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Syngas fermentation by Clostridium carboxidivorans P7 in a horizontal rotating packed bed biofilm reactor with enhanced ethanol production

机译:碳氧化梭状芽孢杆菌P7在卧式旋转床生物膜反应器中发酵合成气,提高了乙醇的产量

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摘要

Gasification of lignocellulosic biomass followed by syngas fermentation is a promising process for producing fuels and chemicals. Syngas fermentation, however, is commonly limited by low mass transfer rates. In this work, a horizontally oriented rotating packed bed (h-RPB) reactor was developed to improve mass transfer and enhance ethanol production. In the h-RPB reactor, cell attachment materials were packed in the reactor and half submerged in the liquid and half exposed to the headspace. With continuous rotation of the packing materials, the cells in biofilm were alternately in contact with liquid and headspace; thus, transport of syngas to the cells occurred in both the liquid phase and headspace. The volumetric mass transfer coefficient (k(L)a) of the h-RPB reactor was lower than that in a traditional continuous stirred tank reactor (CSTR), indicating the mass transfer in the liquid phase of h-PRB was lower than CSTR, and the mass transfer in the headspace phase played an important role in syngas fermentation. The syngas fermentation of Clostridium carboxidivorans P7 in h-RPB resulted in a 7.0 g/L titer and 6.7 g/L/day productivity of ethanol, respectively, 3.3 times higher than those obtained in a CSTR under the same operational conditions. The results demonstrate that the h-RPB reactor is an efficient system for syngas fermentation, making cellulosic ethanol biorefinery one step closer to technical and economic feasibility. (C) 2016 Elsevier Ltd. All rights reserved.
机译:木质纤维素生物质的气化,然后进行合成气发酵,是生产燃料和化学品的有前途的过程。然而,合成气发酵通常受到低传质速率的限制。在这项工作中,开发了一种水平定向的旋转填充床(h-RPB)反应器,以改善传质并提高乙醇产量。在h-RPB反应器中,细胞附着材料填充在反应器中,一半浸没在液体中,一半暴露于顶部空间。随着包装材料的不断旋转,生物膜中的细胞交替接触液体和顶部空间。因此,合成气向细胞的转运在液相和液面上都发生。 h-RPB反应器的体积传质系数(k(L)a)低于传统的连续搅拌釜反应器(CSTR),表明h-PRB液相中的传质低于CSTR,顶空相的传质在合成气发酵中起重要作用。在h-RPB中,碳氧化梭状芽孢杆菌P7的合成气发酵产生的乙醇滴度分别为7.0 g / L和6.7 g / L / day,比在相同操作条件下在CSTR中获得的生产率高3.3倍。结果表明,h-RPB反应器是一种有效的合成气发酵系统,使纤维素乙醇生物精炼厂更接近技术和经济可行性。 (C)2016 Elsevier Ltd.保留所有权利。

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