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Biomass to ethanol: Process simulation, validation and sensitivity analysis of a gasifier and a bioreactor.

机译:乙醇生物量:气化炉和生物反应器的过程模拟,验证和敏感性分析。

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Scope and method of study. The Gasification-Fermentation process for the production of fuel-grade ethanol from agricultural biomass is being investigated at Oklahoma State University, Stillwater. Process simulation software, Aspen Plus(TM) was used to study the gasifier and the bioreactor set-ups in this research. Process models were developed and validated with experimental data. Sensitivity studies were conducted for the gasifier by manipulating important process parameters like biomass feed rate, moisture content, operating temperature and equivalence ratio. Sensitivity of the bioreactor model was studied by manipulating the input gas composition of carbon monoxide, carbon dioxide and hydrogen gases, media flow rate, and stoichiometric conversion of substrates.; Findings and conclusions. The results from this work indicate that, the amount of carbon monoxide and hydrogen gases produced in the gasifier and the amount of ethanol produced in the bioreactor can theoretically be improved further.
机译:研究范围和方法。俄克拉荷马州立大学斯蒂尔沃特市正在研究从农业生物质生产燃料级乙醇的气化发酵工艺。使用过程模拟软件Aspen Plus™来研究气化炉和生物反应器的设置。开发了过程模型并通过实验数据进行了验证。通过控制重要的工艺参数(如生物质进料速率,水分含量,工作温度和当量比)对气化炉进行了敏感性研究。通过控制一氧化碳,二氧化碳和氢气的输入气体组成,介质流速和底物的化学计量转化来研究生物反应器模型的敏感性。结论和结论。这项工作的结果表明,理论上可以进一步提高气化炉中产生的一氧化碳和氢气的量以及生物反应器中产生的乙醇的量。

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