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首页> 外文期刊>Biotechnology for Biofuels >Biochar-mediated enhanced ethanol fermentation (BMEEF) in Zymomonas mobilis under furfural and acetic acid stress
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Biochar-mediated enhanced ethanol fermentation (BMEEF) in Zymomonas mobilis under furfural and acetic acid stress

机译:生物炭介导的糠醛和醋酸胁迫下Zymomonas Mobilis的增强乙醇发酵(BMEEF)

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Pretreatment of lignocellulosic biomass generates different types of inhibitors (e.g., furfural and acetic acid), which could remarkably inhibit subsequent ethanol fermentation. Here, biochar as an additive in the fermentation broth was first applied to enhance ethanol production by Z. mobilis wild-type strain ZM4 in the presence of typical inhibitors. This study showed that the biochar-mediated tolerance to furfural and acetic acid for the?strain Z. mobilis?ZM4 was the highest reported level, resulting in much higher ethanol productivity under stress conditions than that in non-treated conditions. Further analysis showed that adsorptive detoxification was not the controlling factor for enhanced ethanol production under stress conditions, attributed to its low removal of furfural (?20%) and incapability of acetic acid removal. When biochar was filtered from the biochar-treated inhibitor-containing broth, it still showed enhanced ethanol production. Furthermore, Z. mobilis immobilized on biochar was also observed. Thus, biochar extracts in the fermentation broth and cell immobilization on biochar might be the controlling factors for enhanced ethanol production under stress conditions. These results indicate that biochar-mediated enhanced ethanol fermentation (BMEEF) might be a promising strategy for ethanol production from lignocellulosic biomass.
机译:木质纤维素生物量的预处理产生不同类型的抑制剂(例如糠醛和醋酸),这可能显着抑制随后的乙醇发酵。这里,首先将生物炭作为发酵肉汤中的添加剂,以在典型抑制剂存在下通过Z.Mobilis野生型菌株ZM4增强乙醇产量。该研究表明,生物炭介导对糠醛和醋酸的耐受α菌株Z.Mobilis?ZM4是最高报道的水平,在胁迫条件下产生的乙醇生产率高于未处理的病症。进一步的分析表明,吸附解毒不是增强乙醇产量在应激条件下的控制因子,其归因于其低糠醛(<20%)和乙酸去除的无法消除。当从生物炭处理过的含抑制剂肉汤中过滤生物炭时,它仍然显示出增强的乙醇生产。此外,还观察到Z.Mobilis固定在生物炭上。因此,Biochar提取物在生物炭中的发酵液和细胞固定化可能是在应力条件下增强乙醇产量的控制因子。这些结果表明,生物淀粉介导的增强的乙醇发酵(BMEEF)可能是木质纤维素生物质的乙醇生产的有希望的策略。

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