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Recent advances in carbon dioxide capture with metal‐organic frameworks
Author(s) -
Liu Yangyang,
Wang Zhiyong U.,
Zhou HongCai
Publication year - 2012
Publication title -
greenhouse gases: science and technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.45
H-Index - 32
ISSN - 2152-3878
DOI - 10.1002/ghg.1296
Subject(s) - carbon capture and storage (timeline) , adsorption , metal organic framework , flue gas , greenhouse gas , carbon dioxide , carbon fibers , environmental science , nanotechnology , materials science , process engineering , waste management , chemistry , climate change , engineering , organic chemistry , geology , oceanography , composite number , composite material
Uncontrolled massive release of the primary greenhouse gas carbon dioxide (CO 2 ) into atmosphere from anthropogenic activities poses a big threat and adversely affects our global climate and natural environment. One promising approach to mitigate CO 2 emission is carbon capture and storage (CCS), in which ideal adsorbent materials with high storage capacity and excellent adsorption selectivity over other gases are urgently needed. For practical applications in CO 2 capture from flue gas of power plants, the biggest single contributor of anthropogenic CO 2 emission, the adsorbent materials must also be chemically stable, be easy to regenerate with minimal energy input, and be easily synthesized with low capital cost. Metal‐organic frameworks (MOFs), highly crystalline porous materials constructed by metal ions and organic ligands, have emerged as a class of excellent adsorbent materials for carbon capture. Great progress in MOF materials for CO 2 capture has been made in the past and reviewed accordingly, but new discoveries are constantly being made as the field quickly grows. In this paper, we provide a short review on the most recent advances in using MOFs for CO 2 adsorption, storage, and separation that are directly related to CO 2 capture. Some of the important properties of MOF adsorbents which are crucial for practical applications but are largely overlooked in research carried out so far are discussed. © 2012 Society of Chemical Industry and John Wiley & Sons, Ltd