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首页> 外文期刊>Advanced Materials >Recent Advances in Direct Synthesis of Value-Added Aromatic Chemicals from Syngas by Cascade Reactions over Bifunctional Catalysts
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Recent Advances in Direct Synthesis of Value-Added Aromatic Chemicals from Syngas by Cascade Reactions over Bifunctional Catalysts

机译:通过对双官能催化剂的级联反应直接合成来自合成气的增值芳族化学品的最新进展

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摘要

Value-added aromatic monomers such as benzene, toluene, and xylenes (BTX) are very important building-block chemicals for the production of plastics, polymers, solvents, pesticides, dyes, and adhesives. Syngas-to-aromatics (STA) is a very promising approach for the synthesis of aromatic monomers, and is catalyzed via bifunctional catalysts in a single reactor, wherein methanol/dimethyl ether and/or olefins intermediates formed from syngas on metal components are converted into aromatic monomers exclusively on the HZSM-5 by cascade reactions. Since an optimal Fischer-Tropsch synthesis (FTS) temperature of Fe-based catalysts is very close to an aromatization temperature of HZSM-5, Fe-based catalysts have been frequently used/modified for the synthesis of aromatic monomers from hydrogenation of carbon oxides (CO and CO2). The nature of metal components and amounts of Bronsted acid sites on HZSM-5, and their mesoporosity and intimacy, significantly alter the selectivity for aromatics by tuning BTX distibution and catalyst stability. Although many developments have been achieved regarding the STA process in recent years, no reviews have been published in this flourishing research area over the last two decades. Here, the recent advances and forthcoming challenges in the progress of syngas (CO+H-2) chemistry and hydrogenation of CO2 toward the value-added aromatic monomers through cascade reactions are highlighted.
机译:加值芳族单体如苯,甲苯和二甲苯(BTX)是非常重要的构建嵌段化学品,用于生产塑料,聚合物,溶剂,杀虫剂,染料和粘合剂。合成气 - 芳烃(STA)是一种非常有希望的用于合成芳族单体的方法,并通过单一反应器中的双官能催化剂催化,其中由合成气组成的甲醇/二甲醚和/或烯烃中间体转化为通过级联反应专用于HZSM-5的芳族单体。由于Fe基催化剂的最佳Fischer-Tropsch合成(FTS)温度非常接近HZSM-5的芳族化温度,因此经常使用/改性Fe基催化剂,用于从碳氧化物的氢化合成芳族单体( CO和CO2)。金属成分和HZSM-5上的刚性酸位点的性质及其中间渗透性和亲密度,通过调节BTX脱模和催化剂稳定性来显着改变芳烃的选择性。虽然近年来,在STA过程中取得了许多发展,但在过去二十年中,在这个繁荣的研究领域没有审查。这里,突出了最近在合成气(CO + H-2)化学和通过级联反应的增值芳族单体的研究进展中的进展和即将到来的挑战。

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