Technical analysis of CO2 capture pathways and technologies

Технический анализ направлений и технологий улавливания CO2
J.A. González García, María Villén-Guzmán, José Miguel Rodríguez‐Maroto, Juan Manuel Paz-García
2022-08-29

Biogas upgradingCO2 capture technologiesDirect Air CapturePost-combustion captureTechno-economic analysis
The reduction of CO2 emissions to minimize the impact of the climate change has become a global priority. The continuous implementation of renewable energy sources increases energy efficiency, while the reduction of CO2 emissions opens new options for carbon capture technologies to reduce greenhouse gases emissions. The combination of carbon capture with renewable energy balancing production offers excellent potential for fuels and chemical products and can play an essential role in the future energy system. This paper includes a critical review of the state of the art of different CO2 capture engineering pathways and technologies including a techno-economics analysis and focusing on comparing these technologies depending on the final CO2 application. The current cost for CO2 capture is in the range of 60–110 USD/t, likely to halve by 2030. This review offers technical information to select the most appropriate technology to be used in specific processes and for the different carbon capture pathways, i.e., Pre-combustion, Post-Combustion and Direct Air Capture. This comparison includes the CO2 capture approach for biomethane production by biogas upgrading to substitute fossil natural gas and other alternatives fuels production routes which will be introduces in future works performed by this review authors.
1
Combining carbon capture with renewable-energy balancing could support production of fuels and chemicals while contributing to future energy systems.
2
Current CO2 capture costs are estimated at 60–110 USD per tonne and are expected to approximately halve by 2030.
3
Technology selection should depend on the specific process and intended final CO2 application.
4
The review critically compares pre-combustion, post-combustion, and direct-air-capture pathways using technical and techno-economic criteria.
5
The review includes CO2 capture considerations for biomethane production through biogas upgrading as an alternative to fossil natural gas.

CO2 capture pathways and technologies

Technical, techno-economic, and application-dependent comparison of pre-combustion, post-combustion, and direct-air-capture technologies

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Publication Date
2022-08-29
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Authors
J.A. González García
María Villén-Guzmán
José Miguel Rodríguez‐Maroto
Juan Manuel Paz-García
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