A Comprehensive Review on Recent Advancements in Absorption-Based Post Combustion Carbon Capture Technologies to Obtain a Sustainable Energy Sector with Clean Environment

Author:

Peu Susmita Datta1ORCID,Das Arnob2ORCID,Hossain Md. Sanowar2,Akanda Md. Abdul Mannan3ORCID,Akanda Md. Muzaffer Hosen4,Rahman Mahbubur5,Miah Md. Naim6,Das Barun K.2,Islam Abu Reza Md. Towfiqul7ORCID,Salah Mostafa M.8ORCID

Affiliation:

1. Department of Agriculture, Hajee Mohammad Danesh Science and Technology University, Dinajpur 5200, Bangladesh

2. Department of Mechanical Engineering, Rajshahi University of Engineering and Technology, Rajshahi 6204, Bangladesh

3. School of Engineering and Technology, Central Michigan University, Mount Pleasant, MI 48859, USA

4. Department of Manufacturing Engineering, Texas State University, Waco, TX 78666, USA

5. Ingram School of Engineering, Texas State University, San Marcos, TX 78666, USA

6. Design Engineer, Regal Rexnord Corporation, Beloit, WI 53511, USA

7. Department of disaster management, Begum Rokeya University, Rangpur 5400, Bangladesh

8. Electrical Engineering Department, Future University in Egypt, Cairo 11835, Egypt

Abstract

CO2 capture, use, and storage have been identified as significant strategies for reducing greenhouse gas emissions induced by the usage of fossil fuels. The current review focuses on the concepts of post-combustion capture technologies based on absorption mechanisms. Among all other developed technologies, researchers have proposed absorption as the most mature carbon capture technology for industrial-scale application. Absorption-based carbon capture can be classified into chemical and physical absorption, and researchers have developed different solvents and absorbent materials to investigate their performance in CO2 capture. This paper comprehensively reviewed these established solvents and absorbents with their performance parameters in the CO2 absorption approach. Besides the improvement in widely applied absorbents such as amine-based absorbents, recently, researchers have been working to develop some advanced nanomaterials such as nanofluids and nano-emulsions. This review focuses on the application of such absorption mechanisms that can contribute to capturing CO2 in a compact, environment-friendly, and safe way. This paper also provides future research direction for further development in absorption-based CO2 capture.

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

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