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Comparison of physicochemical pretreatments of banana peels for bioethanol production

机译:香蕉皮物理化学预处理生产生物乙醇的比较

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摘要

Pretreatments with different concentrations of sulfuric acid (0, 0.5, and 1% v/v) and temperatures (28 and 121 °C at 103 kPa in an autoclave) were performed on banana peels (BP) milled by mechanical grinding and grinding in a blender as well as without grinding. Cellulose, hemicellulose, lignin, ash, and total and reducing sugar contents were evaluated. The highest yields of cellulose enzymatic hydrolysis (99%) were achieved with liquefied autoclaved BP treated with 0.5 and 1% acid after 48 h of hydrolysis. Ethanol production by Kluyveromyces marxianus fermentation was assayed using hydrolyzed BP at 10, 15, and 20% (w/w). The highest ethanol level (21 g/L) was reached after 24 h of fermentation with 20% (w/w) BP. Kinetics of the consumption of reducing sugars under this fermentation condition demonstrates the presence of a lag period (about 8 h). Thus, BP are a good source for ethanol production.
机译:在香蕉皮(BP)上通过机械研磨和在研磨机中研磨,用不同浓度的硫酸(0、0.5和1%v / v)和温度(在103kPa下在28和121°C下进行预处理)进行预处理。搅拌器以及不进行研磨。评估了纤维素,半纤维素,木质素,灰分以及总糖和还原糖的含量。水解48小时后,用0.5和1%酸处理的液化高压灭菌BP可以实现最高的纤维素酶水解产率(99%)。使用水解,10%,15%和20%(w / w)的BP测定马克斯克鲁维酵母发酵产生的乙醇。发酵24小时后,以20%(w / w)的BP达到最高乙醇水平(21 g / L)。在此发酵条件下消耗还原糖的动力学表明存在滞后时间(约8小时)。因此,BP是生产乙醇的良好来源。

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