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Bioethanol Production from Sugarcane Bagasse by Simultaneous Sacarification and Fermentation using Saccharomyces cerevisiae

机译:通过使用Saccharomyces Cerevisiae的同时囊状和发酵产生生物乙醇甘蔗渣生产

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Sugarcane bagasse (SCB) is most abundant agricultural wastes in the world. It is an attractive feedstock for the large-scale biological production of bioethanol. However, the limitation in bagase use is its high degree of complexity because of its mixed composition of extremely inhomogeneous fibers. Therefore, ethanol production from bagase is often complex, with three main steps, i.e pretreatment, sacharification, and fermentation. Here we used alkali pretreatment using delignification reactor with NaOH 1N and 1.5 bar for 2 hours. Followed by Simultaneous Sacarification and Fermentation (SSF) using Saccharomyces cerevisiae in addition of cellulase and β-glucosidase enzyme. We found that the alkaline pretreatment can decrease cellulose crystallinity, decrease lignin content up to 84.83% and increased cellulose content up to 74.29%. SSF using cellulase enzymes and combination of cellulase enzymes and β-glucosidase derived bioethanol levels respectively 5.87±0.78% and 6.83±0.07%. In conclusion these results strongly suggest that addition of β-glucosidase enzyme on alkali-pretreated bagasse increased the bioethanol production.
机译:Sugarcane Bagasse(SCB)是世界上最丰富的农业废物。它是一种有吸引力的原料,用于生物乙醇的大规模生物生产。然而,由于其混合的极其纤维的组成,Bagase使用的限制是它的高度复杂度。因此,乙醇生产的香菜均复杂,具有三个主要步骤,即预处理,奇妙和发酵。在这里,我们使用碱预处理使用NaOH 1N和1.5巴的脱氨反应器2小时。随后使用纤维素酶和β-葡糖苷酶使用酿酒酵母酿酒酵母同时囊状和发酵(SSF)。我们发现碱预处理可降低纤维素结晶度,降低木质素含量高达84.83%,纤维素含量增加高达74.29%。 SSF使用纤维素酶酶和纤维素酶和β-葡糖苷酶的组合分别为5.87±0.78%和6.83±0.07%。总之,这些结果强烈表明,在碱预处理的甘蔗渣上添加β-葡萄糖苷酶的增加增加了生物乙醇生产。

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