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Optimization of the Cyclic Operation of a Continuous Biobutanol Fermentation Process Integrated with Ex-Situ Adsorption Recovery

机译:与前原位吸附回收相结合的连续生物酸发酵过程的循环操作优化

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Biobutanol has received significant attention as a renewable gasoline substitute and as a chemical feedstock owing to its high energy content, low volatility, and low water solubility. Low volumetric productivity caused by the toxicity of butanol in batch fermentation stands as one of the major obstacles to the commercialization. In this paper, continuous biobutanol fermentation with ex-situ adsorption recovery of butanol is investigated as a way to overcome this limitation. In this integrated system, the spatial segregation of the adsorption system and the fermentation process enables continuous biobutanol production without the need to stop the fermentation. Since the adsorption column needs to be switched periodically owing to the limited capacity of the adsorbent, the overall operation follows a cyclic pattern and the fermentation process converges to a cyclic steady state (CSS). In this study, a dynamic model of the integrated process is constructed and used for dynamic simulation to determine the system. Major operating variables are optimized through grid search for given feed concentrations based on the predicted CSS behavior in order to design an operation strategy that satisfies given requirements.
机译:由于其高能量含量,低挥发性和低水溶性,Biobutanol作为可再生汽油替代品和作为化学原料的重量关注。丁醇中丁醇中毒性的低体积生产率作为商业化的主要障碍之一。本文研究了丁醇的连续生物脱醇发酵,作为甘烷的原位吸附回收以克服这种限制的方式。在该集成系统中,吸附系统的空间偏析和发酵过程使得连续的生物灭菌醇产生,而无需停止发酵。由于由于吸附剂的容量有限地,所需的吸附塔,因此整个操作遵循循环图案,并且发酵过程会聚到循环稳态(CSS)。在这项研究中,构造了集成过程的动态模型,用于动态模拟以确定系统。主要操作变量通过基于预测的CSS行为的给定进料浓度的网格搜索优化,以设计满足给定要求的操作策略。

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