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Effect of immobilized cells in calcium alginate beads in alcoholic fermentation

机译:海藻酸钙珠固定化细胞在酒精发酵中的作用

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摘要

Saccharomyces cerevisiae cells were immobilized in calcium alginate and chitosan-covered calcium alginate beads and studied in the fermentation of glucose and sucrose for ethanol production. The batch fermentations were carried out in an orbital shaker and assessed by monitoring the concentration of substrate and product with HPLC. Cell immobilization in calcium alginate beads and chitosan-covered calcium alginate beads allowed reuse of the beads in eight sequential fermentation cycles of 10 h each. The final concentration of ethanol using free cells was 40 g L-1 and the yields using glucose and sucrose as carbon sources were 78% and 74.3%, respectively. For immobilized cells in calcium alginate beads, the final ethanol concentration from glucose was 32.9 ± 1.7 g L-1 with a 64.5 ± 3.4% yield, while the final ethanol concentration from sucrose was 33.5 ± 4.6 g L-1 with a 64.5 ± 8.6% yield. For immobilized cells in chitosan-covered calcium alginate beads, the ethanol concentration from glucose was 30.7 ± 1.4 g L-1 with a 61.1 ± 2.8% yield, while the final ethanol concentration from sucrose was 31.8 ± 6.9 g L-1 with a 62.1 ± 12.8% yield. The immobilized cells allowed eight 10 h sequential reuse cycles to be carried out with stable final ethanol concentrations. In addition, there was no need to use antibiotics and no contamination was observed. After the eighth cycle, there was a significant rupture of the beads making them inappropriate for reuse.
机译:将酿酒酵母细胞固定在藻酸钙和壳聚糖覆盖的藻酸钙珠粒中,并在葡萄糖和蔗糖发酵中研究了乙醇的生产。分批发酵在轨道振荡器上进行,并通过用HPLC监测底物和产物的浓度进行评估。将细胞固定在海藻酸钙珠粒和壳聚糖覆盖的海藻酸钙珠粒中可以使珠粒在每个10小时的八个连续发酵周期中重复使用。使用游离细胞的乙醇终浓度为40 g L -1 ,以葡萄糖和蔗糖为碳源的产率分别为78%和74.3%。对于固定在藻酸钙珠中的细胞,来自葡萄糖的乙醇终浓度为32.9±1.7克L -1 ,收率为64.5±3.4%,而来自蔗糖的乙醇终浓度为33.5±4.6克。 -1 的产率为64.5%±8.6%。对于固定有壳聚糖的海藻酸钙珠粒中的细胞,葡萄糖中的乙醇浓度为30.7±1.4 g L -1 ,产率为61.1±2.8%,而蔗糖中的最终乙醇浓度为31.8±6.9 g L -1 的产率为62.1%±12.8%。固定的细胞允许在稳定的最终乙醇浓度下进行八个10小时的顺序重用循环。另外,不需要使用抗生素,也没有观察到污染。在第八个循环之后,珠子明显破裂,使它们不适合重复使用。

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