Villegas E, Aubague S, Alcantara L, Auria R, Revah S
Universidad Autónoma Metropolitana - Iztapalapa, Departamento de Ingeniería de Procesos e Hidráulica, Apdo. Postal 55-5334 09340, México.
Biotechnol Adv. 1993;11(3):387-97. doi: 10.1016/0734-9750(93)90008-b.
The effect of the partial pressure of O(2) and CO(2) on the acid protease production in solid state fermentation by Aspergillus niger on wheat bran was studied. A fermentation system was used, which allowed on-line reactor measurements and continuous data acquisition of pH, temperature, gas flow, pressure drop and CO(2) production. Six paired combinations of CO(2) and O(2) concentrations were studied. The results showed a direct relationship between pressure drop, production of CO(2) and temperature increase. The pH evolution patterns were similar in all cases but different if the measurements were made on-line or on a liquid homogenate of the fermented substrate. Acid protease production was increased when the gas had 4% CO(2), (vol/vol), and it reached its highest level, a 43% increase over air, with a mixture of 4% CO(2) and 21% O(2). The protease production was strongly related to the mold metabolic activity as represented by the total CO(2) evolved.
研究了O₂和CO₂分压对黑曲霉在麦麸上固态发酵产酸性蛋白酶的影响。采用了一种发酵系统,该系统能够在线测量反应器参数,并连续采集pH值、温度、气体流量、压降和CO₂产量的数据。研究了CO₂和O₂浓度的六种配对组合。结果表明,压降、CO₂产量和温度升高之间存在直接关系。在所有情况下,pH值的变化模式相似,但如果在线测量或对发酵底物的液体匀浆进行测量,则有所不同。当气体中含有4%(体积/体积)的CO₂时,酸性蛋白酶产量增加,在4% CO₂和21% O₂的混合气体条件下,产量达到最高水平,比空气条件下增加了43%。蛋白酶产量与以总CO₂释放量表示的霉菌代谢活性密切相关。