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首页> 外文期刊>Chemical Engineering Science >Gallium-promoted HZSM-5 zeolites as efficient catalysts for the aromatization of biomass-derived furans
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Gallium-promoted HZSM-5 zeolites as efficient catalysts for the aromatization of biomass-derived furans

机译:镓促进的HZSM-5沸石作为生物量衍生呋喃的芳族化的有效催化剂

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The development of novel technologies to convert renewable biomass feedstocks to fuels and chemicals is of increasing interest for making our chemical industry more sustainable. Plant biomass or its biomass-derived platform molecules are typically over-functionalized, requiring substantial modification to produce the chemicals currently demanded by industry. Furanic compounds are intermediates in the catalytic fast pyrolysis of lignocellulosic biomass or sugar dehydration and can in principle be further converted to aromatics. While upgrading of furanics by zeolite-catalysed aromatization typically results in a large loss of carbon due to coke deposition, carbon laydown can be mitigated by the addition of ethylene and by the modification of the zeolite with Lewis acid Ga sites. Here, we investigate the influence of the Ga loading on the physicochemical properties of Ga-modified HZSM-5 zeolite and its performance in the gas-phase aromatization of 2,5-dimethylfuran with ethylene. Characterization of the morphological, textural and acidic properties were carried out to understand the role of Bronsted and Lewis acid sites on the catalytic reaction. We demonstrate a crucial role of the dispersion of Ga-species and the resulting Lewis acidity of the Ga/ZSM-5 catalysts; and show means how to control both parameters by adjusting the synthesis method. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:新型技术的开发将可再生的生物质原料转化为燃料和化学品的燃料和化学品对使我们的化学工业更具可持续性的兴趣越来越令人利益。植物生物质或其生物质衍生的平台分子通常是过度官能化的,需要进行大量改性,以产生行业目前要求的化学品。呋喃的化合物是木质纤维素生物质或糖脱水的催化快速热解中的中间体,原则上可以进一步转化为芳烃。虽然通过沸石催化的芳族化升级呋喃,通常导致由于焦沉积引起的碳损失大,但可以通过加入乙烯来减轻碳缩放,并通过用路易斯酸GA位点改变沸石。在此,我们研究了GA负荷对GA改性HZSM-5沸石物理化学性质的影响及其在用乙烯的2,5-二甲基呋喃的气相芳族化中的性能。进行了形态学,纹理和酸性特性的表征,以了解伪装和路易斯酸位点对催化反应的作用。我们证明了Ga / ZSM-5催化剂的分散的分散性的关键作用和所得的Lewis酸度;并且显示意味着如何通过调整合成方法来控制两个参数。 (c)2018作者。 elsevier有限公司出版

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