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首页> 外文期刊>Journal of Catalysis >Processing biomass-derived oxygenates in the oil refinery: Catalytic cracking (FCC) reaction pathways and role of catalyst
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Processing biomass-derived oxygenates in the oil refinery: Catalytic cracking (FCC) reaction pathways and role of catalyst

机译:在炼油厂中处理生物质衍生的含氧化合物:催化裂化(FCC)反应途径和催化剂的作用

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摘要

The catalytic cracking of glycerol and sorbitol,as representative of biomass-derived oxygenates,was studied at 500-700 °C with six different catalysts,including a fresh fluid catalytic cracking (FCC) catalyst (FCCl),an equilibrium FCC catalyst with metal impurities (ECat),a mesoporous Al2O3,a USY zeolite (Y),a ZSM5-based FCC additive (ZSM5),and an inert silicon carbide (SiC).In this process,oxygen is removed from the feed as H2O,CO,or CO2.Repeated dehydration and hydrogen transfer allows the production of olefins,paraffins,and coke.Aromatics (in yields up to 20 molar carbon%) are formed by Diels-Alder and condensation reactions of olefins and dehydrated species,and the different reaction pathways are discussed.Sorbitol and glycerol gave similar product distributions,with the primary difference being that sorbitol produces more CO than glycerol.Glycerol can also be converted when fed together with vacuum gasoil without significantly altering the product selectivity,suggesting that biomass-derived products can be co-fed with petroleum-derived streams in an industrial FCC reactor.When glycerol is fed together with a vacuum gasoil,interactions between the hydrocarbon components and the glycerol reaction intermediates occur,resulting in final selectivities better than those calculated by considering a simple additive effect.
机译:在500-700°C下用六种不同的催化剂研究了甘油和山梨糖醇的催化裂化反应,这些反应物是生物质衍生的含氧化合物,包括新鲜的流化催化裂化(FCC)催化剂(FCCl),带有金属杂质的平衡FCC催化剂(ECat),介孔Al2O3,USY沸石(Y),ZSM5基FCC添加剂(ZSM5)和惰性碳化硅(SiC)。在此过程中,将氧气作为H2O,CO或二氧化碳。重复的脱水和氢转移可以生产烯烃,链烷烃和焦炭。芳烃(收率最高为20摩尔碳%)是由Diels-Alder以及烯烃与脱水物质的缩合反应形成的,不同的反应途径是山梨糖醇和甘油的产物分布相似,主要区别是山梨糖醇比甘油产生更多的CO。甘油与真空瓦斯油一起喂入也可以转化而不会显着改变产物的选择性,这表明生物ss衍生的产物可以与石油衍生的料流在工业FCC反应器中共同进料。当甘油与真空瓦斯油一起进料时,烃组分与甘油反应中间体之间会发生相互作用,最终选择性要比计算得出的更好考虑简单的累加效应。

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