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Prospects and Challenges of Microwave-Combined Technology for Biodiesel and Biolubricant Production through a Transesterification: A Review

机译:微波合并技术对生物柴油和生物润滑剂生产技术的展望与校准通过替代方法:综述

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摘要

Biodiesels and biolubricants are synthetic esters produced mainly via a transesterification of other esters from bio-based resources, such as plant-based oils or animal fats. Microwave heating has been used to enhance transesterification reaction by converting an electrical energy into a radiation, becoming part of the internal energy acquired by reactant molecules. This method leads to major energy savings and reduces the reaction time by at least 60% compared to a conventional heating via conduction and convection. However, the application of microwave heating technology alone still suffers from non-homogeneous electromagnetic field distribution, thermally unstable rising temperatures, and insufficient depth of microwave penetration, which reduces the mass transfer efficiency. The strategy of integrating multiple technologies for biodiesel and biolubricant production has gained a great deal of interest in applied chemistry. This review presents an advanced transesterification process that combines microwave heating with other technologies, namely an acoustic cavitation, a vacuum, ionic solvent, and a supercritical/subcritical approach to solve the limitations of the stand-alone microwave-assisted transesterification. The combined technologies allow for the improvement in the overall product yield and energy efficiency. This review provides insights into the broader prospects of microwave heating in the production of bio-based products.
机译:生物柴油和生物润滑剂是一种合成酯,主要通过来自生物基资源的其他酯的酯交换,例如植物的油或动物脂肪。微波加热已经通过将电能转化为辐射来增强酯交换反应,成为由反应物分子获得的内部能量的一部分。与通过导通和对流的常规加热相比,该方法导致主要能量节省,并将反应时间降低至少60%。然而,单独的微波加热技术的应用仍然存在非均匀电磁场分布,热不稳定的上升温度,并且微波穿透深度不足,这降低了传质效率。整合多种生物柴油和生物润滑剂生产技术的策略已经获得了应用化学的大量兴趣。本综述提出了一种先进的酯交换过程,将微波加热与其他技术相结合,即声学空化,真空,离子溶剂和超临界/亚临界方法,以解决独立的微波辅助酯交换的限制。组合技术允许改善整体产品产量和能效。本综述提供了对Microvave加热的更广泛前景的见解,在生产生物的产品中的生产中。

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