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Process simulation of ethanol production from biomass gasification and syngas fermentation

机译:生物质气化和合成气发酵乙醇生产的过程模拟

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The hybrid gasification-syngas fermentation platform can produce more bioethanol utilizing all biomass components compared to the biochemical conversion technology. Syngas fermentation operates at mild temperatures and pressures and avoids using expensive pretreatment processes and enzymes. This study presents a new process simulation model developed with Aspen Plus (R) of a biorefinery based on a hybrid conversion technology for the production of anhydrous ethanol using 1200 tons per day (wb) of switchgrass. The simulation model consists of three modules: gasification, fermentation, and product recovery. The results revealed a potential production of about 36.5 million gallons of anhydrous ethanol per year. Sensitivity analyses were also performed to investigate the effects of gasification and fermentation parameters that are keys for the development of an efficient process in terms of energy conservation and ethanol production.
机译:与生物化学转换技术相比,杂交气化 - 合成气发酵平台可利用所有生物质组分产生更多的生物乙醇。 合成气发酵在温和的温度和压力下运行,并避免使用昂贵的预处理方法和酶。 本研究提出了一种新的过程仿真模型,其基于混合转换技术的生物件的AspenPlus(R)开发,用于使用每天1200吨(WB)的ExpressGrass生产无水乙醇。 仿真模型由三个模块组成:气化,发酵和产品回收。 结果显示,每年潜在产量约为3650万加仑无水乙醇。 还进行了敏感性分析以研究气化和发酵参数的影响,这些参数是在节能和乙醇生产方面开发有效过程的键。

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