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Performance of MAPA promoted tertiary amine systems for CO2 absorption: Influence of alkyl chain length and hydroxyl groups

机译:mapa的性能促进了叔胺系统的CO2吸收:烷基链长度和羟基的影响

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摘要

Absorption and desorption of CO2 into five aqueous tertiary amine solvents and their blends with MAPA were studied using a screening apparatus. Results showed that MAPA significantly enhanced both CO2 absorption rate and absorption capacity. The solvent system with the highest CO2 absorption capacity and cyclic CO2 capacity was 3 M DEEA + 1 M MAPA with a CO2 loading of 2.72 mole CO2/kg solution and a cyclic CO2 capacity of 2.06 mole CO2/kg solution. For both the single and the blended systems, the CO2 absorption capacity decreased when increasing the number of ethanolamine groups on the tertiary amine (DEEA → EDEA → TEA) and when the alkyl chain length in the tertiary amine was increased (EDEA → BDEA). When the alkyl amine group in the tertiary amine became hindered (BDEA → t-BDEA), the CO2 absorption capacity increased.
机译:使用筛选设备研究了CO2在五种叔胺水溶液及其与MAPA的共混物中的吸收和解吸。结果表明,MAPA显着提高了CO2的吸收速率和吸收能力。具有最高CO2吸收容量和循环CO2容量的溶剂系统为3 M DEEA + 1 M MAPA,CO2负载量为2.72摩尔CO2 / kg溶液,循环CO2容量为2.06摩尔CO2 / kg溶液。对于单体系和共混体系,当增加叔胺上的乙醇胺基团的数目(DEEA→EDEA→TEA)时,以及叔胺中的烷基链长度增加(EDEA→BDEA)时,CO2吸收能力都会降低。当叔胺中的烷基胺基团受阻时(BDEA→t-BDEA),CO2吸收能力增加。

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