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Ethanol production from sugarcane bagasse: Use of different fermentation strategies to enhance an environmental-friendly process

机译:用甘蔗渣生产乙醇:使用不同的发酵策略来增强环境友好型工艺

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Ethanol production by simultaneous saccharification and fermentation (SSF) using sugarcane bagasse as substrate was developed using batch and fed-batch mode. Acid, alkali, hydrothermal and hydrogen peroxide pre treatments to the sugarcane bagasse were tested. Experiments were carried out to optimize the enzyme load of cellulases and beta-glucosidase. Four strains, two of Saccharomyces cerevisiae and two of Kluyveromyces marxianus yeast species were evaluate using SSF to produce ethanol. A kinetic study in bioreactor was carried out to optimize the SSF. The batch process was optimized using 1.0 g/L of inoculum, 15.0 FPU/g cellulose of cellulases and 6.0% of initial cellulose reaching 92.0% of theoretical ethanol yield after 18 h using the bagasse pretreate by acid-alkali and S. cerevisiae PE-2. The fed-batch process with enzyme load three times lower than that was used in batch process, obtained 88% of theoretical ethanol yield in 40 h. Therefore, the use of the lignocellulosic biomass (sugarcane bagasse) for producing a biofuel (ethanol) reduces the need for oil and is an environmental-friendly process.
机译:使用分批补料和分批补料模式,开发了以甘蔗渣为底物通过同时糖化和发酵(SSF)生产乙醇的技术。测试了对甘蔗渣进行酸,碱,水热和过氧化氢的预处理。进行实验以优化纤维素酶和β-葡萄糖苷酶的酶负荷。使用SSF评估了四个菌株,其中两个是酿酒酵母,两个是马克斯克鲁维酵母酵母菌种,可生产乙醇。在生物反应器中进行了动力学研究,以优化SSF。使用酸碱和酿酒酵母PE-对甘蔗渣进行预处理,在18 h后,使用1.0 g / L接种物,15.0 FPU / g纤维素酶和6.0%初始纤维素达到理论乙醇产率的92.0%来优化分批工艺。 2。酶分批补料分批工艺比分批工艺低三倍,在40小时内可获得理论乙醇产率的88%。因此,使用木质纤维素生物质(蔗糖蔗渣)生产生物燃料(乙醇)减少了对石油的需求,并且是一种环境友好的过程。

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