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通过单独水解和发酵从大豆残渣中生产生物乙醇

Bioethanol Production from Soybean Residue via Separate Hydrolysis and Fermentation.

作者信息

Nguyen Trung Hau, Ra Chae Hun, Sunwoo In Yung, Sukwong Pailin, Jeong Gwi-Taek, Kim Sung-Koo

机构信息

Department of Biotechnology, Pukyong National University, Busan, 48513, Korea.

出版信息

Appl Biochem Biotechnol. 2018 Feb;184(2):513-523. doi: 10.1007/s12010-017-2565-6. Epub 2017 Jul 29.

Abstract

Bioethanol was produced using polysaccharide from soybean residue as biomass by separate hydrolysis and fermentation (SHF). This study focused on pretreatment, enzyme saccharification, and fermentation. Pretreatment to obtain monosaccharide was carried out with 20% (w/v) soybean residue slurry and 270 mmol/L HSO at 121 °C for 60 min. More monosaccharide was obtained from enzymatic hydrolysis with a 16 U/mL mixture of commercial enzymes C-Tec 2 and Viscozyme L at 45 °C for 48 h. Ethanol fermentation with 20% (w/v) soybean residue hydrolysate was performed using wild-type and Saccharomyces cerevisiae KCCM 1129 adapted to high concentrations of galactose, using a flask and 5-L fermenter. When the wild type of S. cerevisiae was used, an ethanol production of 20.8 g/L with an ethanol yield of 0.31 g/g consumed glucose was obtained. Ethanol productions of 33.9 and 31.6 g/L with ethanol yield of 0.49 g/g consumed glucose and 0.47 g/g consumed glucose were obtained in a flask and a 5-L fermenter, respectively, using S. cerevisiae adapted to a high concentration of galactose. Therefore, adapted S. cerevisiae to galactose could enhance the overall ethanol fermentation yields compared to the wild-type one.

摘要

以大豆残渣中的多糖为生物质原料,采用分步水解发酵法(SHF)生产生物乙醇。本研究聚焦于预处理、酶糖化和发酵过程。预处理是在121℃下,将20%(w/v)的大豆残渣浆液与270 mmol/L硫酸反应60分钟,以获得单糖。在45℃下,使用16 U/mL的商业酶C-Tec 2和Viscozyme L的混合酶进行48小时的酶水解,可获得更多单糖。使用适应高浓度半乳糖的野生型酿酒酵母和酿酒酵母KCCM 1129,在烧瓶和5-L发酵罐中对20%(w/v)的大豆残渣水解液进行乙醇发酵。当使用野生型酿酒酵母时,乙醇产量为20.8 g/L,乙醇产率为每消耗1 g葡萄糖产生0.31 g乙醇。使用适应高浓度半乳糖的酿酒酵母,在烧瓶和5-L发酵罐中分别获得了乙醇产量为33.9 g/L和31.6 g/L,乙醇产率分别为每消耗1 g葡萄糖产生0.49 g乙醇和0.47 g乙醇。因此,与野生型相比,适应半乳糖的酿酒酵母可以提高整体乙醇发酵产量。

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