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首页> 外文期刊>Biochemical Engineering Journal >Unraveling continuous 2G ethanol production from xylose using hemicellulose hydrolysate and immobilized superior recombinant yeast in fixed-bed bioreactor
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Unraveling continuous 2G ethanol production from xylose using hemicellulose hydrolysate and immobilized superior recombinant yeast in fixed-bed bioreactor

机译:使用半纤维素水解酸盐和固定的固定床生物反应器中的外纤维素中的连续2g乙醇生产。

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摘要

Development of a robust and competitive process for second generation (2G) ethanol production requires efficient fermentation of both glucose and xylose fractions generated after biomass pretreatment and saccharification, using industrial media containing high sugars concentration and inhibitors, under prolonged exposure to high ethanol titers. Thus, it is important to study the influence of these industrial operation conditions on yeast fermentation performance, which has been little addressed in the literature. In this work we evaluated the steady-state stability of continuous 2G ethanol production from xylose in a fixed bed reactor. The bioreactor was packed with recombinant, xylose-utilizing Saccharomyces cerevisiae cells entrapped in calcium alginate and it was operated with different inlet xylose concentrations and dilution rates. Medium supplementation with nutrients and scheduled washing steps were effective in maintaining high xylose conversion levels during continuous fermentation for more than 15 days with an ethanol productivity of 5.0 g/L.h. Effects of prolonged exposure to ethanol and inhibitors present in undetoxified hydrolysate were further investigated in repeated batches. Overall, the results show that improved ethanol tolerance in recombinant yeasts and innovative solutions to increase sugar concentration in the hydrolysates are the main challenges to achieve a feasible industrial process for 2 G ethanol production.
机译:开发第二代(2G)乙醇生产的稳健和竞争方法需要在延长含有高糖浓度和抑制剂的工业介质的生物量预处理和糖化后产生葡萄糖和木糖级分的有效发酵,但在长时间暴露于高乙醇滴度。因此,研究这些工业运作条件对酵母发酵绩效的影响非常重要,这在文献中几乎没有解决。在这项工作中,我们评估了在固定床反应器中的木糖中连续2g乙醇生产的稳态稳定性。将生物反应器填充有重组,利用捕获藻酸钙的酿酒酵母细胞的木糖反应器,并用不同的入口木糖浓度和稀释率进行操作。培养的补充具有营养物质和预定的洗涤步骤可有效在连续发酵过程中保持高的木糖转化水平超过15天,乙醇生产率为5.0g / l.h。在重复批次中进一步研究了长期暴露于未溶解的水解产物中存在的乙醇和抑制剂的影响。总体而言,结果表明,改善重组酵母的乙醇耐受性和提高水解产物中糖浓度的创新溶液是实现2克乙醇生产的可行工业过程的主要挑战。

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