首页> 外文期刊>Journal of Cleaner Production >Rotary biofilm reactor: A new tool for long-term bioethanol production from non-sterilized beet molasses by Saccharomyces cerevisiae in repeated-batch fermentation
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Rotary biofilm reactor: A new tool for long-term bioethanol production from non-sterilized beet molasses by Saccharomyces cerevisiae in repeated-batch fermentation

机译:旋转生物膜反应器:通过在重复分批发酵中由酿酒酵母酿酒酵母从非灭菌甜菜糖杉的长期生物乙醇生产的新工具

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A new tool was developed for second generation ethanol production from non-sterilized beet molasses to energy recovery from the agro-industrial byproduct. The rotary biofilm reactor (RBR) used in repeated-batch fermentation for long-term bioethanol production showed high energy recovery efficiency. This study will serve as a base line of initial studies in this field as no reports are available regarding the application of RBR for bioethanol production. Repeated-batch fermentations were carried out by replacement of the fermentation broth (3.5 L) by equal volume of fresh medium or with 15% and 30% recycling volume in RBR and the reactor without the discs. The fermentation was carried out under the following conditions: an inoculum concentration of 5.6 g dry baker's yeast/L, initial sugar concentration of 15% (w/v), initial pH 5.0, temperature 30 degrees C, and rotation speed of 40 rpm. The high bioethanol concentration (average value 52.3 g/L) and the average bioethanol productivity (1.45 g/L/h) were stable for 60 days by recycling 30% of the volume of the broth every 36 h in repeated-batch fermentation using the RBR. The energy evaluation data indicated a positive energy balance with an energy ratio of 1.63 MJ/MJ. The other energy indicators such as energy consumption, energy conversion, energy yield, and energy recovery were 16.5 MJ/kg bioethanol produced, 4.7 MJ/kg beet molasses, 1.3 MJ/100 g sugar utilized, and 84.8%, respectively. The results showed that non-sterilized beet molasses is a promising feedstock for bioethanol production in industrial scale by Saccharomyces cerevisiae using the RBR and this process is considered energetically feasible. (C) 2020 Elsevier Ltd. All rights reserved.
机译:开发了一种新工具,用于从非灭菌的甜菜糖蜜生产的第二代乙醇生产,从农业工业副产品中的能量回收。用于长期生物乙醇生产的重复分批发酵中使用的旋转生物膜反应器(RBR)显示出高能量回收效率。本研究将作为该领域的初始研究的基础系列,因为没有关于用于生物乙醇生产的RBR的报告。通过在RBR和RBR和反应器中替换发酵液(3.5L)通过等体积的新鲜培养基或15%和30%回收体积而进行重复的批量发酵。在下列条件下进行发酵:接种浓度为5.6g干面包酵母/ L,初始糖浓度为15%(w / v),初始pH 5.0,温度30℃,旋转速度为40rpm。高生物乙醇浓度(平均值52.3g / L)和平均生物乙醇生产率(1.45g / l / h)通过每36小时再循环30%的肉汤中的液体中的30%,使用该方法RBR。能量评估数据表明了能量比为1.63 MJ / MJ的正能量平衡。其他能量指示器,如能量消耗,能量转换,能量产量和能量回收率为16.5MJ / kg生物乙醇,4.7MJ / kg甜菜糖蜜,1.3MJ / 100g糖,分别为84.8%。结果表明,非灭菌的甜菜糖蜜是通过使用RBR的酿酒酵母在工业规模中的生物乙醇生产的有望原料,并且该过程被认为是能量上可行的。 (c)2020 elestvier有限公司保留所有权利。

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