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Enhanced Bio-Ethanol Production from Industrial Potato Waste by Statistical Medium Optimization

机译:通过统计介质优化提高工业马铃薯废料的生物乙醇产量

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摘要

Industrial wastes are of great interest as a substrate in production of value-added products to reduce cost, while managing the waste economically and environmentally. Bio-ethanol production from industrial wastes has gained attention because of its abundance, availability, and rich carbon and nitrogen content. In this study, industrial potato waste was used as a carbon source and a medium was optimized for ethanol production by using statistical designs. The effect of various medium components on ethanol production was evaluated. Yeast extract, malt extract, and MgSO4·7H2O showed significantly positive effects, whereas KH2PO4 and CaCl2·2H2O had a significantly negative effect (p-value < 0.05). Using response surface methodology, a medium consisting of 40.4 g/L (dry basis) industrial waste potato, 50 g/L malt extract, and 4.84 g/L MgSO4·7H2O was found optimal and yielded 24.6 g/L ethanol at 30 °C, 150 rpm, and 48 h of fermentation. In conclusion, this study demonstrated that industrial potato waste can be used effectively to enhance bioethanol production.
机译:工业废料作为生产增值产品以降低成本,同时又经济又环保地进行管理的基质,引起了人们的极大兴趣。由于工业废料的丰富,可利用性以及丰富的碳和氮含量,因此从工业废料中生产生物乙醇备受关注。在这项研究中,工业马铃薯废料被用作碳源,并且使用统计设计优化了用于乙醇生产的培养基。评估了各种培养基成分对乙醇生产的影响。酵母提取物,麦芽提取物和MgSO4·7H2O表现出显着的正效应,而KH2PO4和CaCl2·2H2O表现出显着的负效应(p值<0.05)。使用响应面方法,发现由40.4 g / L(干基)工业废薯,50 g / L麦芽提取物和4.84 g / L MgSO4·7H2O组成的培养基是最佳的,在30°C时产生24.6 g / L的乙醇,150 rpm和48 h发酵。总之,这项研究表明,工业马铃薯废料可以有效地用于提高生物乙醇的产量。

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