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Spouted Bed Reactor for kinetic Measurements of Reduction of Fe2O3 in a CO2/CO Atmosphere Part I - Atmospheric Pressure Measurements and Equipment Commissioning

机译:用于在CO 2 / CO气氛中还原Fe 2 O 3的动力学测量的喷动床反应器第I部分 - 大气压力测量和设备调试

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摘要

A high pressure and high temperature spouted bed reactor, operating in fluidisation mode, has been designed and validated at low pressure for the study of gas-solid reaction kinetics. Measurements suggested the bed exhibited a fast rate of gas interchange between the bubble and particulate phases. Pressurised injection of the particles to the bottom of the bed allowed the introduction of solid reactants in a simple and controlled manner. The suitability of the reactor for the purpose of kinetic studies was demonstrated by investigation of the intrinsic kinetics of the initial stage of the reduction of Fe2O3 with CO over multiple cycles for chemical looping. Changes of pore structure over the initial cycles were found to affect the observed kinetics of the reduction. The initial intrinsic rate constant of the reduction reaction (ki) was measured by using a kinetic model which incorporated an effectiveness factor. The uncertainty arising from the measurement of particle porosity in the model was compensated for by the tortuosity factor. The average activation energy obtained for cycles three to five was 61 ± 8 kJ/mol, which is comparable with previous studies using both fluidised beds and thermogravimetry.
机译:已经设计并在低压下验证了在流化模式下运行的高压高温喷射床反应器,用于研究气固反应动力学。测量表明该床在气泡和颗粒相之间表现出快速的气体交换速率。将颗粒加压注射到床的底部允许以简单和受控的方式引入固体反应物。反应器在动力学研究中的适用性通过研究在化学循环的多个循环中用CO还原Fe2O3的初始阶段的内在动力学来证明。发现在初始循环中孔结构的变化会影响观察到的还原动力学。还原反应的初始固有速率常数(ki)通过使用结合了有效因子的动力学模型来测量。模型中因颗粒孔隙度的测量而产生的不确定性已通过曲折因子进行了补偿。在第三个至第五个循环中获得的平均活化能为61±8 kJ / mol,与先前使用流化床和热重分析的研究结果相当。

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