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Microwave plasma treatment of simulated biomass syngas: Interactions between the permanent syngas compounds and their influence on the model tar compound conversion

机译:微波等离子体对模拟生物质合成气的处理:永久合成气化合物与其对模型焦油复合转化的影响

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摘要

Plasma techniques are attracting significant attention in the context of tar removal from the biomass-derived syngas. This research investigated the impact of microwave (MW) plasma on a simulated biomass syngas containing benzene as a model tar compound. The high temperature of the plasma and the presence of reactive species resulted in crucial changes of the gas composition. A significant increase in CO and H-2 concentrations at a cost of CH4 and CO2 was observed. It was concluded that CO2 and H-2 were essential in the conversion of both, methane and benzene. This phenomenon was attributed to the presence of O, OH and H radicals generated in the plasma core zone. While the addition of these compounds allowed achieving conversion efficiency at the level of 97-98%, the presence of methane decreased it to c.a. 60% due to the re-formation of benzene. Moreover, the main by-products of benzene conversion, qualified and quantified, showed the same tendency towards syngas compounds as benzene did.
机译:等离子体技术在从生物质衍生的合成气中取出的焦油中的背景下吸引了显着的关注。本研究研究了微波(MW)等离子体对含有苯作为模型焦油化合物的模拟生物质合成气的影响。等离子体的高温和反应性物质的存在导致气体组合物的关键变化。观察到CH4和CO 2成本的CO和H-2浓度的显着增加。结论是CO 2和H-2在转化甲烷和苯的转化方面是必不可少的。这种现象归因于等离子体芯区产生的O,OH和H基团的存在。虽然加入这些化合物在97-98%的水平下实现转化效率,但甲烷的存在降低至C.a.由于重新形成苯,60%。此外,苯转化,合格和量化的主要副产物表现出与苯的合成气化合物相同的趋势。

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