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Definition of optimum basic nutrients ratio in media for bioethanol production with immobilised yeast cells

机译:固定化酵母细胞用于生产生物乙醇的培养基中最佳基本营养比的定义

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摘要

The production of bioethanol as an alternative to fossil fuel has been increasing owing to growing biofuel demand. Combination of yeast immobilisation and media optimisation has become a popular technique for the improvement of bioethanol technology. The aim of this study was the optimisation, by response surface methodology, of sodium alginate concentration and nitrogen and phosphorus content in media for bioethanol production using immobilised Saccharomyces cerevisiae. Ratio of carbon, nitrogen and phosphorus (C : N : P) in media was calculated based on optimum factors values and initial glucose content. The developed model predicts that maximum product concentration, minimum 'eluted' yeast cells number and minimum nutrients content are achieved when the sodium alginate concentration is 71.99 g/L and C :N : P ratio is 50 : 3.5 : 1.3. The obtained results can be used for techno-economic analysis of the process to select optimum fermentation conditions for industrial application.
机译:由于生物燃料需求的增长,替代化石燃料的生物乙醇的生产一直在增加。酵母固定化与培养基优化相结合已成为改善生物乙醇技术的流行技术。这项研究的目的是通过响应面方法优化固定化酿酒酵母生产生物乙醇的培养基中海藻酸钠的浓度以及氮和磷的含量。根据最佳因子值和初始葡萄糖含量,计算培养基中碳,氮和磷的比例(C:N:P)。开发的模型预测,当藻酸钠浓度为71.99 g / L,C:N:P比为50:3.5:1.3时,可以达到最大的产品浓度,最小的“洗脱”酵母细胞数量和最小的营养成分。获得的结果可用于工艺的技术经济分析,以选择最佳的发酵条件以用于工业应用。

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    Faculty of Technology Novi Sad,Department of Biotechnology and Pharmaceutical Engineering,University of Novi Sad,Bulevar cara Lazara 1,Novi Sad 21000, Serbia;

    Faculty of Technology Novi Sad,Department of Biotechnology and Pharmaceutical Engineering,University of Novi Sad,Bulevar cara Lazara 1,Novi Sad 21000, Serbia;

    Faculty of Technology Novi Sad,Department of Biotechnology and Pharmaceutical Engineering,University of Novi Sad,Bulevar cara Lazara 1,Novi Sad 21000, Serbia;

    Faculty of Technology Novi Sad,Department of Biotechnology and Pharmaceutical Engineering,University of Novi Sad,Bulevar cara Lazara 1,Novi Sad 21000, Serbia;

    Faculty of Technology Novi Sad,Department of Biotechnology and Pharmaceutical Engineering,University of Novi Sad,Bulevar cara Lazara 1,Novi Sad 21000, Serbia;

    Faculty of Technology Novi Sad,Department of Biotechnology and Pharmaceutical Engineering,University of Novi Sad,Bulevar cara Lazara 1,Novi Sad 21000, Serbia;

    Faculty of Technology Novi Sad,Department of Biotechnology and Pharmaceutical Engineering,University of Novi Sad,Bulevar cara Lazara 1,Novi Sad 21000, Serbia;

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  • 正文语种 eng
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  • 关键词

    bioethanol; Saccharomyces cerevisiae; microbial immobilisation; optimisation; response surface methodology;

    机译:生物乙醇酿酒酵母;固定微生物;优化;响应面法;

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