Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations

Yes === Evaluation of economic aspects is one of the main milestones that affect taking rapid actions in dealing with GHGs mitigation; in particular, avoiding CO2 emissions from large source points, such as power plants. In the present study, three kinds of capturing solutions for coal power plants...

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Main Authors: Kheirinik, M., Ahmed, Shaab, Rahmanian, Nejat
Language:en
Published: MDPI 2021
Subjects:
CCS
Online Access:http://hdl.handle.net/10454/18712
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spelling ndltd-BRADFORD-oai-bradscholars.brad.ac.uk-10454-187122021-12-25T05:01:16Z Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations Kheirinik, M. Ahmed, Shaab Rahmanian, Nejat Carbon capture CCS Post-combustion Pre-combustion Oxy-fuel combustion Cost evaluation Total investments Taylor scoring method Aspen HYSYS Power plants Levelised cost of electricity Yes Evaluation of economic aspects is one of the main milestones that affect taking rapid actions in dealing with GHGs mitigation; in particular, avoiding CO2 emissions from large source points, such as power plants. In the present study, three kinds of capturing solutions for coal power plants as the most common source of electricity generation have been studied from technical and economic standpoints. Aspen HYSYS (ver.11) has been used to simulate the overall processes, calculate the battery limit, and assess required equipment. The Taylor scoring method has been utilized to calculate the costliness indexes, assessing the capital and investment costs of a 230 MW power plant using anthracite coal with and without post-combustion, pre-combustion, and oxy-fuel combustion CO2 capture technologies. Comparing the costs and the levelized cost of electricity, it was found that pre-combustion is more costly, to the extent that the total investment for it is approximately 1.6 times higher than the oxy-fuel process. Finally, post-combustion, in terms of maturity and cost-effectiveness, seems to be more attractive, since the capital cost and indirect costs are less. Most importantly, this can be applied to the existing plants without major disruption to the current operation of the plants. 2021-12-13T14:00:57Z 2021-12-23T07:37:54Z 2021-12-13T14:00:57Z 2021-12-23T07:37:54Z 2021-12-08 2021-12-02 2021-12-13T14:01:00Z Article Published version Kheirinik M, Ahmed S and Rahmanian N (2021) Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations. Sustainability. 13(24): 13567. http://hdl.handle.net/10454/18712 en https://doi.org/10.3390/su132413567 (c) 2021 The Authors. This is an Open Access article distributed under the Creative Commons CC-BY license (https://creativecommons.org/licenses/by/4.0/) MDPI
collection NDLTD
language en
sources NDLTD
topic Carbon capture
CCS
Post-combustion
Pre-combustion
Oxy-fuel combustion
Cost evaluation
Total investments
Taylor scoring method
Aspen HYSYS
Power plants
Levelised cost of electricity
spellingShingle Carbon capture
CCS
Post-combustion
Pre-combustion
Oxy-fuel combustion
Cost evaluation
Total investments
Taylor scoring method
Aspen HYSYS
Power plants
Levelised cost of electricity
Kheirinik, M.
Ahmed, Shaab
Rahmanian, Nejat
Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations
description Yes === Evaluation of economic aspects is one of the main milestones that affect taking rapid actions in dealing with GHGs mitigation; in particular, avoiding CO2 emissions from large source points, such as power plants. In the present study, three kinds of capturing solutions for coal power plants as the most common source of electricity generation have been studied from technical and economic standpoints. Aspen HYSYS (ver.11) has been used to simulate the overall processes, calculate the battery limit, and assess required equipment. The Taylor scoring method has been utilized to calculate the costliness indexes, assessing the capital and investment costs of a 230 MW power plant using anthracite coal with and without post-combustion, pre-combustion, and oxy-fuel combustion CO2 capture technologies. Comparing the costs and the levelized cost of electricity, it was found that pre-combustion is more costly, to the extent that the total investment for it is approximately 1.6 times higher than the oxy-fuel process. Finally, post-combustion, in terms of maturity and cost-effectiveness, seems to be more attractive, since the capital cost and indirect costs are less. Most importantly, this can be applied to the existing plants without major disruption to the current operation of the plants.
author Kheirinik, M.
Ahmed, Shaab
Rahmanian, Nejat
author_facet Kheirinik, M.
Ahmed, Shaab
Rahmanian, Nejat
author_sort Kheirinik, M.
title Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations
title_short Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations
title_full Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations
title_fullStr Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations
title_full_unstemmed Comparative Techno-Economic Analysis of Carbon Capture Processes: Pre-Combustion, Post-Combustion, and Oxy-Fuel Combustion Operations
title_sort comparative techno-economic analysis of carbon capture processes: pre-combustion, post-combustion, and oxy-fuel combustion operations
publisher MDPI
publishDate 2021
url http://hdl.handle.net/10454/18712
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AT ahmedshaab comparativetechnoeconomicanalysisofcarboncaptureprocessesprecombustionpostcombustionandoxyfuelcombustionoperations
AT rahmaniannejat comparativetechnoeconomicanalysisofcarboncaptureprocessesprecombustionpostcombustionandoxyfuelcombustionoperations
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