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Influence of operational parameters on the fluid-side mass transfer resistance observed in a packed bed bioreactor

机译:操作参数对填充床生物反应器中观察到的流体侧传质阻力的影响

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摘要

The influence of mass transfer on productivity as well as the performance of packed bed bioreactor was determined by varying a number of parameters; flow rate, glucose concentration and polymers (chitosan). Saccharomyces cerevisiae cells were immobilized in chitosan and non-chitosan coated alginate beads to demonstrate the effect on external mass transfer by substrate consumption time, lag phase and ethanol production. The results indicate that coating has a significant effect on the lag phase duration, being 30–40 min higher than non-coated beads. After lag phase, no significant change was observed in both types of beads on consumption of glucose with the same flow rate. It was observed that by increasing flow rates; lag phase and glucose consumption time decreased. The reason is due to the reduction of external mass transfer as a result of increase in flow rate as glucose is easily transported to and from the beads surface by diffusion. It is observed that chitosan acts as barrier for transfer of substrate and products, in and out of beads, at initial time of fermentation as it shows longer lag phase for chitosan coated beads than non-coated. Glucose consumption at low flow rate was lower as compared to higher flow rates. The optimum combination of parameters consisting of higher flow rates 30–90 ml/min and between 10 and 20 g/l of glucose was found for maximum production of ethanol.
机译:传质对生产率和填充床生物反应器性能的影响是通过改变许多参数来确定的。流速,葡萄糖浓度和聚合物(壳聚糖)。将酿酒酵母细胞固定在壳聚糖和非壳聚糖包被的藻酸盐珠中,以证明通过底物消耗时间,滞后相和乙醇产生对外部传质的影响。结果表明涂层对滞后阶段的持续时间有显着影响,比未涂层的磁珠高30–40分钟。滞后阶段后,在相同流速下消耗葡萄糖后,两种类型的珠子均未观察到显着变化。据观察,通过增加流速;滞后期和葡萄糖消耗时间减少。原因是由于流速的增加导致外部传质的减少,因为葡萄糖易于通过扩散而往返于微珠表面。观察到,壳聚糖在发酵开始时充当底物和产物转移进出珠的屏障,因为它显示出壳聚糖包被的珠子比未包被的珠子更长的滞后阶段。与较高流速相比,低流速下的葡萄糖消耗较低。最佳的参数组合包括较高的流速30–90 ml / min和10至20 g / l的葡萄糖,以最大程度地产生乙醇。

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