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A discrete-pore-size-distribution-based gas-solid model and its application to the CaO+CO2 reaction

机译:基于离散孔径分布的气固模型及其在CaO + CO2反应中的应用

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摘要

Experimental data obtained in both atmospheric and pressurized thermogravimetric reactors indicate that carbonation is insensitive to the CO2 partial pressure in terms of final conversion and apparent carbonation rate. A new gas-solid model is formulated to describe the entire experimental carbonation history, with measured rate constant and pore size distribution data as input. The effective diffusivity in the product layer is the only fitting parameter, dependent on the evolution of the pores. The model is able to predict atmospheric and pressurized thermogravimetric reactor carbonation data with fitted activation energies of 215 and 187 kJ/mol for the limestone and dolomite tested. (C) 2007 Elsevier Ltd. All rights reserved.
机译:在大气和加压热重反应器中获得的实验数据表明,就最终转化率和表观碳酸化率而言,碳酸化对CO2分压不敏感。建立了一个新的气固模型来描述整个实验碳化历史,并以测得的速率常数和孔径分布数据作为输入。产品层中的有效扩散率是唯一适合的参数,取决于孔的演变。该模型能够通过测试的石灰石和白云石的活化能为215和187 kJ / mol来预测大气和加压热重反应器的碳化数据。 (C)2007 Elsevier Ltd.保留所有权利。

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