首页> 外文期刊>Biochemical Engineering Journal >Effectively enhancing acetone concentration and acetone/butanol ratio in ABE fermentation by a glucose/acetate co-substrate system incorporating with glucose limitation and C-acetobutylicum/S-cerevisiae co-culturing
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Effectively enhancing acetone concentration and acetone/butanol ratio in ABE fermentation by a glucose/acetate co-substrate system incorporating with glucose limitation and C-acetobutylicum/S-cerevisiae co-culturing

机译:通过凝聚与葡萄糖限制和C-丙酮丁基/ S-CEREVISIAE共同培养的葡萄糖/醋酸乙酸族族系统有效地提高了ABE发酵中的丙酮浓度和丙酮/丁醇比。共培养

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摘要

A novel glucose/acetate co-substrate system incorporating with C. acetobutylicum/S. cerevisiae co-culturing and glucose limitation was proposed and applied in ABE fermentations by C. acetobutylicum. With this strategy, acetone production was enhanced while NADH dependent butanol synthesis rate was adequately restricted by glucose limitation via decreasing initial glucose concentration in the medium and adaptively adding acetate/S. cerevisiae during solventogenic phase. Under these conditions, acetone production ability of C. acetobutylicum could be fully utilized by delaying butanol inhibition occurrence time; favorable environment for acetone production was created while incomplete ABE fermentation due to glucose limitation avoided. The proposed strategy could arbitrarily control or maximize acetone concentration and acetone/butanol ratio (A/B) in the ranges of 6-12 g/L., and 0.5-1.0, the maximum values could reach the levels of 11.74 and 1.02 which would potentially promote ABE fermentative products flexibility and bio-acetone productions using renewable biomass. The theoretical analysis of A/B ratio based on carbon mass and energy balances showed that, the maximum A/B ratio of 1.04 could be achieved when 60 g/L glucose and 12 acetate were consumed by C. acetobutylicum, which coincided with the experimental data (1.02) well. (C) 2016 Elsevier B.V. All rights reserved.
机译:一种新的葡萄糖/醋酸酯的含有C.乙酰丁酯的乙酸酯。提出了Cerevisiae共培养和葡萄糖限制,并在ABE发酵中得到了C.乙酰丁基。通过该策略,通过通过降低培养基中的初始葡萄糖浓度并自适应添加醋酸甘露酸酯,得到丙酮的产生,而丙酮产生得到充分限制的葡萄糖限制。溶剂术期间的酿酒酵母。在这些条件下,通过延迟丁醇抑制发生时间,可以充分利用丙酮的丙酮生产能力;由于葡萄糖限制,避免了由于葡萄糖限制而不完全的ABE发酵而产生丙酮生产的有利环境。所提出的策略可以任意控制或最大化丙酮浓度和丙酮/丁醇的比例(A / B),范围为6-12克/升。和0.5-1.0,最大值可达到11.74和1.02的水平使用可再生生物质潜在促进ABE发酵产品的灵活性和生物丙酮制作。基于碳质量和能量余额的A / B比的理论分析表明,当C乙酰丁基酯消耗60g / L葡萄糖和12个乙酸盐时,可以实现1.04的最大A / B比。数据(1.02)井。 (c)2016年Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Biochemical Engineering Journal》 |2017年第1期|共11页
  • 作者单位

    Jiangnan Univ Sch Biotechnol Key Lab Ind Biotechnol Minist Educ 1800 Lihu Ave Wuxi 214122 Peoples R China;

    China Shijiazhuang Pharmaceut Grp Co Ltd Shijiazhuang 050038 Peoples R China;

    Jiangnan Univ Sch Biotechnol Key Lab Ind Biotechnol Minist Educ 1800 Lihu Ave Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Biotechnol Key Lab Ind Biotechnol Minist Educ 1800 Lihu Ave Wuxi 214122 Peoples R China;

    Jiangnan Univ Sch Biotechnol Key Lab Ind Biotechnol Minist Educ 1800 Lihu Ave Wuxi 214122 Peoples R China;

    Wuhan Polytech Univ Sch Biol &

    Pharmaceut Engn Wuhan 430023 Peoples R China;

    Jiangnan Univ Sch Biotechnol Key Lab Ind Biotechnol Minist Educ 1800 Lihu Ave Wuxi 214122 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学技术;
  • 关键词

    ABE fermentation; Acetate; Bio-acetone synthesis; C. acetobutylicum; Glucose; NADH;

    机译:ABE发酵;醋酸盐;生物丙酮合成;C。 乙酰丁基;葡萄糖;NADH;

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