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Economic analysis of microalgae biodiesel production in a small-scale facility

机译:小型设施中微藻生物柴油生产的经济学分析

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Industrial production and commercialization of biodiesel from microalgae have become a good alternative to conventional feedstock. Microalgae show high growth rate and carbon sequestration and can be easily cultivate in fresh and/or marine water, using non-arable soil. This study aims to analyze the technical and economic feasibility of biodiesel production from Phaeodactylum tricornutum , using an algae biomass production scaled-up scenario, considering local reality prices and available technologies. The model assumes 80,000 m 3 of microalgae cultivation, in a set of bubble column photobioreactors installed on 15.247 ha of land, reaching a total of 1,811 tons of microalgae biomass and 171,705 L of biodiesel per year. The production cost estimated for microalgae biomass is 2.01 €?kg ?1 and for biodiesel is 0.33 €?L ?1 . The ROI calculated for the project is 10% with a 10 years’ payback time and an EBITDA of 588,139 €?year ?1 . Despite the project’s viability in the medium term, the cost of producing microalgae biodiesel remains high when compared to fossil fuels. Thus, unless greater technological maturity is achieved to make the process more economical, it will not be viable in the short term.
机译:从微藻生物柴油的工业生产和商业化已成为常规原料的替代品。微藻表现出高生长速率和碳封存,可以使用不可耕地的土壤易于培养新鲜和/或海水。本研究旨在利用藻类生物量生产缩小情景,分析从Phaeodactylum Tricornutum的生物柴油生产的技术和经济可行性,考虑到当地现实价格和可用技术。该模型假设80,000平方米的微藻培养,在一组泡柱光生物反应器中安装在15.247公顷的土地上,每年达到1,811吨微藻生物量和171,705升生物柴油。估计的微藻生物量的生产成本为2.01€?kg?1和生物柴油为0.33€?l?1。为该项目计算的投资回报率为10%,回报时间为10年,EBITDA为588,139€?一年?1。尽管项目在中期的可行性,但与化石燃料相比,生产微藻生物柴油的成本仍然很高。因此,除非实现了更大的技术成熟,否则使过程更经济,否则在短期内不会有可行的。

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