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Deactivation Kinetics of Polyethylenimine-based AdsorbentsUsed for the Capture of Low Concentration CO2

机译:聚乙烯亚胺基吸附剂的失活动力学用于捕获低浓度的二氧化碳

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摘要

CO2 emission is generally regarded as the major contributor to global climate change, and polyethylenimine (PEI)-based CO2 adsorbents are promising materials for the capture of low concentration CO2. This paper deals with the deactivation kinetics of PEI-based CO2 adsorbents used for the capture of low concentration CO2. EA and TG analyses demonstrated that thermal degradation and O2-induced deactivation of the adsorbents occurred simultaneously under air exposure conditions. It was found by N2 exposure experiments at the temperature of 50–80 °C that the thermal degradation of PEI-based adsorbents followed a first-order reaction model with an activation energy of 80.98 kJ/mol and a pre-exponential factor of 6.055 × 108 (h–1). The parallel reaction model was employed to distinguish the O2-induced deactivation from the thermal degradation of the adsorbents through air exposure experiments within 50–80 °C. The O2-induced deactivation exhibited a second-order reaction with an activationenergy of 74.47 kJ/mol and a pre-exponential factor of 6.321 ×106 (%–1·h–1).The results of simulating the overall deactivation of the adsorbentsby the parallel reaction kinetic model were well consistent with thoseof the experiments, proving that the parallel reaction model was feasiblefor the description of the deactivation of PEI-based adsorbents.
机译:通常认为CO2排放是全球气候变化的主要因素,而基于聚乙烯亚胺(PEI)的CO2吸附剂是用于捕获低浓度CO2的有前途的材料。本文研究了用于捕获低浓度CO2的PEI基CO2吸附剂的失活动力学。 EA和TG分析表明,在空气暴露条件下,热降解和O2诱导的吸附剂失活同时发生。通过在50–80°C的温度下进行的N2暴露实验发现,PEI基吸附剂的热降解遵循一阶反应模型,其活化能为80.98 kJ / mol,预指数因子为6.055× 10 8 (h –1 )。通过在50–80°C的空气暴露实验中,采用平行反应模型来区分O2引起的失活与吸附剂的热降解。 O2诱导的失活表现出具有激活作用的二级反应能量为74.47 kJ / mol,预指数因子为6.321×10 6 (% –1 ·h –1 )。模拟吸附剂整体失活的结果平行反应动力学模型与实验证明了平行反应模型是可行的用于描述基于PEI的吸附剂的失活。

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