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A much cheaper method to separate ethanol after solid-state fermentation process in renewable energy production

机译:固态发酵过程中可再生能源生产中分离乙醇的便宜得多的方法

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Planar Thermal Source (PTS) was used to separate ethanol from Solid-State Fermented crushed straw Material (SSFM) instead of the traditional separation method of water steam in Advanced Solid-State Fermentation technology(ASSF). Complete thermo gravimetric test was done on prepared material to study the mass change rules under heating of PTS. Factors considered were temperature of PTS (T, 20 -100 degrees C), wet content of material (theta, 0.1-0.9), ethanol concentration in wet of material (omega, 0.03-0.11). The weight order of factors on material mass change speed V was T theta omega, and omega can be ignored for that was an order of magnitude less important than theta and T. V linearly increases with higher T, increases by power function with higher theta. V model with T and theta was regressed. As ethanol separating from SSFM can be considered as ethanol evaporating from ethanol solution, ethanol solution evaporation model was derived. Above all, model of ethanol separation from SSFM by PTS was derived. The cost model was added. Software was programmed to calculate the separation process and its cost. The method will promote the ASSF technology to produce fuel ethanol. The study can also be reference on drying process of other crushed plant material. (C) 2018 Elsevier Ltd. All rights reserved.
机译:平面热源(PTS)用于从固态发酵碎秸秆原料(SSFM)中分离乙醇,而不是高级固态发酵技术(ASSF)中的传统水蒸汽分离方法。对准备好的材料进行了完整的热重测试,以研究PTS加热下的质量变化规律。考虑的因素包括PTS的温度(T,20 -100摄氏度),材料的湿含量(θ,0.1-0.9),材料湿的乙醇浓度(Ω,0.03-0.11)。物质质量变化速度V的因素的权重顺序为T> theta>Ω,而Ω可以忽略,因为它的重要性不如theta和T重要。V随T的增加线性增加,随幂函数的增加而增加θ。回归了带有T和theta的V模型。由于从SSFM中分离出的乙醇可视为乙醇从乙醇溶液中蒸发,因此推导了乙醇溶液蒸发模型。首先,通过PTS推导了从SSFM中分离乙醇的模型。成本模型已添加。对软件进行编程以计算分离过程及其成本。该方法将促进ASSF技术生产燃料乙醇。该研究也可为其他压碎植物材料的干燥过程提供参考。 (C)2018 Elsevier Ltd.保留所有权利。

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