首页> 外文会议>2011 International Conference on Computer Distributed Control and Intelligent Environmental Monitoring >Can CO2 Regeneration Heat Consumption Be Reduced by Using the Novel “Mass Concentration of Solvent Swing Regeneration (MCSR)” Technology?
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Can CO2 Regeneration Heat Consumption Be Reduced by Using the Novel “Mass Concentration of Solvent Swing Regeneration (MCSR)” Technology?

机译:通过使用新颖的“溶剂摆幅再生(MCSR)的质量浓度”技术,可以减少二氧化碳再生的热量消耗吗?

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To reduce CO2 regeneration heat consumption inCO2 capture process, a novel concept named ¡°massconcentration of CO2-rich solution swing regeneration(MSCR)¡± was put forward in this study. Experiments were executed to investigate the feasibility and energy reduction potential of MSCR by using MEA as absorbent. Results show that CO2 regeneration performance can be improved greatly when MSCR was adopted. In addition, relatively high but appropriate mass concentration should be recommended to be selected for the initial CO2 rich solution. And experimental results also prove that MCSR technology may be more viable for the bicarbonate-producing systems between the reaction ofCO2 and absorbent or for carbamate-producing systems with high CO2 loading. Finally, evaluation of total regeneration heat consumption shows that the total CO2 regeneration heat consumption can be reduced by at least about 25%for MSCR.
机译:为减少CO2捕集过程中CO2再生的热量消耗,提出了一个新概念“富CO2溶液变质再生(MSCR)的质量浓度”。进行了实验以研究使用MEA作为吸收剂的MSCR的可行性和节能潜力。结果表明,采用MSCR可以大大提高CO2的再生性能。此外,应为初始富含CO2的溶液选择相对较高但适当的质量浓度。实验结果还证明,MCSR技术对于CO2与吸收剂之间的碳酸氢盐生成系统或高CO2负载的氨基甲酸酯生成系统可能更可行。最后,对总再生热量消耗的评估表明,对于MSCR,总的CO2再生热量消耗可以减少至少约25%。

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