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Experimental validation of online monitoring and optimization strategies applied to a biohydrogen production dark fermenter

机译:在线监测和优化策略的实验验证应用于生物氢生产黑发酵罐

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This work presents the proposal and experimental validation of an online optimization strategy for maximizing the hydrogen production rate (HPR) in an anaerobic bioreactor through the dark fermentation of glucose. The proposal comprises a heuristic optimization strategy, a coupled nonlinear observer, and a PI controller to track the desired maximum HPR. The optimization is achieved by solving online a nonlinear programming problem which considers the relation between the HPR and the organic loading rate (OLR), such that the latter is manipulated to maximize the former. Since the OLR requires online knowledge of the unmeasured influent substrate concentration, the nonlinear observer is used to estimate it using measurements of the hydrogen flow rate at the output of the bioreactor. This observer comprises the coupled operation of a robust Luenberger observer and a super-twisting observer. The proposal was designed and tested experimentally in a continuous stirred tank laboratory bioreactor fed with glucose, and the results are very promising. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作提出了通过葡萄糖的黑暗发酵来最大化厌氧生物反应器中的氢产率(HPR)的在线优化策略的提议和实验验证。该提议包括启发式优化策略,耦合非线性观察者和PI控制器,以跟踪所需的最大HPR。通过在线解决非线性编程问题来实现优化,这是考虑HPR与有机加载速率(OLR)之间的关系,使得后者被操纵以最大化前者。由于OLR需要在线知识对未测量的影响不会测量的流动性底物浓度,因此非线性观测器用于使用在生物反应器的输出处的氢气流速的测量来估计它。该观察者包括稳健的Luenberger观察者的耦合操作和超扭曲观测器。该提案在通过葡萄糖喂养的连续搅拌罐实验室生物反应器中实验设计和测试,结果非常有前景。 (c)2018年elestvier有限公司保留所有权利。

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