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The effect of pore structure on the CO2 adsorption efficiency of polyamine impregnated porous carbons

机译:孔结构对多胺浸渍多孔炭CO2吸附效率的影响

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摘要

The effect of polyamine impregnation on the CO2 adsorption properties of two different porous carbons, one microporous and one mesoporous, was studied systematically. The pore filling during impregnation with polyamines was shown to result in a fraction of the unfilled micropore volume being blocked for gas adsorption. Thermal gravimetric analysis was used to compare the CO2 capacity at 0.1 bar with respect to the carbon support type, the amount of amine loading, and the type of amine. A 12 fold increase in the CO2 capacity was observed when the impregnated activated carbon was compared to the raw starting material. A heat of adsorption for amine impregnated support of ~90 kJ mol-1 was found, clearly indicating a chemisorption mechanism. The mesoporous material provided a more efficient support for the amine to interact with the CO2. The interaction between low molecular weight amines and CO2 showed a more efficient utilization of the basic groups in comparison to high molecular weight species.
机译:系统研究了多胺浸渍对两种不同的多孔碳(一种微孔和一种中孔)的CO2吸附性能的影响。显示在用多胺浸渍期间的孔填充导致未填充的微孔体积的一部分被气体吸附阻塞。使用热重量分析法,相对于碳载体类型,胺负载量和胺类型,比较了0.1 bar的CO2容量。当将浸渍的活性炭与原料进行比较时,观察到CO2容量增加了12倍。发现胺浸渍的载体的吸附热为〜90 kJ mol-1,清楚地表明了化学吸附机理。介孔材料为胺与CO2相互作用提供了更有效的载体。与高分子量物质相比,低分子量胺与CO2之间的相互作用显示出对碱性基团的更有效利用。

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