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Advanced biodiesel production technologies: novel developments

机译:先进的生物柴油生产技术:新的发展

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Biodiesel, i.e. a mixture of monoalkyl esters of long chain fatty acids derived from renewable biological sources such as vegetable oils has in recent years emerged as an alternative fuel for transportation sector. The conventional method of producing biodiesel is through homogeneous catalytic transesterification; however, increased production costs associated with downstream purification steps have led to the development of more cost-effective and environmental friendly technologies. These advanced production technologies involve heterogeneous or enzymatic catalysts to produce biodiesel, as well as no catalysts in supercritical conditions. Heterogeneous catalytic systems can ease the separation of biodiesel from the reaction mixture along with the possibility of catalyst recovery, potentially leading to lower production costs; enzymatic catalysts give the same advantages, but transesterification can be carried out in milder conditions and with a wider range of feedstocks. Biodiesel synthesis in supercritical conditions composes another alternative to conventional methods due to higher reaction rates, shorter reaction times, and simpler biodiesel separation steps. Nevertheless, mass transfer limitations caused by diffusion problems between phases represent an hindrance for future establishment of these technologies, calling for the development of novel methods to intensify the process. These process intensification technologies include ultrasound irradiation, microwave heating, use of co-solvents, and membrane reactors. The main focus of this review is to discuss recent advances as regards to biodiesel production technologies, devoting a special attention to the use of novel catalysts, diversified feedstocks, besides an analysis of main operational parameters of transesterification processes.
机译:近年来,生物柴油,即衍生自可再生生物资源例如植物油的长链脂肪酸的单烷基酯的混合物,已经成为交通运输领域的替代燃料。生产生物柴油的常规方法是通过均相催化酯交换反应。然而,与下游纯化步骤相关的生产成本增加导致开发了更具成本效益和环境友好的技术。这些先进的生产技术涉及用于生产生物柴油的非均相或酶促催化剂,并且在超临界条件下无需催化剂。异构催化系统可以简化生物柴油从反应混合物中的分离以及催化剂回收的可能性,从而有可能降低生产成本;酶催化剂具有相同的优点,但是酯交换反应可以在较温和的条件下和使用较大范围的原料时进行。由于更高的反应速率,更短的反应时间和更简单的生物柴油分离步骤,超临界条件下的生物柴油合成构成了传统方法的另一种替代方法。然而,由相之间的扩散问题引起的传质限制代表了这些技术将来的建立的障碍,要求开发新的方法来强化该过程。这些工艺强化技术包括超声辐射,微波加热,使用助溶剂和膜反应器。这篇综述的主要重点是讨论生物柴油生产技术方面的最新进展,除了分析酯交换过程的主要操作参数外,还特别关注新型催化剂和多样化原料的使用。

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