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Advances in Enzyme and Ionic Liquid Immobilization for Enhanced in MOFs for Biodiesel Production

机译:酶和离子液体固定化的研究进展用于增强的生物柴油生产

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摘要

Biodiesel is a promising candidate for sustainable and renewable energy and extensive research is being conducted worldwide to optimize its production process. The employed catalyst is an important parameter in biodiesel production. Metal–organic frameworks (MOFs), which are a set of highly porous materials comprising coordinated bonds between metals and organic ligands, have recently been proposed as catalysts. MOFs exhibit high tunability, possess high crystallinity and surface area, and their order can vary from the atomic to the microscale level. However, their catalytic sites are confined inside their porous structure, limiting their accessibility for biodiesel production. Modification of MOF structure by immobilizing enzymes or ionic liquids (ILs) could be a solution to this challenge and can lead to better performance and provide catalytic systems with higher activities. This review compiles the recent advances in catalytic transesterification for biodiesel production using enzymes or ILs. The available literature clearly indicates that MOFs are the most suitable immobilization supports, leading to higher biodiesel production without affecting the catalytic activity while increasing the catalyst stability and reusability in several cycles.
机译:生物柴油是可持续和可再生能源的有希望的候选人,并在全球范围内进行广泛的研究,以优化其生产过程。所用催化剂是生物柴油生产中的重要参数。金属有机框架(MOF),其是一组高度多孔材料,包括金属和有机配体之间的配位键,最近被提出为催化剂。 MOFS表现出高可调性,具有高结晶度和表面积,并且它们的顺序可以从原子变化到微观水平。然而,它们的催化位点被限制在其多孔结构内,限制了它们对生物柴油产生的可达性。通过固定酶或离子液体(ILS)来改变MOF结构,可以是这种攻击的溶液,可导致更好的性能并提供具有更高活性的催化系统。本综述编制了使用酶或ILS对生物柴油生产的催化酯交换化的最新进展。可用文献清楚地表明MOF是最合适的固定支撑件,导致更高的生物柴油生产而不影响催化活性,同时在几个循环中提高催化剂稳定性和可重用性。

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