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Alternative fuel additives from glycerol by etherification with isobutene: Structure-performance relationships in solid catalysts

机译:异丁烯醚化甘油制甘油的替代燃料添加剂:固体催化剂中的结构性能关系

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The expansion of biodiesel industry is expected to introduce over three million tons of glycerol into the market in 2020. Various routes have been proposed to produce glycerol-based value-added products to sustain renewable glycerol and biodiesel industries. One of these routes is the catalytic etherification of glycerol with isobutene for producing fuel oxygenate glycerol ethers as an alternative to today's petroleum based oxygenates. The products Of the etherification of glycerol with isobutene are mono-, di-, and tri-tertiary butyl ethers of glycerol (MTBG, DTBG, and TTBG) and dimers of isobutene (DIE). Among these, DTBG and TTBG are the desired products for fuel blends because of their better blending properties. Different heterogeneous catalysts including acidic ion exchange resins (e.g. Amberlyst 15 and 36), sulfonated wide pore zeolites (e.g. zeolite Beta and Y), sulfonated mesoporous silica (e.g. MCM-41 and SBA-15) and some functionalized porous materials (e.g. sulfonated peanut shell, sulfonated aerogel, sulfonated graphene, spherical silica supported Hyflon) have been proved to demonstrate superior catalytic activity with complete glycerol conversion and over 90 mol% selectivity to the desired ethers. Here, we review the studies on glycerol etherification with isobutene from 1990s to the first half of 2015 specifically focusing on structure-performance relationships in heterogeneous catalysts. (C) 2015 Elsevier B.V. All rights reserved.
机译:预计到2020年,生物柴油产业的扩展将向市场引入超过300万吨的甘油。已提出了多种途径来生产甘油基增值产品,以维持可再生甘油和生物柴油产业。这些途径之一是甘油与异丁烯的催化醚化,以生产燃料含氧化合物甘油醚,以替代当今基于石油的含氧化合物。甘油与异丁烯的醚化产物是甘油的单,二和三叔丁基醚(MTBG,DTBG和TTBG)和异丁烯的二聚体(DIE)。其中,由于DTBG和TTBG具有更好的混合性能,因此它们是燃料混合的理想产品。不同的非均相催化剂,包括酸性离子交换树脂(例如Amberlyst 15和36),磺化的宽孔沸石(例如Beta和Y型沸石),磺化的中孔二氧化硅(例如MCM-41和SBA-15)和一些功能化的多孔材料(例如磺化花生)壳,磺化气凝胶,磺化石墨烯,球形二氧化硅负载的Hyflon已被证明具有优异的催化活性,具有完全的甘油转化和对所需醚的90 mol%以上的选择性。在这里,我们回顾了从1990年代到2015年上半年用异丁烯进行甘油醚化的研究,重点研究了非均相催化剂中的结构-性能关系。 (C)2015 Elsevier B.V.保留所有权利。

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