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Porosity-Acidity Interplay in Hierarchical ZSM-5 Zeolites for Pyrolysis Oil Valorization to Aromatics

机译:孔隙率酸度相互作用在分层ZSM-5沸石中的热解油储存对芳烃

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摘要

The properties of crude bio-oils attained by the pyrolysis of lignocellulosic biomass can be greatly enhanced by means of catalytic upgrading. Here, we demonstrate an efficient process concept coupling the production of pyrolysis oil from pine wood with a consecutive catalytic upgrading step over hierarchically structured ZSM-5 zeolites to attain aromatic-rich bio-oils. The selective upgrading of these complex mixtures is shown to be tightly connected to the extent of mesopore development and the density of BrOnsted acid sites at the mesopore surface. A full product analysis enables elucidation of the impact of mesopore introduction and the acidic properties on the complex reaction network. The preferential occurrence of decarbonylation reactions in hierarchical zeolites versus dehydration transformations in the bulk counterparts is believed to be decisive in promoting increased aromatics formation.
机译:通过催化升级,可以大大提高由木质纤维素生物质热解率获得的粗生物油的性质。 在这里,我们证明了一种有效的过程概念,偶联了从松木的生产热解油的产生,在分层结构的ZSM-5沸石上通过分层结构溶液升级液体,以获得富含富含富含芳香族的生物油。 这些复杂混合物的选择性升级显示在中孔的开发程度和中孔表面上的刚性酸位点的程度紧密连接。 完全的产品分析使得能够阐明中孔介绍和酸性特性对复杂反应网络的影响。 据信,在体子对应物中的等级沸石中的脱水转化中的优先发生在促进芳烃形成增加的情况下是决定性的。

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