木薯皮废弃物利用活动单胞菌酶解发酵生产生物乙醇的潜力

Nur Umriani Permatasari, Seniwati Dali, Eka Sry Wahyuni
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引用次数: 0

摘要

木薯是印度尼西亚最广泛生产的农产品之一,木薯皮浪费占20%。木薯皮含有碳水化合物和高纤维素含量,因此它有可能成为生物乙醇。本研究旨在利用木薯果皮废弃物,通过碱预处理、纤维素酶水解和活动单胞菌发酵生产生物乙醇。采用14% NaOH碱性预处理水解木质纤维素。利用二硝基水杨酸法(DNS)和紫外分光光度仪对葡萄糖水平进行分析,确定水解pH为2 ~ 10,水解温度为30 ~ 70℃的最佳条件。采用表面响应法(RSM)确定发酵过程的最佳条件。pH值测量范围为2-10,发酵时间为6 - 168小时。研究结果表明,木质素含量为6.68% (b/b),纤维素含量为58.4% (b/b),半纤维素含量为27.3% (b/b)。最佳水解条件为:pH为2,水解温度为50℃,葡萄糖浓度为9.22mg/mL。最佳发酵条件为pH为6的活动单胞菌,发酵时间为168 h,折光仪分析所得生物乙醇含量为37.75% (v/v),气相色谱分析所得生物乙醇含量为54.94% (v/v)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential Cassava Peel Waste (Manihot esculenta Crantz) in The Production of Bioethanol by Enzymatic Hydrolysis and Fermentation Using Zymomonas mobilis Bacteria
Cassava is one of the most widely produced agricultural products in Indonesia with cassava peel waste of 20%. Cassava peel contains carbohydrates and stores a high cellulose content so that it has a potential to be a bioethanol. This study aims to utilize cassava peel waste for bioethanol production with an alkaline pretreatment process, cellulase enzyme hydrolysis and fermentation by using Zymomonas mobilis bacteria. Alkaline pretreatment with 14% NaOH is used to hydrolyze lignocellulose. The hydrolysis optimization process enzymatically applies the Surface Response Method (RSM) to determine the optimum conditions at hydrolysis pH in the range of 2-10 and hydrolysis temperature in the range of 30-70 °C by analyzing glucose levels using the Dinitrosalicylic Acid (DNS) method and UVvis spectrophotometry instruments. Surface Response Method (RSM) is likewise implemented to decide the greatest conditions of the fermentation process. The pH measurement ranges 2-10, and fermentation time takes 6 to 168 hours. Based on the results of research, it results a lignin content of 6.68% (b/b), cellulose content of 58.4% (b/b), and hemicellulose content of 27.3% (b/b). The optimum conditions of the hydrolysis process obtained an optimum glucose level of 9.22mg/mL at pH 2 and a hydrolysis temperature of 50°C. The optimum conditions of the fermentation process use Zymomonas mobilis at pH 6 while fermentation time takes 168 hours analyzed using a refractometer produced a bioethanol content of 37.75% (v/v) and a gas chromatography produced a bioethanol content of 54.94% (v/v).
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