Authors
Xuancan Zhu, Wenwen Xie, Junye Wu, Yihe Miao, Chengjie Xiang, Chunping Chen, Bingyao Ge, Zhuozhen Gan, Fan Yang, Man Zhang, Dermot O'Hare, Jia Li, Tianshu Ge, Ruzhu Wang
Publication date
2022
Source
Chemical Society Reviews
Volume
51
Issue
15
Pages
6574-6651
Publisher
Royal Society of Chemistry
Description
Significant progress has been made in direct air capture (DAC) in recent years. Evidence suggests that the large-scale deployment of DAC by adsorption would be technically feasible for gigatons of CO2 capture annually. However, great efforts in adsorption-based DAC technologies are still required. This review provides an exhaustive description of materials development, adsorbent shaping, in situ characterization, adsorption mechanism simulation, process design, system integration, and techno-economic analysis of adsorption-based DAC over the past five years; and in terms of adsorbent development, affordable DAC adsorbents such as amine-containing porous materials with large CO2 adsorption capacities, fast kinetics, high selectivity, and long-term stability under ultra-low CO2 concentration and humid conditions. It is also critically important to develop efficient DAC adsorptive processes. Research and …
Total citations
20222023202447572
Scholar articles
X Zhu, W Xie, J Wu, Y Miao, C Xiang, C Chen, B Ge… - Chemical Society Reviews, 2022