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Development of Re-Usable Yeast-Gellan Gum Micro-Bioreactors for Potential Application in Continuous Fermentation to Produce Bio-Ethanol

机译:可重复使用的酵母胶琼脂胶微生物反应器的开发可用于连续发酵生产生物乙醇

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摘要

The objectives of this study were to investigate the feasibility of encapsulating yeast cells using gellan gum by an emulsification method and to evaluate the fermentation efficiency and the reusability of the micro-bioreactors produced. It was found that yeast cells could be successfully encapsulated to form relatively spherical micro-bioreactors with high specific surface area for mass transfer. Cell viability was found to be reduced by one log reduction after the emulsification process. The ethanol yield of the micro-bioreactors was comparable to that of free yeast in the first fermentation cycle. The micro-bioreactors remained intact and could be re-used up to 10 cycles of fermentation. Despite cell breakthrough, relatively high ethanol yields were obtained, indicating that the micro-bioreactors also functioned as regenerative reservoirs of yeast.
机译:这项研究的目的是研究通过乳化法使用结冷胶包封酵母细胞的可行性,并评估发酵效率和所生产的微型生物反应器的可重复使用性。已经发现,酵母细胞可以成功地被封装以形成相对球形的,具有高比表面积的用于传质的微生物反应器。乳化过程后发现细胞活力降低了一个对数。在第一个发酵周期中,微型生物反应器的乙醇产量与游离酵母相当。微型生物反应器保持完整,可以重复使用多达10个发酵周期。尽管有细胞突破,但仍获得了相对较高的乙醇产量,表明该微生物反应器还具有酵母的再生贮藏功能。

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