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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Integrated production of cellulosic bioethanol and succinic acid from rapeseed straw after dilute-acid pretreatment
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Integrated production of cellulosic bioethanol and succinic acid from rapeseed straw after dilute-acid pretreatment

机译:稀释酸预处理后油菜秸秆的纤维素生物乙醇和琥珀酸的综合生产

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摘要

The aim of this study was to develop an integrated biofuel (cellulosic bioethanol) and biochemical (succinic acid) production process from rapeseed straw after dilute-acid pretreatment. Rapeseed straw pretreatment at 20% (w/v) solid loading and subsequent hydrolysis with Cellic (R) CTec2 resulted in high glucose yield (80%) and ethanol output (122-125 kg of EtOH/Mg of rapeseed straw). Supplementation the enzymatic process with 10% dosage of endoxylanases (Cellic (R) HTec2) reduced the hydrolysis time required to achieve the maximum glucan conversion by 44-46% and increased the xylose yield by 10% compared to the process with Cellic (R) CTec2. Significantly higher amounts of succinic acid were produced after fermentation of pretreatment liquor (48 kg/Mg of rapeseed straw, succinic acid yield: 60%) compared to fermentation of xylose-rich residue after ethanol production (35-37 kg/Mg of rapeseed straw, succinic yield: 68-71%). Results obtained in this study clearly proved the biorefinery potential of rapeseed straw.
机译:本研究的目的是在稀释酸预处理后,在油菜秸秆中开发一种综合生物燃料(纤维素生物乙醇)和生化(琥珀酸)生产方法。油菜秸秆预处理为20%(w / v)固体载荷和随后用细胞(r)ctec2的水解导致高葡萄糖产率(80%)和乙醇产量(122-125kg EtOH / mg油菜秸秆)。补充酶促方法10%的内氧羰基酶(Celic(R)HTEC2)降低了将最大葡聚糖转化率的水解时间降低44-46%,与细胞(R)的方法相比,将木糖产率增加10% CTEC2。与乙醇生产后的木糖 - 富含残留物发酵的预处理液(48kg / mg油菜秸秆,琥珀酸产率:60%)在乙醇生产后发酵(35-37kg / mg油菜秸秆,琥珀酸产量:68-71%)。本研究中获得的结果明确证明了油菜秸秆的生物遗产潜力。

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