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The use of alternative solvents in enzymatic biodiesel production: a review

机译:在酶生物柴油生产中使用替代溶剂:综述

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Biodiesel produced from oil-rich feedstocks is known as a green replacement for conventional petroleum diesel. Transesterification is the common method used for biodiesel production. The enzymatic biodiesel production, using lipases, has recently been receiving extensive attention, due to its advantages over conventional alkali catalyzed process. The lipases can work at mild operating conditions, thus requiring less energy, with the ability to catalyze both triglycerides and free fatty acids (FFAs) from different oil sources, requiring fewer post-production steps. Among the process challenges that face this process is the inhibition of the lipase with excessive use of alcohols, resulting in a decrease in biodiesel yield. The use of organic solvents, as a reaction medium, becomes essential in this case. However, most organic solvents are toxic and volatile with harmful impacts on the environmental. In addition, with the use of volatile organic solvents, an additional unit is required to separate them from the products, for the purification of the product and recycling of the solvent. In this paper, the prospect of using alternative solvents, specifically supercritical carbon dioxide (SC-CO2) and ionic liquids (ILs), in enzymatic biodiesel production is presented. The properties of these alternative solvents, their advantages over organic solvents, factors affecting lipases activity and stability in these solvents, and the challenges facing process commercialization are discussed. (c) 2016 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:由富含石油原料生产的生物柴油被称为传统石油柴油的绿色替代品。酯交换是用于生物柴油生产的常用方法。使用脂肪酶的酶促生物柴油生产最近由于其优于传统碱催化方法而受到广泛的关注。脂肪酶可以在温和的操作条件下工作,从而需要较少的能量,能够催化来自不同油源的甘油三酯和游离脂肪酸(FFA),需要较少的后产步骤。在面临该过程的过程挑战中,抑制脂肪酶具有过度使用醇,导致生物柴油产量的降低。在这种情况下,使用有机溶剂作为反应介质。然而,大多数有机溶剂具有毒性和挥发性,对环境有害影响。另外,通过使用挥发性有机溶剂,需要另外的单元来将它们与产品分离,以纯化产物和溶剂的再循环。本文介绍了酶促生物柴油生产中使用替代溶剂,特别是超临界二氧化碳(SC-CO2)和离子液体(ILS)的前景。讨论了这些替代溶剂的性质,它们对有机溶剂的优点,这些溶剂在这些溶剂中影响脂肪酶活性和稳定性的因素,以及面对工艺商业化的挑战。 (c)2016化学工业协会和约翰瓦里和儿子有限公司

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