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首页> 外文期刊>Journal of natural gas science and engineering >Using modified Avrami kinetic and two component isotherm equation for modeling of CO2/N-2 adsorption over a 13X zeolite bed
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Using modified Avrami kinetic and two component isotherm equation for modeling of CO2/N-2 adsorption over a 13X zeolite bed

机译:使用改进的Avrami动力学和两组分等温线方程对13X沸石床上的CO2 / N-2吸附进行建模

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摘要

Post combustion capture is one of the major strategies for removing dilute CO2 from flue gases. Using appropriate adsorbents is an effective approach for post combustion CO2 capture. An industrial application of the CO2 adsorption process as well as the design of the necessary equipment requires an accurate model to determine the effect of various operating factors on the efficiency of the process. Previous studies used linear driving force (LDF) approximation for the mass transfer and single component isotherm equation to describe the kinetics and equilibrium conditions of CO2 and N-2 on an adsorbent. In spite of all previous models that had high significant error of about 10%, this research proposes a novel fixed bed model with outstanding accuracy. For the first time, a modified Avrami kinetic (as a new kinetic model) and two components Toth isotherm are used for estimating the kinetic and equilibrium data of CO2/N-2 adsorption on 13X zeolite. Model estimated values were in good agreement with actual data with an error in the range of 3-5%. Finally, the effects of various operating conditions including temperature, inlet CO2 concentration, adsorbent particle and flowrate on adsorption performance were investigated and it was concluded that the temperature is the most important and effective operating parameter on CO2 adsorption performance. (C) 2015 Elsevier B.V. All rights reserved.
机译:燃烧后捕集是从烟道气中去除稀二氧化碳的主要策略之一。使用适当的吸附剂是燃烧后捕获二氧化碳的有效方法。 CO 2吸附过程的工业应用以及必要设备的设计需要一个精确的模型来确定各种操作因素对过程效率的影响。以前的研究使用线性驱动力(LDF)近似进行传质和单组分等温方程描述了吸附剂上CO2和N-2的动力学和平衡条件。尽管所有先前的模型都具有约10%的高显着误差,但本研究提出了一种具有出色准确性的新型固定床模型。首次使用改进的Avrami动力学(作为新的动力学模型)和两个成分Toth等温线估算了13X沸石上CO2 / N-2吸附的动力学和平衡数据。模型估计值与实际数据非常吻合,误差范围为3-5%。最后,研究了温度,入口CO2浓度,吸附剂颗粒和流速等各种工况对吸附性能的影响,并得出结论温度是影响CO2吸附性能最重要,最有效的操作参数。 (C)2015 Elsevier B.V.保留所有权利。

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