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The establishment of a marine focused biorefinery for bioethanol production using seawater and a novel marine yeast strain

机译:建立使用海水和新型海洋酵母菌株生产海洋乙醇的海洋生物精炼厂

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Current technologies for bioethanol production rely on the use of freshwater for preparing the fermentation media and use yeasts of a terrestrial origin. Life cycle assessment has suggested that between 1,388 to 9,812?litres of freshwater are consumed for every litre of bioethanol produced. Hence, bioethanol is considered a product with a high-water footprint. This paper investigated the use of seawater-based media and a novel marine yeast strain ‘Saccharomyces cerevisiae AZ65’ to reduce the water footprint of bioethanol. Results revealed that S. cerevisiae AZ65 had a significantly higher osmotic tolerance when compared with the terrestrial reference strain. Using 15-L bioreactors, S. cerevisiae AZ65 produced 93.50?g/L ethanol with a yield of 83.33% (of the theoretical yield) and a maximum productivity of 2.49?g/L/h when using seawater-YPD media. This approach was successfully applied using an industrial fermentation substrate (sugarcane molasses). S. cerevisiae AZ65 produced 52.23?g/L ethanol using molasses media prepared in seawater with a yield of 73.80% (of the theoretical yield) and a maximum productivity of 1.43?g/L/h. These results demonstrated that seawater can substitute freshwater for bioethanol production without compromising production efficiency. Results also revealed that marine yeast is a potential candidate for use in the bioethanol industry especially when using seawater or high salt based fermentation media.
机译:用于生物乙醇生产的当前技术依赖于使用淡水来制备发酵培养基并使用陆生酵母。生命周期评估表明,每生产一升生物乙醇,将消耗1,388至9,812升淡水。因此,生物乙醇被认为是具有高水足迹的产品。本文研究了使用海水培养基和新型海洋酵母菌株“酿酒酵母AZ65”减少生物乙醇的水足迹的方法。结果显示,与地面参考菌株相比,酿酒酵母AZ65具有明显更高的渗透耐受性。使用15-L生物反应器,酿酒酵母AZ65产生93.50?g / L乙醇,当使用海水-YPD介质时,产率为理论值的83.33%,最大生产率为2.49?g / L / h。使用工业发酵底物(糖蜜糖蜜)成功应用了该方法。酿酒酵母AZ65使用在海水中制备的糖蜜培养基生产52.23?g / L乙醇,产率为理论值的73.80%,最大生产率为1.43?g / L / h。这些结果表明,海水可以代替淡水代替生物乙醇生产,而不会影响生产效率。结果还表明,海洋酵母是用于生物乙醇行业的潜在候选者,特别是在使用海水或高盐基发酵培养基时。

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