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首页> 外文期刊>Industrial & Engineering Chemistry Research >Carbonation Behavior and the Reaction Kinetic of a New Dry Potassium-Based Sorbent for CO2 Capture
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Carbonation Behavior and the Reaction Kinetic of a New Dry Potassium-Based Sorbent for CO2 Capture

机译:碳化行为的反应动力学二氧化碳捕获的新干Potassium-Based吸着剂

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The carbonation behaviors of K2CO3 generated by calcination of KHCO, were investigated with a pressurized thermo gravimetric apparatus, and the shrinking-core model in the noncatalytic heterogeneous reaction systems was used to explain the kinetics of the reaction between K2CO3, CCv, and H2O using analysis of the experimental breakthrough data. The carbonation reaction process can be divided into two stage-controlled regions, one is the surface chemical reaction-controlled region at the initial stage and another is the internal diffusion-controlled region at the last stage, The total amount of carbonation conversion is mainly dependent on the first stage. The reaction rate of this stage decreases as the reaction temperature increases. It increases in the same temperature when the CO2 and H2O concentrations increase. The total carbonation conversion decreases as the pressure increases. On the basis of the Arrhenius equation, the apparent activation energy and pre-exponential factor for these two stages are calculated, when the temperature is in the range of 55-80 °C and the pressure is 0.1 MPa. They are 33.4 kJ/mol and 3.56 cm/min for the surface chemical reaction-controlled region and 99.1 kJ/mol and 4.01 X 10~(22) cm~2/min for the internal diffusion-controlled region. This paper provides theoretical basis for the further study on the capture of CO2 from flue gas using dry potassium-based sorbents.
机译:K2CO3的碳化行为产生的KHCO煅烧的调查了加压热重力仪器,在非催化缩芯模型多相反应系统被用来解释之间的反应动力学K2CO3、闭路和水使用的分析实验突破数据。反应过程可分为两个stage-controlled区域,一个是表面化学反应控制的地区初始阶段,另一个是内部的在最后阶段,diffusion-controlled地区碳化转换的总量主要依赖于第一阶段。这个阶段的速度降低的反应温度增加。温度时,CO2和H2O浓度增加。减少随着压力的增加。阿仑尼乌斯方程,明显活化能和pre-exponential因素这两个阶段计算,当温度在55 - 80°C和0.1 MPa的压力。表面化学3.56厘米/分钟反应控制地区和99.1焦每摩尔4.01 X 10 ~(22)厘米~ 2内部/分钟diffusion-controlled地区。理论基础上的进一步研究捕获的二氧化碳通过烟气干燥potassium-based吸着剂。

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