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In-situ biogas upgrading process: modeling and simulations aspects

机译:原位沼气升级过程:建模和模拟方面

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摘要

Biogas upgrading processes by in-situ hydrogen (H2) injection are still challenging and could benefit from a mathematical model to predict system performance. Therefore, a previous model on anaerobic digestion was updated and expanded to include the effect of H2 injection into the liquid phase of a fermenter with the aim of modeling and simulating these processes. This was done by including hydrogenotrophic methanogen kinetics for H2 consumption and inhibition effect on the acetogenic steps. Special attention was paid to gas to liquid transfer of H2. The final model was successfully validated considering a set of Case Studies. Biogas composition and H2 utilization were correctly predicted, with overall deviation below 10% compared to experimental measurements. Parameter sensitivity analysis revealed that the model is highly sensitive to the H2 injection rate and mass transfer coefficient. The model developed is an effective tool for predicting process performance in scenarios with biogas upgrading.
机译:通过原位氢(H2)注入进行沼气提质的过程仍然具有挑战性,并且可以受益于数学模型来预测系统性能。因此,以前的厌氧消化模型进行了更新和扩展,以包括将H2注入发酵罐液相的影响,目的是对这些过程进行建模和模拟。通过包括用于氢消耗的氢营养型甲烷原动力学和对产乙酸步骤的抑制作用来完成。特别注意将气体从H2转移到液体。考虑一组案例研究,最终模型已成功验证。正确预测了沼气成分和氢气利用率,与实验测量值相比,总偏差低于10%。参数敏感性分析表明,该模型对H2注入速率和传质系数高度敏感。开发的模型是在沼气升级方案中预测过程性能的有效工具。

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