The European Union’s enhanced greenhouse gas (GHG) reduction targets for 2030 make the large-scale deployment of carbon capture and storage (CCS) technologies essential to achieve deep decarbonization goals. Within this context, this study aims to advance CCS research by developing and testing a pilot-scale system that integrates gasification for syngas and power production with CO2 absorption and solvent regeneration. The work focuses on improving and validating the operability of a pilot plant section designed for CO2 capture, capable of processing up to 40 kg CO2 per day through a 6 m absorber and stripper column. Experimental campaigns were carried out using different amine-based absorbents under varied operating conditions and liquid-to-gas (L/G) ratios to evaluate capture efficiency, stability, and regeneration performance. The physical properties of regenerated and CO2-saturated solvents (density, viscosity, pH, and CO2 loading) were analyzed as potential indicators for monitoring solvent absorption capacity. In parallel, a process simulation and optimization study was developed in Aspen Plus, implementing a split-flow configuration to enhance energy efficiency. The combined experimental and modeling results provide insights into the optimization of solvent-based CO2 capture processes at pilot scale, supporting the development of next-generation capture systems for low-carbon energy applications.

Experimental Test and Modeling Validation for CO2 Capture with Amine Solvents in a Pilot Plant / Bassano, Claudia; Micciancio, Mattia; Deiana, Paolo; Calì, Gabriele; Maggio, Enrico; Colelli, Leonardo; Vilardi, Giorgio. - In: CLEAN TECHNOLOGIES. - ISSN 2571-8797. - 8:1(2026). [10.3390/cleantechnol8010006]

Experimental Test and Modeling Validation for CO2 Capture with Amine Solvents in a Pilot Plant

Bassano, Claudia
Primo
;
Micciancio, Mattia
Secondo
;
Colelli, Leonardo;Vilardi, Giorgio
Ultimo
2026

Abstract

The European Union’s enhanced greenhouse gas (GHG) reduction targets for 2030 make the large-scale deployment of carbon capture and storage (CCS) technologies essential to achieve deep decarbonization goals. Within this context, this study aims to advance CCS research by developing and testing a pilot-scale system that integrates gasification for syngas and power production with CO2 absorption and solvent regeneration. The work focuses on improving and validating the operability of a pilot plant section designed for CO2 capture, capable of processing up to 40 kg CO2 per day through a 6 m absorber and stripper column. Experimental campaigns were carried out using different amine-based absorbents under varied operating conditions and liquid-to-gas (L/G) ratios to evaluate capture efficiency, stability, and regeneration performance. The physical properties of regenerated and CO2-saturated solvents (density, viscosity, pH, and CO2 loading) were analyzed as potential indicators for monitoring solvent absorption capacity. In parallel, a process simulation and optimization study was developed in Aspen Plus, implementing a split-flow configuration to enhance energy efficiency. The combined experimental and modeling results provide insights into the optimization of solvent-based CO2 capture processes at pilot scale, supporting the development of next-generation capture systems for low-carbon energy applications.
2026
co2 capture; amine absorption; regeneration duty; absorption modelling
01 Pubblicazione su rivista::01a Articolo in rivista
Experimental Test and Modeling Validation for CO2 Capture with Amine Solvents in a Pilot Plant / Bassano, Claudia; Micciancio, Mattia; Deiana, Paolo; Calì, Gabriele; Maggio, Enrico; Colelli, Leonardo; Vilardi, Giorgio. - In: CLEAN TECHNOLOGIES. - ISSN 2571-8797. - 8:1(2026). [10.3390/cleantechnol8010006]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1758165
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