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In-source collision activated dissociation for coal/biomass-based model compounds and structural characterization of a coal extract

机译:煤/生物质模型化合物的源内碰撞活化解离和煤提取物的结构表征

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In-source collision activated dissociation (ISCAD) is an effective method to obtain molecular structure of coal and biomass and provide basic knowledge for coal/biomass conversion. Twenty two coal/biomass-based model compounds and one coal extract were studied via ISCAD to understand the relationship between collision energy and molecular structure and the application of ISCAD in the characterization of coal. Model compounds showed different fragmentation patterns with the increase of collision energy and the detailed fragmentation pathways in context of collision energies were proposed. According to the ISCAD results of coal extract, the weighted mean molecular weight (MW) and weighted mean double-bond equivalent (DBE) values of ionized coal molecules decreased over collision energy of 80 eV. The decrease of weighted mean MW and DBE were mainly caused by the cleavage of alkyl chains, bridged bonds, and minor cracking of small aromatic cores from precursor ions upon fragmentation. Therefore, the optimal ISCAD collision energy for the investigation of aromatic core structures of the coal extract should be around 80 eV.
机译:源内碰撞活化解离(ISCAD)是获得煤和生物质分子结构并为煤/生物质转化提供基础知识的有效方法。通过ISCAD研究了22种基于煤/生物质的模型化合物和一种煤提取物,以了解碰撞能量与分子结构之间的关系以及ISCAD在煤表征中的应用。随着碰撞能量的增加,模型化合物表现出不同的碎裂模式,并在碰撞能量的背景下提出了详细的碎裂路径。根据煤炭提取物的ISCAD结果,电离煤分子的加权平均分子量(MW)和加权平均双键当量(DBE)值在80 eV的碰撞能量上下降。加权平均分子量和平均分子量的下降主要是由于烷基链断裂,桥键断裂以及裂解时前体离子中的小芳烃核开裂所致。因此,用于研究煤提取物的芳香核结构的最佳ISCAD碰撞能量应为80 eV左右。

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