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A review of CO2 capture by absorption in ionic liquid-based solvents

机译:离子液体溶剂吸收吸收二氧化碳的研究进展

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Concern has increased about climate change caused by carbon dioxide (CO2) emissions through human activities in recent years. The Intergovernmental Panel on Climate Change predicts a 1.9 degrees C rise in temperature by the year 2100, and this means a reduction in CO2 is vital for human beings and all other life on earth. Therefore, there is an urgent need for the development of CO2 separation processes to mitigate this potential problem. Post-combustion power plants can employ various types of separation technology. Among them, chemical absorption using aqueous amine is more developed and more reliable. The conventional solvents used in the chemical absorption process together with the use of absorbents, ionic liquid, alkanolamines and their blended aqueous solutions are reviewed in this work. Different ionic liquid-based solvents for CO2 absorption and the most effective parameters on mass transfer phenomena between CO2 and solvent are reviewed. The major concerns for this technology, including the physiochemical properties of ionic liquid-based solvents, Henry's constant and mass transfer coefficient and their correlations, and various factors for effective CO2 absorption, are addressed.
机译:近年来,人们越来越关注由于人类活动造成的二氧化碳(CO2)排放引起的气候变化。政府间气候变化专门委员会预测,到2100年,气温将上升1.9摄氏度,这意味着二氧化碳的减少对人类和地球上所有其他生命至关重要。因此,迫切需要开发CO 2分离方法以减轻该潜在问题。燃烧后发电厂可以采用各种类型的分离技术。其中,使用胺水溶液的化学吸收更发达且更可靠。在这项工作中,对化学吸收过程中使用的常规溶剂以及吸收剂,离子液体,链烷醇胺及其混合水溶液的使用进行了综述。综述了用于吸收CO2的各种离子液体基溶剂,以及有关CO2与溶剂之间传质现象的最有效参数。解决了该技术的主要问题,包括离子液体基溶剂的物理化学性质,亨利常数和传质系数及其相关性以及有效吸收CO2的各种因素。

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