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Advances in direct transesterification of microalgal biomass for biodiesel production

机译:微藻生物质直接酯交换生产生物柴油的研究进展

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Microalgae biomass is becoming an interesting raw material to produce biodiesel, where several approaches in the transesterification process have been applied such as different catalysts, different acyl acceptors, incorporation of co-solvents and the different operational conditions. However there are some drawbacks that must be solved before any industrial application could be intended. The main problems are related with the high water content of the biomass (over 80 %) and the several process steps involved in biodiesel production such as: drying, cell disruption, oils extraction, transesterification and biodiesel refining. In comparison to other alternatives, the use of direct transesterification could be a suitable alternative since cell disruption, lipids extraction and transesterification are carried out in one step, with a direct reaction of oil-bearing biomass to biodiesel. This process could be applied even using biomass with high water content, and its efficiency could be improved by the incorporation of promising technologies such as microwave or ultrasonication that can enhance the mass transfer rate between immiscible phases, simultaneously diminishing the reaction time. However, it is still necessary to decrease the costs of these technologies so they can be suitable alternatives in future industrial applications.
机译:微藻生物质正成为生产生物柴油的有趣原料,在酯交换过程中已采用了几种方法,例如不同的催化剂,不同的酰基受体,共溶剂的掺入和不同的操作条件。但是,在打算进行任何工业应用之前,必须解决一些缺陷。主要问题与生物质的高水分含量(超过80%)以及生物柴油生产中涉及的几个工艺步骤有关,例如:干燥,细胞破碎,油提取,酯交换和生物柴油精制。与其他替代方法相比,直接酯交换反应可能是一种合适的替代方法,因为细胞破碎,脂质提取和酯交换反应是一步进行的,含油生物质与生物柴油直接反应。即使使用含水量高的生物质,也可以应用此工艺,并且可以通过引入有前途的技术(例如微波或超声处理)来提高其效率,该技术可以提高不混溶相之间的传质速率,同时缩短反应时间。但是,仍然有必要降低这些技术的成本,以便它们可以成为未来工业应用中的合适替代方案。

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