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Comprehensive modeling of photo-fermentation process for prediction of hydrogen production

机译:光发酵过程的综合建模,用于预测产氢量

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Hydrogen production via modem technologies and without using fossil fuels has been found considerably important recently. Photo-fermentation is introduced as one of the most effective methods without high risk for bio-hydrogen production. In this study, comprehensive modeling and simulation of bio-hydrogen production is carried out through photo-fermentation process. In this way, different applicable models are considered to predict the kinetics of microbial growth. Also, new modified mathematical models are particularly proposed for photo-fermentation to forecast the specific growth rate of microorganisms, substrate consumption and hydrogen production rates. Various combinations of the models are applied and predictions of the models are validated by experimental data related to the growth of Rhodobacter Sphaeroides on malate as the substrate. The combination, entitled as MVA1, is introduced as the best one to predict kinetic factors in photo-fermentation. The presented models can be used as an excellent starting point to accomplish experimental and industrial works. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:最近发现,通过现代技术而不使用化石燃料生产氢非常重要。引入光发酵是最有效的方法之一,而不会产生高产氢的风险。在这项研究中,通过光发酵过程进行了生物制氢的综合建模和模拟。这样,可以考虑使用不同的适用模型来预测微生物生长的动力学。而且,特别提出了用于光发酵的新的改进的数学模型,以预测微生物的比生长速率,底物消耗和氢气产生速率。应用了模型的各种组合,并且通过与球形芽孢杆菌在底物苹果酸上的生长相关的实验数据验证了模型的预测。该组合名为MVA1,是预测光发酵动力学因子的最佳组合。提出的模型可以用作完成实验和工业工作的绝佳起点。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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