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Succinic acid-producing biofilms of Actinobacillus succinogenes: reproducibility, stability and productivity

机译:产琥珀酸放线杆菌的琥珀酸生物膜:重现性,稳定性和生产率

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Continuous anaerobic fermentations were performed in a biofilm reactor packed with Poraver~? beads. Dilution rates (D) varied between 0.054 and 0.72 h~(-1), and D-glucose and CO_2 gas were used as carbon substrates. Steady-state conditions were shown to be repeatable and independent of the operational history. Production stability was achieved over periods exceeding 80 h at values of D below 0.32 h~(-1). In these situations, steady-state variation (expressed as fluctuations in NaOH neutralisation flow rates) exhibited a standard deviation of less than 5 % while no indication of biofilm deactivation was detected. The total biomass amount was found to be independent of the dilution rate with an average dry concentration of 23.8± 2.9 g L~(-1) obtained for all runs. This suggests that the attachment area controls the extent of biofilm accumulation. Specific succinic acid (SA) productivities, based on the total biomass amount, exhibited a substantial decrease with decreasing D. An SA volumetric productivity of 10.8 g L~(-1) h~(-1) was obtained at D=0.7 h~(-1)—the highest value reported to date in Actinobacillus succinogenes fermentations. SA yields on glucose increased with decreasing D, with a yield of 0.90±0.01 g g~(-1) obtained at a D of 0.054 h~(-1). Production of formic acid approached zero with decreasing D, while the succinic to acetic acid ratio increased with decreasing D, resulting in an increasing SA yield on glucose.
机译:在装有Poraver®的生物膜反应器中进行连续厌氧发酵。珠子。稀释率(D)在0.054和0.72 h〜(-1)之间变化,D-葡萄糖和CO_2气体用作碳底物。稳态条件被证明是可重复的,并且与运行历史无关。在D值低于0.32h〜(-1)的情况下,在超过80小时的时间内达到了生产稳定性。在这些情况下,稳态变化(表示为NaOH中和流速的波动)的标准偏差小于5%,而未检测到生物膜失活的迹象。发现所有操作中的总生物量与稀释率无关,平均干浓度为23.8±2.9 g L〜(-1)。这表明附着面积控制生物膜积累的程度。丁二酸(SA)的特定生产率(基于总生物量)随着D的降低而显着下降。在D = 0.7 h〜时,SA的容积生产率为10.8 g L〜(-1)h〜(-1)。 (-1)-琥珀酸放线杆菌发酵迄今为止报道的最高值。葡萄糖的SA产量随D的降低而增加,在D为0.054 h〜(-1)时获得0.90±0.01 g g〜(-1)。甲酸的产生随着D的降低而接近于零,而琥珀酸与乙酸的比率随着D的降低而增加,从而导致葡萄糖的SA产量增加。

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