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Kinetic study of biomass char combustion in a low temperature fluidized bed reactor

机译:低温流化床反应器中生物质炭燃烧的动力学研究

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The purpose of this work is the kinetic study of biomass char combustion in a low temperature fluidized bed reactor. This char was obtained from fast pyrolysis of beech stick in an annex batch fluidized bed reactor at 923 K and atmospheric pressure. Operating conditions of the combustion were thoroughly characterized so that the reaction takes place in isothermal conditions and a constant oxygen partial pressure. The kinetic study was performed for temperatures up to 643 K, oxygen partial pressures ranging from 5065 to 21273 Pa and cylindrical char particles (D = 4 mm and L = 9 mm). The Volumetric Model was found to be in very good agreement with experimental data. Values of activation energy and reaction order with respect to oxygen are respectively equal to 144 kJ/mol and 0.59. The reaction scheme during char combustion showed that char first reacts with oxygen to form CO which is further oxidized either at the particle surface or in the gas phase to produce CO2. Besides, it was found that the char reactivity in combustion is higher in a fluidized bed reactor compared to TGA. This was explained by diffusional effects of oxygen and CO oxidation within the crucible in the TGA.
机译:该工作的目的是低温流化床反应器中生物质炭燃烧的动力学研究。该炭来自923 k和大气压的附件批量流化床反应器中的山毛榉棒的快速热解。燃烧的操作条件彻底表征,使反应发生在等温条件下和恒定的氧分压中。对高达643 k的温度进行动力学研究,从5065至21273Pa和圆柱形炭颗粒(d = 4mm和l = 9mm)的温度。发现体积模型与实验数据非常好。激活能量和相对于氧气的反应顺序的值分别等于144kJ / mol和0.59。炭燃烧期间的反应方案显示,Char首先与氧气反应形成Co,其在颗粒表面或气相中进一步氧化以产生CO 2。此外,结果发现,与TGA相比,流化床反应器中燃烧中的Char反应性更高。这是通过在TGA中坩埚内的氧气和共氧化的扩散效应来解释。

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