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Development and characterization of a lab-scale entrained flow reactor for testing biomass fuels

机译:用于测试生物质燃料的实验室规模的气流床反应器的开发与表征

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摘要

Alternative fuels exhibit different features respect to traditional fuels and require an experimental characterization in conditions similar to those of practical applications (high temperature, high heating rate, low residence time). In this work, a lab-scale drop tube reactor is characterized and an experimental procedure is developed to test a bituminous coal and a biomass fuel at high heating rate in oxidative conditions. Thermogravimetric, size and SEM analyses are used to determine the conversion degree, the reactivity and the morphological variations (swelling, fragmentation, agglomeration) of solid residues in different operating conditions. Furthermore, a model is developed in order to simulate the fluidynamics, the energy balance and the mass transfer during the partial oxidation of fuel particles. The application of this model allows the residence time and the thermal history of the particle inside the drop tube to be estimated. The experimental and model results are in agreement, considering both configurations, namely, constant diameter and density models.
机译:替代燃料表现出与传统燃料不同的特征,并且需要在类似于实际应用的条件下进行实验表征(高温,高加热速率,低停留时间)。在这项工作中,对实验室规模的滴管反应器进行了表征,并开发了实验程序以在氧化条件下以高加热速率测试烟煤和生物质燃料。使用热重分析,尺寸分析和SEM分析来确定固体残渣在不同操作条件下的转化度,反应性和形态变化(溶胀,碎裂,团聚)。此外,为了模拟燃料颗粒部分氧化过程中的流体动力学,能量平衡和传质,开发了一个模型。该模型的应用允许估算液滴在滴管内的停留时间和热历史。考虑到两种配置,即恒定直径和密度模型,实验结果和模型结果一致。

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