首页> 外文期刊>Mycobiology >Study of sugarcane pieces as yeast supports for ethanol production from sugarcane juice and molasses using newly isolated yeast from toddy sap.
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Study of sugarcane pieces as yeast supports for ethanol production from sugarcane juice and molasses using newly isolated yeast from toddy sap.

机译:使用甘蔗汁和糖蜜中新分离的酵母,研究甘蔗片作为酵母的支持物,以从甘蔗汁和糖蜜中生产乙醇。

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摘要

A repeated batch fermentation system was used to produce ethanol using Saccharomyces cerevisiae strain (NCIM 3640) immobilized on sugarcane (Saccharum officinarum L.) pieces. For comparison free cells were also used to produce ethanol by repeated batch fermentation. Scanning electron microscopy evidently showed that cell immobilization resulted in firm adsorption of the yeast cells within subsurface cavities, capillary flow through the vessels of the vascular bundle structure, and attachment of the yeast to the surface of the sugarcane pieces. Repeated batch fermentations using sugarcane supported biocatalyst were successfully carried out for at least ten times without any significant loss in ethanol production from sugarcane juice and molasses. The number of cells attached to the support increased during the fermentation process, and fewer yeast cells leaked into fermentation broth. Ethanol concentrations (about 72.65~76.28 g/L in an average value) and ethanol productivities (about 2.27~2.36 g/L/hr in an average value) were high and stable, and residual sugar concentrations were low in all fermentations (0.9~3.25 g/L) with conversions ranging from 98.03~99.43%, showing efficiency 91.57~95.43 and operational stability of biocatalyst for ethanol fermentation. The results of the work pertaining to the use of sugarcane as immobilized yeast support could be promising for industrial fermentations.
机译:使用固定在甘蔗(Saccharum officinarum L.)片上的酿酒酵母菌株(NCIM 3640),使用重复的分批发酵系统生产乙醇。为了进行比较,还使用游离细胞通过重复分批发酵来生产乙醇。扫描电子显微镜明显地表明,细胞固定导致酵母细胞在地下腔内的牢固吸附,通过血管束结构的血管的毛细流以及酵母与甘蔗块表面的附着。成功地进行了至少十次使用甘蔗负载的生物催化剂进行的分批发酵,而甘蔗汁和糖蜜的乙醇产量没有任何重大损失。在发酵过程中,附着在支持物上的细胞数量增加了,泄漏到发酵液中的酵母细胞也减少了。乙醇浓度(平均值约为72.65〜76.28 g / L)和乙醇生产率(平均值约为2.27〜2.36 g / L / hr)高且稳定,所有发酵中的残留糖浓度都很低(0.9〜 3.25 g / L)的转化率在98.03〜99.43%之间,显示出91.57〜95.43的效率以及乙醇发酵生物催化剂的运行稳定性。与使用甘蔗作为固定的酵母支持物有关的工作结果对于工业发酵可能是有希望的。

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