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在限氧条件下,于两种生物反应器规模下培养的固氮菌产生海藻酸盐。

Production of alginate by Azotobacter vinelandii grown at two bioreactor scales under oxygen-limited conditions.

机构信息

Escuela de Ingeniería Bioquímica, Pontificia Universidad Católica de Valparaíso, Av. Brasil 2147, 4059, Casilla, Valparaíso, Chile,

出版信息

Bioprocess Biosyst Eng. 2014 Jun;37(6):1133-40. doi: 10.1007/s00449-013-1084-2. Epub 2013 Oct 31.

Abstract

The oxygen transfer rate (OTR) was evaluated as a scale-up criterion for alginate production in 3- and 14-L stirred fermentors. Batch cultures were performed at different agitation rates (200, 300, and 600 rpm) and airflow rates (0.25, 0.5, and 1 vvm), resulting in different maximum OTR levels (OTRmax). Although the two reactors had a similar OTRmax (19 mmol L(-1) h(-1)) and produced the same alginate concentration (3.8 g L(-1)), during the cell growth period the maximum molecular weight of the alginate was 1,250 kDa in the 3-L stirred fermentor and 590 kDa in 14-L stirred fermentor. The results showed for the first time the evolution of the molecular weight of alginate and OTR profiles for two different scales of stirred fermentors. There was a different maximum specific oxygen uptake rate between the two fermenters, reaching 8.3 mmol g(-1) h(-1) in 3-L bioreactor and 10.6 mmol g(-1) h(-1) in 14-L bioreactor, which could explain the different molecular weights observed. These findings open the possibility of using [Formula: see text] instead of OTRmax as a scaling criterion to produce polymers with similar molecular weights during fermentation.

摘要

氧传递速率(OTR)被评估为在 3L 和 14L 搅拌发酵罐中生产海藻酸盐的放大标准。在不同的搅拌速度(200、300 和 600rpm)和空气流量(0.25、0.5 和 1vvm)下进行分批培养,导致不同的最大 OTR 水平(OTRmax)。尽管这两个反应器具有相似的 OTRmax(19mmolL(-1)h(-1)),并且产生相同的海藻酸盐浓度(3.8gL(-1)),但在细胞生长期间,3L 搅拌发酵罐中海藻酸盐的最大分子量为 1,250kDa,而 14L 搅拌发酵罐中为 590kDa。结果首次表明,两种不同规模搅拌发酵罐的海藻酸盐分子量和 OTR 曲线的演变。两个发酵罐之间的最大比耗氧速率不同,在 3L 生物反应器中达到 8.3mmolg(-1)h(-1),在 14L 生物反应器中达到 10.6mmolg(-1)h(-1),这可以解释观察到的不同分子量。这些发现为使用[公式:见文本]代替 OTRmax 作为在发酵过程中生产具有相似分子量的聚合物的放大标准提供了可能性。

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