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首页> 外文期刊>Applied Microbiology and Biotechnology >Evaluation of continuous ethanol fermentation of dilute-acid corn stover hydrolysate using thermophilic anaerobic bacterium Thermoanaerobacter BG1L1
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Evaluation of continuous ethanol fermentation of dilute-acid corn stover hydrolysate using thermophilic anaerobic bacterium Thermoanaerobacter BG1L1

机译:嗜热厌氧菌Thermoanaerobacter BG1L1对稀酸玉米秸秆水解产物连续乙醇发酵的评价

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摘要

Dilute sulfuric acid pretreated corn stover is potential feedstock of industrial interest for second generation fuel ethanol production. However, the toxicity of corn stover hydrolysate (PCS) has been a challenge for fermentation by recombinant xylose fermenting organisms. In this work, the thermophilic anaerobic bacterial strain Thermoanaerobacter BG1L1 was assessed for its ability to ferment undetoxified PCS hydrolysate in a continuous immobilized reactor system at 70°C. The tested strain showed significant resistance to PCS, and substrate concentrations up to 15% total solids (TS) were fermented yielding ethanol of 0.39–0.42 g/g-sugars consumed. Xylose was nearly completely utilized (89–98%) for PCS up to 10% TS, whereas at 15% TS, xylose conversion was lowered to 67%. The reactor was operated continuously for 135 days, and no contamination was seen without the use of any agent for preventing bacterial infections. This study demonstrated that the use of immobilized thermophilic anaerobic bacteria for continuous ethanol fermentation could be promising in a commercial ethanol process in terms of system stability to process hardiness and reactor contamination. The tested microorganism has considerable potential to be a novel candidate for lignocellulose bioconversion into ethanol.
机译:稀硫酸预处理的玉米秸秆是第二代燃料乙醇生产的工业潜在原料。然而,玉米秸秆水解产物(PCS)的毒性对于重组木糖发酵生物的发酵一直是挑战。在这项工作中,评估了嗜热厌氧细菌菌株Thermoanaerobacter BG1L1在70°C的连续固定反应器系统中发酵未脱氧的PCS水解产物的能力。所测试的菌株显示出对PCS的显着抗性,并且发酵了高达15%的总固体(TS)的底物浓度,产生的乙醇消耗量为0.39–0.42 g / g糖。木糖几乎完全被PCS使用(89-98%),TS高达10%,而TS为15%时,木糖转化率降低到67%。该反应器连续运行135天,在不使用任何防止细菌感染的试剂的情况下,没有发现污染。这项研究表明,固定化的嗜热厌氧细菌用于乙醇的连续发酵在商业乙醇工艺中,从对过程坚固性和反应器污染的系统稳定性方面看,是很有希望的。被测微生物具有很大的潜力,可以成为木质纤维素生物转化为乙醇的新候选者。

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