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Long-term Operation of Continuous Culture of the Hyperthermophilic archaeon, Thermococcus onnurineus for Carbon Monoxide-dependent Hydrogen Production

机译:连续培养的高疗性古代植物连续培养,热电加动量为一氧化碳依赖性氢气生产

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摘要

In this study, we performed a kinetic analysis of CO-dependent H_2 production by metabolically engineered Thermococcus onnurineus NA1, MC01 in terms of the cell activity as well as mass transfer rate. We conducted continuous cultures with varying dilution rate, CO flow rate, or agitation speed. Despite oscillations in cell density, the cultures reached steady states at all operating conditions. As the dilution rate increased from 0.1 to 0.3 h~(-1), specific activity of H_2 production (SAHP) and volumetric cell production rate were linearly increased. Also, the SAHP remained almost constant at the fixed dilution rate of 0.3 h~(-1) even though the CO transfer rate was changed by adjusting the CO flow rate or the agitation speed. This relationship could be expressed as a typical Luedeking-Piret model, implying that high cell density culture with a sufficient growth rate is essential to obtain higher H_2 productivity. On the other hand, more elevated CO transfer at the same dilution rate improved H_2 production rate (HPR) by the increase of the cell density, not in the rise of SAHP. Through the continuous culture, 108 mmol/g-cell/h and 121 mmol/L/h of SAHP and HPR, respectively, could be achieved at a dilution rate of 0.3 h~(-1) with CO supply rate of 0.07 vvm and agitation speed of 700 rpm. Considering high H_2 production activity and long-term stability of the strain over 1,000 h, MC01 is confirmed to have an outstanding potential for CO-dependent H_2 production.
机译:在该研究中,我们在细胞活动方面通过代谢工程热电偶,MC01和传质率进行了由代谢工程的热电偶的同依赖性H_2产生的动力学分析。我们用不同稀释率,CO流速或搅拌速度进行连续培养物。尽管细胞密度振荡,但培养物在所有操作条件下达到稳定状态。随着稀释率从0.1至0.3h〜(-1)增加,H_2产生的特异性活性(SAHP)和体积细胞生产率线性增加。而且,即使通过调节CO流速或搅拌速度改变CO转移率,SAHP在0.3h〜(-1)的固定稀释率几乎保持恒定。这种关系可以表达为典型的Luedeking-PiRet模型,暗示具有足够生长速率的高细胞密度培养对于获得更高的H_2生产率至关重要。另一方面,通过细胞密度的增加,在相同的稀释速率下,在相同的稀释速率下,在相同的稀释速率(HPR)中,不在SaHP的升高中,更高的CO转移。通过连续培养,分别以0.3h〜(-1)的稀释率为0.07 VVM和搅拌速度为700 rpm。考虑到高H_2的生产活动和4000小时的应变的长期稳定性,确认MC01具有突出的共同依赖性H_2生产的潜在潜力。

著录项

  • 来源
    《Biotechnology and bioprocess engineering》 |2020年第3期|485-492|共8页
  • 作者单位

    Department of Biotechnology and Bioengineering Chonnam National University Gwangju 61186 Korea;

    Korea Institute of Ocean Science and Technology Busan 49111 Korea;

    Korea Institute of Ocean Science and Technology Busan 49111 Korea;

    Korea Institute of Ocean Science and Technology Busan 49111 Korea Department of Marine Biotechnology Korea University of Science and Technology Daejeon 34113 Korea;

    Korea Institute of Ocean Science and Technology Busan 49111 Korea Department of Marine Biotechnology Korea University of Science and Technology Daejeon 34113 Korea;

    Department of Chemical and Biomolecular Engineering Sogang University Seoul 04107 Korea;

    Korea Institute of Ocean Science and Technology Busan 49111 Korea Department of Marine Biotechnology Korea University of Science and Technology Daejeon 34113 Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carbon monoxide; biohydrogen production; continuous culture; hyperthermophilic archaeon; Thermococcus onnurineus;

    机译:一氧化碳;生物氢生产;连续文化;高热审理古代;热电偶onnurineus;

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