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Demonstrating direct methanation of real biogas in a fluidised bed reactor

机译:在流化床反应器中展示真沼气的直接甲烷化

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The catalytic direct methanation of biogas to produce biomethane was conducted in a pilot plant with real biogas from a biogas plant in Zurich. Stable operation of the methanation system including a bubbling fluidised bed could be demonstrated for over 1100 h of regular operation with subsequent injection into the gas grid. An average methane yield of 96% was reached. During the long-duration experiment, the slow deactivation process was monitored and found to be only moderate. Organic sulphur compounds could be identified as the main source of deactivation. However, deactivation from coking could not be fully excluded. With appropriate measures in the gas cleaning unit, so that no sulphur compounds were measured subsequently (limit of detection: 0.05 ppm of relevant components), the yield reduction went close to zero. Additionally, experimental results were compared to simulation results from a rate-based model presented elsewhere. Model predictions and experimental results are in accordance. The kinetics used in the rate-based model allowed a correct prediction of the optimum reaction temperature found by experimental results.
机译:在苏黎世的沼气植物的试验厂中,在苏黎世的真实沼气中进行沼气的催化直接甲烷化生物甲烷。可以对包括鼓泡流体化的甲烷化系统的稳定操作可以在常规操作中进行超过1100小时,随后注入气体栅格。达到了96%的平均甲烷产率。在长期实验期间,监测缓慢的失活过程,发现仅适度。可以将有机硫化合物鉴定为失活的主要来源。但是,无法完全排除焦化的停用。在气体清洁单元中采取适当的措施,因此随后没有测量硫化合物(检测限:<0.05ppm的相关组分),收益率降低至零。另外,将实验结果与诸如其他地方呈现的速率的模型进行了比较。模型预测和实验结果符合。基于速率的模型中使用的动力学允许正确预测实验结果发现的最佳反应温度。

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