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Research progress of CO2 separation technology by solvent absorption

离子液体 吸附 吸收(声学) 试剂 胺气处理 化学工程 化学 气体分离 材料科学 有机化学 无机化学 催化作用 生物化学 工程类 复合材料
作者
Binxin Huang
出处
期刊:E3S web of conferences [EDP Sciences]
卷期号:385: 04032-04032 被引量:1
标识
DOI:10.1051/e3sconf/202338504032
摘要

The combustion of fossil fuels emits a large amount of CO 2 , which causes the greenhouse effect and leads to global warming and poses a serious threat to life on earth. CO 2 capture technology can effectively reduce the concentration of CO 2 in the atmosphere, alleviate the greenhouse effect, and improve the environment. CO 2 capture technologies include absorption, membrane separation and adsorption separation, among which chemical absorption and separation have the advantages of high efficiency, low cost and easy availability of materials. In this paper, the advantages and disadvantages of three main chemical absorption and separation methods (inorganic reagents, organic amines and ionic liquids) adsorb CO 2 are summarized. Among inorganic adsorbents, NH 3 ·H 2 O can achieve rapid and efficient absorption of CO 2 , and it is relatively stable and not easy to degrade. Common types of organic amine adsorbents are monoethanolamine, methanolamine, and sterically hindered amine. However, it is difficult for a single organic amine adsorbent to meet the requirements of high absorption rate, high absorption capacity and low reaction heat at the same time. Therefore, mixing organic amine absorbents with different characteristics can improve their performance in absorbing CO 2 . Ionic liquids have the advantages of good thermal stability, very low saturation vapor pressure, and designable structure, and are a new type of CO 2 adsorbent, but ionic liquids have high viscosity themselves. Combining ionic liquids with organic or inorganic porous materials to form loaded ionic liquid materials, which can be used as CO 2 adsorbent not only to improve the separation effect, but also to avoid the problem of high viscosity caused by direct absorption of ionic liquids, thus improving CO 2 adsorption efficiency.

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