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Hydrolysis of lignocellulosic feed stock by Ruminococcus albus in production of biofuel ethanol

机译:阿鲁米球菌水解木质纤维素原料生产生物燃料乙醇

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摘要

Ethanol is an alternative to fossil fuel. Current ethanol production processes using crops, such as, sugarcane and corn are well-established. However, utilization of a cheaper substrate, such as, lignocellulose makes bioethanol more purposeful. Biologically mediated processes are promising for energy conversion, in particular, for the conversion of lignocellulosic biomass into fuels. In the present study, optimized cellulosic ethanol production from bagasse and sorghum using Ruminococcus albus isolated from rumen of herbivores animals was attempted. R. albus could depolymerise cellulose and hemicellulose as well as could tolerate stress conditions (variable substrate concentration, pH, and temperature). Optimum temperature, pH and substrate concentration for hydrolyses of both bagasse and sorghum by R. albus were found to be 39 C, 8.8 and 3.5%, respectively. For the feed stock (3.5%) of bagasse and sorghum, ethanol yield of 19.8 g/L and 17.42 g/L, respectively was obtained.
机译:乙醇是化石燃料的替代品。目前,使用诸如甘蔗和玉米等农作物的乙醇生产工艺已经很成熟。但是,利用较便宜的底物,例如木质纤维素,使生物乙醇更具用途。生物介导的过程有望进行能量转换,特别是将木质纤维素生物质转换为燃料。在本研究中,尝试使用从食草动物的瘤胃中分离出的Ruminococcus albus优化蔗渣和高粱的纤维素乙醇生产。 R. albus可以使纤维素和半纤维素解聚,并且可以耐受胁迫条件(可变的底物浓度,pH和温度)。发现通过阿氏杆菌水解蔗渣和高粱的最佳温度,pH和底物浓度分别为39°C,8.8%和3.5%。对于甘蔗渣和高粱的原料(3.5%),乙醇产量分别为19.8 g / L和17.42 g / L。

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