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Modeling of Biomass Gasification in a Downdraft Gasifier with Integrated Tar Adsorption

机译:具有综合焦油吸附的下游气化器生物质气化建模

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Thermal gasification of biomass is known for its capabilities in flexible and decentral power station applications for cogeneration. However, the product gas contains tar compounds adversely for a stable operation. Integrated tar adsorption in a subsequent cooled section is therefore an option to reduce the tar pollution. The char coal, used here as adsorption agent, is formed by biomass pyrolysis in the gasifier. A kinetic model is proposed, considering the kinetics of all main reactions as well as heat and mass transport phenomena. Results are presented for axial temperature profiles, gas compositions, and the gas purity at different air-to-fuel ratios. The resulting output mass flows could indicate a requirement on the adsorption capacity of at least 0.3 g g(-1) for the activated char coal.
机译:生物量的热气化以其在柔性和分散电站应用中的能力为热电联产的能力而闻名。 然而,产物气体含有焦油化合物对稳定的操作不利。 因此,随后的冷却部分中的集成焦油吸附是可以减少焦油污染的选项。 这里使用的炭煤作为吸附剂,是通过气化器中的生物质热解形成的。 提出了一种动力学模型,考虑到所有主要反应的动力学以及热量和大规模运输现象。 轴向温度曲线,气体组合物和不同空气 - 燃料比的气体纯度提出了结果。 所得到的输出质量流量可以指示活化炭煤的80.3g(-1)的吸附容量。

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