两种水稻(Oryza)的麸皮生产生物乙醇的潜力

H. Musa, A. Abdullahi, Rabi’a Ibrahim El-Yakub, I. Yerima
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摘要

第二代乙醇是由非粮食原料生产的,包括粮食作物的废料、木屑和农业残留物。其中的木质纤维素和淀粉物质被转化为可发酵的糖,这些糖被进一步加工以生产生物乙醇。米糠是一种具有丰富碳水化合物的农业残渣,可用于生物转化为乙醇。本研究旨在评价两个米糠品种(Sipi和Wita)生产生物乙醇的潜力。Wita米糠的纤维素含量为40%,半纤维素含量为23%,木质素含量为16%。Sipi品种纤维素含量35%,半纤维素含量27%,木质素含量13%。分别以不同浓度(0.5%、1%、2%、3%)和停留时间(15、30、60、90min)的氢氧化钠进行预处理。研究结果表明,2% NaOH预处理米糠90min是米糠生产生物乙醇的有效预处理条件。用酿酒酵母和印度毛霉同时对纤维素生物质进行糖化和发酵72h。酵母发酵Wita品种的生物乙醇产量最高,为1.36%,而Mucor indicus的生物乙醇产量最高,为0.75%。综上所述,米糠可作为第二代乙醇发酵的理想底物。
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Potential of Bran from Two Varieties of Rice (Oryza) Spp for Bioethanol Production
Second generation ethanol is produced from non-food based including waste from food crops, wood chips and agricultural residue. Lignocellulosic and starchy materials in them are converted to fermentable sugars which are further processed to produce bioethanol. Rice bran is an agricultural residue with abundant carbohydrate for bioconversion into ethanol. This study was designed to evaluate the potential of two varieties of rice bran (Sipi and Wita) to produce bioethanol. Compositional analysis of Wita rice bran showed 40% cellulose, 23% hemicellulose and 16% lignin content. Sipi variety contains 35% cellulose, 27% hemicellulose and 13% lignin content. Sodium hydroxide pretreatment was carried out at different concentrations (0.5%, 1%, 2% and 3%) and residence time of (15, 30, 60, and 90min). It was observed from the present study, pretreatment of rice bran with 2% NaOH for 90min is considered as effective pretreatment condition for bioethanol production from rice bran. Simultaneous saccharification and fermentation of cellulosic biomass was carried out for 72h with Saccharomyces cerevisae and Mucor indicus. Fermentation of Wita variety with S.cerevisiae produced highest bioethanol yield of 1.36% while Mucor indicus produced 0.75% bioethanol yield. From the result of these findings, it can be concluded that rice bran could be considered as a promising substrate for the fermentation of second generation ethanol.
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