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Porous Silicon-Based Catalysts for the Dehydration of Glycerol to High Value-Added Products

机译:多孔硅基催化剂用于甘油脱水成高附加值产品

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摘要

Increasing worldwide biodiesel production has led to the generation of an important glycerol surplus, which needs to be valorized in order to improve the economic and environmental sustainability of the biodiesel industry. In this context, glycerol dehydration to acrolein by acid catalysis appears to be a potential route of glycerol valorization, since acrolein is an important intermediate for many chemical industries. The main drawback of this catalytic process is catalyst deactivation. Different alternatives have been proposed for overcoming it, such as the use of mesoporous materials in order to facilitate the diffusion of glycerol and reaction products, thus minimizing deactivation. This review compiles the main achievements of the use of mesoporous silica-containing materials that have been deployed either as a catalyst or for support in glycerol dehydration to acrolein. Thus, the effect of mesoporosity on both catalytic performance and deactivation will be discussed, as well as the blocking of pores by coke deposition.
机译:全球生物柴油产量的增加导致重要的甘油过剩的产生,为了提高生物柴油行业的经济和环境可持续性,需要对其进行估价。在这种情况下,由于酸是许多化学工业的重要中间体,因此通过酸催化将甘油脱水为丙烯醛是一种潜在的甘油增价途径。该催化过程的主要缺点是催化剂失活。已经提出了用于克服它的不同替代方案,例如使用中孔材料以促进甘油和反应产物的扩散,从而使失活最小化。这篇综述汇编了使用中孔含二氧化硅材料的主要成就,该材料已被用作催化剂或用于甘油脱水制丙烯醛的载体。因此,将讨论介孔性对催化性能和失活的影响,以及由于焦炭沉积造成的孔阻塞。

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