Recent Advances in CO2 Adsorption from Air: a Review

被引:0
作者
Meng Yang
Chao Ma
Mimi Xu
Shujuan Wang
Lizhen Xu
机构
[1] Tsinghua University,Department of Energy and Power Engineering
[2] Tsinghua University,Beijing Engineering Research Center for Ecological Restoration and Carbon Fixation of Saline
来源
Current Pollution Reports | 2019年 / 5卷
关键词
CO; adsorption; Air capture; Adsorption process; Practical factors;
D O I
暂无
中图分类号
学科分类号
摘要
Carbon dioxide (CO2) adsorption from air and storage is a developing technology that can achieve negative carbon emissions, therefore easing climate deterioration. However, adsorbing CO2 from air is still a challenge when compared to the high CO2 concentration sources such as flue gas and syngas because it is hard to separate the steady and dilute target gas accurately with a moderate approach. Most related literatures focus on the development of adsorbents for higher adsorption capacity and lower regeneration energy consumption. However, studies on practical factors and adsorption processes are also necessary for engineering applications. Based on research of the CO2 adsorption, an introduction to recent advances in dilute CO2 adsorption using physical or chemical adsorbents is presented, and practical factors are emphasized. From the aspect of structure-property relationships, porous structure optimization of adsorbents is discussed for better equilibrium capacity and adsorption kinetics. Effects of practical parameters (such as moisture, fluctuating temperature, and oxygen) on working performance, especially stability of adsorbents, are revealed. Moisture influences are complex and multifaceted, so possible mechanisms of the moisture influences are summarized to help readers understand. Adsorption processes of capturing CO2 from air are also discussed and compared, distinguishing from the adsorption processes with other feeds. Energy supply and gas-solid contactors which are vital in practical adsorption process are discussed separately.
引用
收藏
页码:272 / 293
页数:21
相关论文
共 535 条
[1]  
Le Quéré C(2018)Global carbon budget 2018 Earth Syst Sci Data 10 2141-2194
[2]  
Andrew RM(2018)Negative emissions—Part 1: Research landscape and synthesis Environmental Research Letters 13 063001-1678
[3]  
Friedlingstein P(2003)A guide to CO Science. 300 1677-975
[4]  
Minx Jan C(2019) sequestration Appl Energy 250 959-45
[5]  
Lamb William F(2006)A sorbent-focused techno-economic analysis of direct air capture Clim Chang 74 17-134
[6]  
Callaghan Max W(2018)Climate strategy with CO Energy Procedia 146 129-1399
[7]  
Fuss Sabine(2008) capture from the air AIChE J 54 1396-1594
[8]  
Hilaire Jérôme(2018)Creating a carbon dioxide removal solution by combining rapid mineralization of CO Joule. 2 1573-221
[9]  
Creutzig Felix(2015) with direct air capture Build Environ 92 209-2529
[10]  
Amann Thorben(2013)Experimental results for capturing CO Phys Chem Chem Phys 15 2523-871