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A Dynamic Model for Glucose Fermentation in a Three-Phase Bioreactor

机译:三相生物反应器中葡萄糖发酵的动态模型

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In this study the performance of an special three-phase bioreactor for biological production of ethanol and hydrogen was modeled using computational fluid dynamics. The effect of different Hydraulic Retention Time (HRT) of 1, 2 and 4 hr and Glucose mass fraction in feed of 0.002, 0.004, 0.006, and 0.008 on Hydrogen and ethanol production rate was determined. The maximum value of H2 production rate at the HRT of equal to 2h and Glucose mass fraction of 0.008 is 0.033 kg/h. It was demonstrated that the model is capable of predicting the variation of the EGSB reactor performance for biohydrogen and bioethanol production at various substrate concentrations and HRT values.
机译:在这项研究中,使用计算流体动力学建模了用于乙醇和氢气生物生产的特殊三相生物反应器的性能。确定了0.002,0.004,0.006和0.008的氢气和乙醇生产率的进料中1,2和4小时和葡萄糖质量级分的不同液压保持时间(HRT)的效果。 H2生产率在2小时的H2生产速率和0.008的葡萄糖质量分数的最大值为0.033kg / h。结果证明,该模型能够在各种底物浓度和HRT值下预测生物氢和生物乙醇产生的EGSB反应器性能的变化。

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