4.7 Review

A review on application of activated carbons for carbon dioxide capture: present performance, preparation, and surface modification for further improvement

期刊

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 28, 期 32, 页码 43329-43364

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-021-15121-9

关键词

CO2 capture; Activated carbons; Selectivity; Adsorption capacity; Surface modifications; Functional groups

资金

  1. Universiti Sains Malaysia [1001.PJKIMIA.8014115]

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The focus of this review is on the adsorption properties of activated carbons towards CO2 and related research. Studies have shown that the adsorption efficiency of activated carbons is influenced by pore size/shape and surface chemistry, with surface modifications such as NH3, amines, and metal oxides enhancing CO2 adsorption performance. Additionally, the adsorption performance of activated carbons under humid conditions is also highlighted.
The atmosphere security and regulation of climate change are being continuously highlighted as a pressing issue. The crisis of climate change owing to the anthropogenic carbon dioxide emission has led many governments at federal and provincial levels to promulgate policies to address this concern. Among them is regulating the carbon dioxide emission from major industrial sources such as power plants, petrochemical industries, cement plants, and other industries that depend on the combustion of fossil fuels for energy to operate. In view of this, various CO2 capture and sequestration technologies have been investigated and presented. From this review, adsorption of CO2 on porous solid materials has been gaining increasing attention due to its cost-effectiveness, ease of application, and comparably low energy demand. Despite the myriad of advanced materials such as zeolites, carbons-based, metal-organic frameworks, mesoporous silicas, and polymers being researched, research on activated carbons (ACs) continue to be in the mainstream. Therefore, this review is endeavored to elucidate the adsorption properties of CO2 on activated carbons derived from different sources. Selective adsorption based on pore size/shape and surface chemistry is investigated. Accordingly, the effect of surface modifications of the ACs with NH3, amines, and metal oxides on adsorption performance toward CO2 is evaluated. The adsorption performance of the activated carbons under humid conditions is also reviewed. Finally, activated carbon-based composite has been surveyed and recommended as a feasible strategy to improve AC adsorption properties toward CO2.

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