用于甘油酯化的纳米结构固/液酸催化剂:将负债转化为资产的关键

Nanomaterials Pub Date : 2024-03-31 DOI:10.3390/nano14070615
John Keogh, Patcharaporn Inrirai, N. Artioli, H. Manyar
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摘要

由于人们对化石燃料储量不断减少、能源需求日益增长和气候紧急情况的担忧与日俱增,当务之急是开发和应用可持续能源技术,以确保未来的能源供应,并过渡到净零排放的世界。在这种情况下,生物精炼概念在以生物柴油的形式供应生物燃料方面具有巨大的潜力。生物柴油作为一种燃料,当然可以弥补电气化或使用氢气不可行的差距,例如在重型车辆、农场和海洋运输部门。然而,生物柴油工业也会产生大量粗甘油作为副产品。由于存在多种杂质,粗甘油可能不是所有甘油衍生高价值产品的合适原料,但它非常适合甘油酯化生产甘油醋酸苷,后者应用广泛。本综述对使用纳米结构固态/液态酸催化剂进行甘油酯化的工艺,包括放大的经济可行性进行了深入探讨。本文综述的均相催化剂包括矿物酸和布氏酸性离子液体,如 SO3H 功能化离子液体和杂多酸离子液体。本文研究的异相催化剂包括固体酸催化剂,如金属氧化物、离子交换树脂、沸石和支撑型杂多酸催化剂。此外,技术经济分析研究表明,该工艺的利润很高,证实了甘油酯化作为生物炼制工业经济增值的潜在工具的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanostructured Solid/Liquid Acid Catalysts for Glycerol Esterification: The Key to Convert Liability into Assets
Owing to the growing concerns about the dwindling fossil fuel reserves, increasing energy demand, and climate emergency, it is imperative to develop and deploy sustainable energy technologies to ensure future energy supply and to transition to the net-zero world. In this context, there is great potential in the biorefinery concept for supplying drop in biofuels in the form of biodiesel. Biodiesel as a fuel can certainly bridge the gap where electrification or the use of hydrogen is not feasible, for instance, in heavy vehicles and in the farm and marine transportation sectors. However, the biodiesel industry also generates a large amount of crude glycerol as the by-product. Due to the presence of several impurities, crude glycerol may not be a suitable feedstock for all high-value products derived from glycerol, but it fits well with glycerol esterification for producing glycerol acetins, which have numerous applications. This review critically looks at the processes using nanostructured solid/liquid acid catalysts for glycerol esterification, including the economic viability of the scale-up. The homogeneous catalysts reviewed herein include mineral acids and Brønsted acidic ionic liquids, such as SO3H-functionalized and heteropoly acid based ionic liquids. The heterogeneous catalysts reviewed herein include solid acid catalysts such as metal oxides, ion-exchange resins, zeolites, and supported heteropoly acid-based catalysts. Furthermore, the techno-economic analysis studies have shown the process to be highly profitable, confirming the viability of glycerol esterification as a potential tool for economic value addition to the biorefinery industry.
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