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Gluconic acid production under varying fermentation conditions by Aspergillus spp.

机译:曲霉菌在不同的发酵条件下生产葡萄糖酸。

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The production of gluconic acid with respect to varying substrate concentrations in submerged (SmF), surface (SF) fermentations was analyzed. Under the various fermentation conditions the biomass and specific growth rate varied with different concentrations of glucose. The effects of pH, temperature, incubation time and concentrations of carbon were tested in submerged fermentation process in production of gluconic acid by Aspergillus spp. The highest level of gluconic acid was obtained under SmF conditions. In all cases the maximum degree of gluconic acid conversion was observed at on initial substrate concentration of 10gm/100ml. The rate of glucose uptake increased on increasing the initial glucose concentration and glucose utilization was observed to be highest in the SmF process and was comparable with the SSF and SF processes. Themaximumrate of cell growth was obtained in all processes at an initial glucose concentration of 10gm. But in comparison to glucose, sucrose ismore effective than glucose. The gluconic acid production and change in pH were analyzed at varying time intervals and it was observed that the SmF and SF processes were completed within 5 days of incubation whereas the highest yield was observed after 3rd day of incubation and continued thereafter in the SmF process. The increase in production of gluconic acid corresponds to the increase in cell growth instead of Glucose Oxidase (GOD) activity.
机译:分析了在淹没式(SmF),表面(SF)发酵中葡萄糖酸相对于不同底物浓度的产生。在各种发酵条件下,生物质和比生长速率随葡萄糖浓度的不同而变化。在曲霉属发酵法生产葡萄糖酸的深层发酵过程中,测试了pH,温度,孵育时间和碳浓度的影响。在SmF条件下获得了最高水平的葡萄糖酸。在所有情况下,在初始底物浓度为10gm / 100ml时都观察到最大的葡萄糖酸转化度。葡萄糖摄取率随着初始葡萄糖浓度的增加而增加,并且在SmF过程中观察到葡萄糖利用率最高,并且与SSF和SF过程相当。在所有过程中,初始葡萄糖浓度为10gm时,细胞的生长均达到最大。但是与葡萄糖相比,蔗糖比葡萄糖更有效。在不同的时间间隔分析葡糖酸的产生和pH的变化,并且观察到SmF和SF过程在温育的5天内完成,而在温育的第3天观察到最高产量,并且此后在SmF过程中继续。葡萄糖酸产量的增加对应于细胞生长的增加,而不是葡萄糖氧化酶(GOD)活性。

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