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Efficient biobutanol production from potato peel wastes by separate and simultaneous inhibitors removal and pretreatment

机译:通过分离和同时抑制剂去除和预处理,从马铃薯剥离的高效生物催化剂生产

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摘要

Potato peel waste (PPW) is a carbohydrate-rich waste from potato industries, which is an environmental threat worldwide. In this study, it was evaluated for biobutanol production via acetone-butanol-ethanol fermentation by Clostridium acetobutylicum. The results showed that PPW contained a considerable amount of glycoalkaloids, severe inhibitors for the bacterium. Thus, three processes, i.e., dilute acid pretreatment (Process I), the inhibitors extraction followed by dilute acid hydrolysis (Process II) and ethanol organosolv pretreatment (Process III), were employed before hydrolysis and fermentation to produce ABE. The extraction of glycoalkaloids with ethanol, dilute acid hydrolysis at 180 degrees C for 60 min, and enzymatic hydrolysis led to a hydrolysate with 36 g/L glucose, which was successfully fermented to 11.6 g/L ABE. In process II, the organosolv pretreatment led to the removal of the major fraction of inhibitors, in the range of 77-88% of glycoalkaloids. The enzymatic hydrolysis of PPW pretreated with 75% ethanol at 180 degrees C for 60 min resulted in a fermentable hydrolysate with 38 g/L glucose. The fermentation of overall hydrolysate resulted in a high ABE concentration of 24.8 g/L, indicating that PPW is an appropriate substrate for butanol production after the removal of its bacterial inhibitors. (C) 2020 Elsevier Ltd. All rights reserved.
机译:马铃薯剥离(PPW)是来自马铃薯行业的富含碳水化合物的废物,这是全世界的环境威胁。在该研究中,通过乙酸辛丁基丁基 - 乙醇 - 乙醇 - 乙醇发酵评估生物灭菌醇生产。结果表明,PPW含有相当多的甘油碱,对细菌的严重抑制剂。因此,在水解和发酵之前使用三种方法,即稀酸预处理(方法I),抑制剂提取,然后用稀酸水解(方法II)和乙醇有机溶胶预处理(方法III),以产生ABE。用乙醇萃取乙醇,在180℃下稀释酸水解60分钟,酶水解导致水解产物36g / L葡萄糖,成功发酵至11.6g / L abe。在方法II中,有机溶胶预处理导致去除抑制剂的主要分数,在77-88%的Glycoalkaloids的范围内。 PPW的酶水解在180℃下用75%乙醇预处理60分钟,得到38g / L葡萄糖的可发酵水解产物。总水解产物的发酵产生的高ABE浓度为24.8g / L,表明PPW是除去其细菌抑制剂后的丁醇生产的适当基材。 (c)2020 elestvier有限公司保留所有权利。

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