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Subcritical Water Reactions of Lignin-Related Model Compounds with Nitrogen, Hydrogen, Carbon Monoxide, and Carbon Dioxide Gases

机译:木质素相关模型化合物与氮,氢,一氧化碳和二氧化碳气体的亚临界水反应

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摘要

Experiments using subcritical H_2O (365 ℃) and various industrial gases (500 psi cold pressure of N_2, H_2, CO, or CO_2) have been considered previously for the conversion of Organosohr lignin (representative of lignin-derived compounds generated from the production of bioethanol from woody biomass sources) into value-added products. The findings indicated that subcritical H_2O can be used to depolymerize lignin into GC amenable compounds with or without added gas pressures, though adding gas further modified the types of products generated. However, the roles of the combined effect of subcritical H_2O and the gases were not confirmed, as the reaction chemistry for lignin depolymerization at these conditions is not intuitive. Thus, experiments with subcritical H_2O, the aforementioned industrial gases and lignin-related model compounds (i.e., aromatic aldehydes represented by vanillin and syringaldehyde, aromatic ketones represented by acetovanillone and acetosyringone, and aromatic ethers represented by dibenzyl ether and 2-phenethyl phenyl ether), were completed to study this. From these results, the suggested reaction pathway of Organosolv lignin reactions in subcritical H_2O with and without added pressure appears to proceed in two stages. The first stage appears to be a hydrolysis reaction that breaks the ether linkages between lignin aromatic monomers with typical methoxy and hydroiyl functional groups and either an aldehyde or ketone (i.e., syringaldehyde, acetophenone). A second stage appears to remove the aldehyde/ketone so that the main products are methoxy phenols.
机译:以前已经考虑过使用亚临界H_2O(365℃)和各种工业气体(N_2,H_2,CO或CO_2的冷压为500 psi的实验)进行有机糖木质素(代表由生物乙醇生产的木质素衍生化合物的代表)的实验。 (从木质生物质来源)转化为增值产品。研究结果表明,在添加或不添加气压的情况下,亚临界H_2O均可用于将木质素解聚为适合GC的化合物,尽管添加气体可进一步改变生成的产物的类型。然而,由于在这些条件下木质素解聚反应的化学反应并不直观,因此未确定亚临界H_2O和气体共同作用的作用。因此,用亚临界H_2O,上述工业气体和木质素相关的模型化合物(即,以香兰素和丁香醛为代表的芳族醛,以乙酰香草醛和乙酰丁香酮为代表的芳族酮以及以二苄基醚和2-苯乙基苯基醚为代表的芳族醚)进行实验,已完成研究。从这些结果来看,建议的有机溶剂木质素反应在亚临界H_2O中有或没有施加压力的反应路径似乎分两个阶段进行。第一步似乎是水解反应,该反应打破具有典型甲氧基和氢氧基官能团的木质素芳族单体与醛或酮(即丁香醛,苯乙酮)之间的醚键。第二阶段似乎是除去醛/酮,因此主要产物是甲氧基苯酚。

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  • 来源
    《Energy & fuels》 |2013年第novaadeca期|6681-6694|共14页
  • 作者单位

    John and Willie Leone Family Department of Energy and Mineral Engineering and the EMS Energy Institute, Penn State University, 225 Academic Projects Building, University Park, Pennsylvania 16802, United States;

    The EMS Energy Institute and the John and Willie Leone Family Department of Energy and Mineral Engineering, Penn State University, C205 Coal Utilization Laboratory, University Park, Pennsylvania 16802, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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