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PRE-TREATMENT AND ENZYMATIC HYDROLYSIS OF BANANA (Musa acuminata x balbisiana) PSEUDOSTEM FOR ETHANOL PRODUCTION

机译:香蕉(Musa Acuminata X Balbisaa)预处理和酶水解,用于乙醇生产的Pseudostem

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摘要

Banana (M. acuminata x balbisiana) is an abundant lignocellulosic waste material in large plantations all over the Philippines, especially in Mindanao, which can be utilized as substrate in producing high-value products like ethanol. To compensate for the low yield based on total weight of substrate due to the high moisture content of banana pseudostem, there is the primary challenge to make the conversion of this lignocellulosic biomass into monomeric sugar and then into ethanol more efficiently in order to achieve yields that would make it cost-competitive. Hence, this study evaluated the effects of solid loading, incubation time and amount of enzyme on yield of reducing sugars in the enzymatic hydrolysis process and attempted to optimize the significant factors by Response Surface Methodology (RSM), specifically using Box-Behnken design. There was significant improvement on the reducing sugar yield of the pretreated banana pseudostem at 20 h incubation time, 15 g solid loading and 0.55 % enzyme concentration. Ethanol production was observed to be higher in the detoxified substrate although biomass was higher for the non-detoxified substrate. As to our knowledge, the present study is the first attempt to produce second generation ethanol using banana pseudostem waste as feedstock in the Philippines.
机译:香蕉(M. Acuminata X Balbisaa)是菲律宾的大型种植园中的丰富木质纤维素废料,特别是在思维岛,可作为生产高价值产物等乙醇的基材。为了弥补基于底物的总重量的低产率,由于香蕉假潜的高水分,存在主要挑战,使该木质纤维素生物质的转化为单体糖,然后更有效地将其转化为乙醇,以实现产生的产量会使它具有成本竞争力。因此,该研究评估了固体载荷,孵育时间和酶量对酶水解过程中还原糖产量的影响,并试图通过响应表面方法(RSM)优化显着因素,特别是使用Box-Behnken设计。对20小时孵育时间的预处理香蕉假刺激的降低糖产量有显着改善,15g固体载荷和0.55%酶浓度。在解毒基质中观察到乙醇产生较高,尽管非解毒基质的生物质较高。至于我们的知识,本研究首次尝试在菲律宾的原料中使用香蕉假摩擦废物生产第二代乙醇。

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