Optimization of the design, operating conditions, and coupling configuration of combined cycle power plants and CO2 capture processes by minimizing the mitigation cost

Author:

Mores Patricia L.,Manassaldi Juan I.,Scenna Nicolás J.,Caballero José A.,Mussati Miguel C.,Mussati Sergio F.

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry

Reference153 articles.

1. Carbon capture, storage and utilisation technologies: A critical analysis and comparison of their life cycle environmental impacts;Cuéllar-Franca;J. CO2 Util.,2015

2. Recent advances in green energy and product productions, environmentally friendly, healthier and safer technologies and processes, CO2 capturing, storage and recycling, and sustainability assessment in decision-making;Kravanja;Clean Techn. Environ. Policy,2015

3. Exergy-based evaluation of methanol production from natural gas with CO2 utilization;Blumberg;Energy,2017

4. M. Martín, I.E. Grossmann, Enhanced production of methanol from switchgrass : CO2 to methanol, Proceedings of the 26th European Symposium on Computer Aided Process Engineering – ESCAPE 26. Elsevier B.V., Portorož, Slovenia, (2016) 43–48.

5. A model-based analysis of CO2 utilization in methanol synthesis plant;Milani;Biochem. Pharmacol.,2015

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