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首页> 外文期刊>Mycobiology >Evaluating Carriers for Immobilizing Saccharomyces cerevisiae for Ethanol Production in a Continuous Column Reactor
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Evaluating Carriers for Immobilizing Saccharomyces cerevisiae for Ethanol Production in a Continuous Column Reactor

机译:评价在连续塔式反应器中固定酿酒酵母用于生产乙醇的载体

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We evaluated a more practical and cost-effective immobilization carriers for ethanol production using the yeast Saccharomyces cerevisiae . Three candidate materials-rice hull, rice straw, and sawdust-were tested for their cell-adsorption capacity and operational durability. Derivatizations of rice hull, rice straw, and sawdust with the optimal concentration of 0.5 M of 2-(diethylamino)ethyl chloride hydrochloride (DEAE · HCl) resulted in > 95% adsorption of the initial yeast cells at 2 hr for DEAE-rice hull and DEAE-sawdust and in only approximately 80% adsorption for DEAE-rice straw. In addition, DEAE-sawdust was found to be a more practical carrier for immobilizing yeast cells in terms of operational durability in shaking flask cultures with two different speeds of 60 and 150 rpm. Furthermore, the biosorption isotherms of DEAE-rice hull, -rice straw, and -sawdust for yeast cells revealed that the Qmax of DEAE-sawdust (82.6 mg/g) was greater than that of DEAE-rice hull and DEAE-rice straw. During the 404-hr of continuous column reactor operation using yeast cells immobilized on DEAE-sawdust, no serious detachment of the yeast cells from the DEAE-sawdust was recorded. Ethanol yield of approximately 3.04 g/L was produced steadily, and glucose was completely converted to ethanol at a yield of 0.375 g-ethanol/g-glucose (73.4% of the theoretical value). Thus, sawdust is a promising practical immobilization carrier for ethanol production, with significance in the production of bioethanol as a biofuel.
机译:我们评估了使用酿酒酵母酵母生产乙醇的更实用,更具成本效益的固定化载体。测试了三种候选材料(稻壳,稻草和锯末)的细胞吸附能力和操作耐久性。稻壳,稻草和木屑的最佳浓度为0.5 M的2-(二乙氨基)乙基氯盐酸盐(DEAE·HCl)衍生化后,DEAE-稻壳在2小时时对初始酵母细胞的吸附率> 95%和DEAE-木屑,对DEAE-大米秸秆的吸附率仅为80%。另外,就两种不同的60和150rpm速度的摇瓶培养中的操作耐久性而言,发现DEAE-木屑是用于固定酵母细胞的更实用的载体。此外,DEAE-稻壳,-稻草和-木屑对酵母细胞的生物吸附等温线表明,DEAE-木屑的Q sub sub (82.6 mg / g)大于DEAE-稻壳和DEAE稻草。在使用固定在DEAE-木屑上的酵母细胞进行的404小时连续柱反应器操作期间,未记录到酵母细胞与DEAE-木屑的严重分离。稳定地产生约3.04 g / L的乙醇产量,并且以0.375 g-乙醇/ g-葡萄糖(理论值的73.4%)的产率将葡萄糖完全转化为乙醇。因此,木屑是用于乙醇生产的有前景的实用固定化载体,在生产作为生物燃料的生物乙醇中具有重要意义。

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