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Temperature and pressure dependence of the CO2 absorption through a ceramic hollow fiber membrane contactor module

机译:CO2通过陶瓷中空纤维膜接触器模块的温度和压力依赖性

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摘要

Temperature and pressure dependence of the CO2 absorption through a ceramic hollow fiber membrane contactor (CHFMC) modules were extensively evaluated and optimized. Results are presented for a CHFMC module consisting of 200 ceramic fibers in a single compact unit. The effect of gas temperatures and liquid absorbent temperatures was studied by altering the CO2 gas (N-2 balance) and monoethanolamine (MEA) absorbent temperatures (20 - 50 degrees C). CO2 removal efficiency (%) was also evaluated as a function of CO2 gas composition (1.5-13 %, N-2 balance). The CO2 removal efficiency (%) slightly increases when the temperature of the injected gas temperature increases from 20 degrees C to 40 degrees C, and then decreases as the temperature further increases from 40 degrees C to 50 degrees C. The MEA absorbent temperatures did not have a notable effect on the CHFMC module performance in the specific temperature range studied in this work. The effects of the liquid pressure drop do not appear to be significant for a given gas flow rate, but the gas pressure drop increases with gas flow rate and gas temperature. The findings in this study show that a CHFMC process is affected by the CO2 gas temperature and composition but quite independent of the MEA absorbent temperature.
机译:通过陶瓷中空纤维膜接触器(CHFMC)模块的CO 2吸收的温度和压力依赖性进行了广泛评估和优化。提出了一种CHFMC模块,其由单个紧凑型单元中的200个陶瓷纤维组成。通过改变CO 2气体(N-2平衡)和单乙醇胺(MEA)吸收温度(20-50℃)来研究气温和液体吸收温度的影响。还根据CO 2气体组合物(1.5-13%,N-2平衡)评价CO 2去除效率(%)。当注入的气体温度的温度从20℃升高到40℃时,CO 2去除效率(%)略微增加,然后随着温度从40℃升高到50℃的温度进一步增加而降低。MEA吸收温度没有对在本工作中研究的特定温度范围内的CHFMC模块性能具有显着影响。对于给定的气体流速,液体压降的效果看起来不显着,但是气体压降随气体流速和气体温度而增加。该研究中的发现表明,CHFMC工艺受到二氧化碳气体温度和组成的影响,而是与MEA吸收温度相似的影响。

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