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Catalytic deoxygenation of fatty acids and their derivatives to hydrocarbon fuels via decarboxylation/decarbonylation

机译:脂肪酸及其衍生物通过脱羧/脱羰基催化脱氧为烃类燃料

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摘要

Fatty acids and their derivatives can be converted to renewable and carbon-neutral fuel-like hydrocarbons that are entirely fungible with fossil fuels. Typically, these hydrocarbon-based biofuels are obtained through hydrotreating, a method which has the significant disadvantages of requiring problematic sulfided catalysts and high pressures of hydrogen. In recent years, decarboxylation/decarbonylation has been proposed as an alternative method, as this approach has the advantages of permitting the use of simpler catalysts and requiring less hydrogen than hydrotreating. In this contribution, the deoxygenation of fatty acids and their derivatives to fuel-like hydrocarbons via decarboxylation/decarbonylation is critically reviewed. The main aspects discussed include the influence of the feed, catalyst, reactor system and reaction conditions on the decarboxylation/decarbonylation reaction, as well as the reaction mechanism and catalyst deactivation/regeneration.
机译:脂肪酸及其衍生物可以转化为完全可与化石燃料替代的可再生碳中性燃料状烃。通常,这些基于烃的生物燃料是通过加氢处理获得的,加氢处理具有明显的缺点,即需要有问题的硫化催化剂和高压氢。近年来,已经提出了脱羧/脱羰基作为一种替代方法,因为这种方法的优点是允许使用比加氢处理更简单的催化剂并且需要更少的氢。在这一贡献中,对脂肪酸及其衍生物通过脱羧/脱羰基脱氧为燃料状烃的方法进行了严格审查。讨论的主要方面包括进料,催化剂,反应器系统和反应条件对脱羧/脱羰反应的影响,以及反应机理和催化剂失活/再生。

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