CIESC Journal

• 能源和环境工程 • 上一篇    下一篇

木块填料对高浓度乙醇连续发酵过程中振荡行为的弱化机制

陈令伟;葛旭萌;赵心清;陈丽杰;白凤武   

  1. 大连理工大学生物科学与工程系
  • 出版日期:2007-10-05 发布日期:2007-10-05

Attenuation mechanism of oscillatory behavior in highgravity continuous ethanol fermentation by wood chips

CHEN Lingwei;GE Xumeng;ZHAO Xinqing;CHEN Lijie;BAI Fengwu

  

  • Online:2007-10-05 Published:2007-10-05

摘要: 前期研究发现,添加木块填料可有效弱化管式反应器中的振荡行为,并推测其机理可能与酵母细胞的固定化、酵母细胞生长微环境的改变和管式反应器中稀释速率的改变三方面因素有关。本文实验证明了木块填料反应器的稀释率的改变不是导致振荡弱化的主要原因。进一步研究表明:一方面,与其他填料体系相比,木块填料体系不仅维持了较高的生物量浓度,而且维持了较高的细胞活性,从而具备了弱化振荡的前提条件;另一方面,与无填料体系培养出的酵母细胞相比,木块填料体系培养的酵母细胞具有较高的乙醇耐受性,从而弱化了乙醇浓度变化导致的发酵参数的大幅度波动。

Abstract:

Preliminary research indicated that oscillations of residual glucose, ethanol and biomass were effectively attenuated after the tubular bioreactors were packed with wood chips, and the corresponding mechanism was speculated to be due to cell immobilization, microenvironmental change, and change in dilution rateIn this work, the change in dilution rate was excluded from the main reason for the oscillation attenuationThrough the comparison with the performance of the tubular bioreactors packed with polyurethane particles, Raschig rings and glass beads, it was found not only high biomass concentration resulted from cell immobilization, but also most importantly, the high yeast cell viability achieved in the system packing with wood chips effectively attenuated the oscillationsFurther investigation revealed that the ethanol tolerance of yeast cells in the wood chip packing system was improved compared with that in nonpacked system, which might further contribute to the oscillation attenuation.