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Dynamic biogas upgrading based on the Sabatier process: Thermodynamic and dynamic process simulation

机译:基于Sabatier过程的动态沼气升级:热力学和动态过程模拟

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This study aimed to investigate the feasibility of substitute natural gas (SNG) generation using biogas from anaerobic digestion and hydrogen from renewable energy systems. Using thermodynamic equilibrium analysis, kinetic reactor modeling and transient simulation, an integrated approach for the operation of a biogas-based Sabatier process was put forward, which was then verified using a lab scale heterogenous methanation reactor. The process simulation using a kinetic reactor model demonstrated the feasibility of the production of SNG at gas grid standards using a single reactor setup. The Wobbe index, CO2 content and calorific value were found to be controllable by the H-2/CO2 ratio fed the methanation reactor. An optimal H-2/CO2 ratio of 3.45-3.7 was seen to result in a product gas with high calorific value and Wobbe index. The dynamic reactor simulation verified that the process start-up was feasible within several minutes to facilitate surplus electricity use from renewable energy systems. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项研究旨在调查使用厌氧消化产生的沼气和可再生能源系统产生的氢气替代天然气的可能性。利用热力学平衡分析,动力学反应器建模和瞬态模拟,提出了一种基于沼气的Sabatier工艺操作的集成方法,然后使用实验室规模的异质甲烷化反应器进行了验证。使用动力学反应器模型的过程仿真证明了使用单个反应器装置以气网标准生产SNG的可行性。发现通过进料甲烷化反应器的H-2 / CO2比可以控制Wobbe指数,CO2含量和热值。最佳的H-2 / CO2比为3.45-3.7,可产生高热值和沃泊指数的产物气。动态反应堆仿真验证了该过程的启动在几分钟内是可行的,以促进可再生能源系统的多余电力使用。 (C)2014 Elsevier Ltd.保留所有权利。

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