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Attainable region analysis for continuous production of second generation bioethanol

机译:连续生产第二代生物乙醇的可达到区域分析

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摘要

BackgroundDespite its semi-commercial status, ethanol production from lignocellulosics presents many complexities not yet fully solved. Since the pretreatment stage has been recognized as a complex and yield-determining step, it has been extensively studied. However, economic success of the production process also requires optimization of the biochemical conversion stage. This work addresses the search of bioreactor configurations with improved residence times for continuous enzymatic saccharification and fermentation operations. Instead of analyzing each possible configuration through simulation, we apply graphical methods to optimize the residence time of reactor networks composed of steady-state reactors. Although this can be easily made for processes described by a single kinetic expression, reactions under analysis do not exhibit this feature. Hence, the attainable region method, able to handle multiple species and its reactions, was applied for continuous reactors. Additionally, the effects of the sugars contained in the pretreatment liquor over the enzymatic hydrolysis and simultaneous saccharification and fermentation (SSF) were assessed.
机译:背景技术尽管木质纤维素技术处于半商业状态,其乙醇生产仍存在许多尚未完全解决的复杂问题。由于预处理阶段已被认为是一个复杂且决定产量的步骤,因此已经进行了广泛的研究。然而,生产过程的经济成功还需要优化生化转化阶段。这项工作解决了生物反应器配置的搜索,该配置具有改善的停留时间,可进行连续的酶促糖化和发酵操作。代替通过仿真分析每种可能的配置,我们应用图形方法来优化由稳态反应堆组成的反应堆网络的停留时间。尽管对于通过单个动力学表达式描述的过程可以很容易地做到这一点,但分析中的反应并未显示此特征。因此,将能够处理多种物质及其反应的可达到区域方法应用于连续反应器。另外,评估了预处理液中所含糖对酶促水解以及同时糖化和发酵(SSF)的影响。

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