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Effective Conversion of Biomass Tar into Fuel Gases in a Microwave Reactor

机译:生物量焦油的有效转化为微波反应器中的燃料气体

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This work deals with conversion of naphthalene (C_(10)H_8) as a biomass tar model compound by means of thermal and catalytic treatments. A modified microwave oven with a maximum output power of 700 W was used as the experimental reactor. Experiments were performed in a wide temperature range of 450-1200°C at a predetermined residence time of 0.24-0.5 s. Dolomite and Y-zeolite were applied to convert naphthalene catalytically into useful gases. Experimental results on naphthalene conversion showed that conversion efficiency and yield of gases increased significantly with the increase of temperature. More than 90% naphthalene conversion efficiency was achieved by thermal treatment at 1200°C and 0.5 s. Nevertheless, this treatment was unfavorable for fuel gases production. The main product of this treatment was soot. Catalytic treatment provided different results with that of thermal treatment in which fuel gases formation was found to be the important product of naphthalene conversion. At a high temperature of 900°C, dolomite had better conversion activity where almost 40 wt.% of naphthalene could be converted into hydrogen, methane and other hydrocarbon gases.
机译:该工作涉及通过热和催化处理作为生物质焦油模型化合物的萘(C_(10)H_8)的转化。使用最大输出功率为700W的改进的微波炉作为实验反应器。在450-1200℃的宽温度范围内在0.24-0.5秒的预定停留时间的宽温度范围内进行实验。将白云石和Y-沸石施用于催化转化为有用的气体。萘转化的实验结果表明,随着温度的增加,转化效率和气体产量显着增加。通过1200℃和0.5秒的热处理实现了超过90%的萘转换效率。然而,这种治疗对于燃料气体产生不利。这种治疗的主要产物是烟灰。催化处理提供了与热处理的不同结果,其中发现燃料气体形成是萘转化的重要产物。在900℃的高温下,白云石具有更好的转化活性,其中近40重量%。萘的%可以转化为氢气,甲烷和其他烃类气体。

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