速热解的机制的进一步研究。

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