Towards CO2 valorization in a multi remote renewable energy hub framework with uncertainty quantification

In this paper, we propose a multi-RREH (Remote Renewable Energy Hub) based optimization framework. This framework allows a valorization of CO using carbon capture technologies. This valorization is grounded on the idea that CO gathered from the atmosphere or post combustion can be combined with hydr...

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Bibliographic Details
Published in:Journal of Environmental Management
Main Authors: Dachet, Victor, Benzerga, Amina, Coppitters, Diederik, Contino, Francesco, Fonteneau, Raphaël, Ernst, Damien
Other Authors: UCL - SST/IMMC/TFL - Thermodynamics and fluid mechanics
Format: Article in Journal/Newspaper
Language:English
Published: 2024
Subjects:
Online Access:http://hdl.handle.net/2078.1/288576
https://doi.org/10.1016/j.jenvman.2024.121262
Description
Summary:In this paper, we propose a multi-RREH (Remote Renewable Energy Hub) based optimization framework. This framework allows a valorization of CO using carbon capture technologies. This valorization is grounded on the idea that CO gathered from the atmosphere or post combustion can be combined with hydrogen to produce synthetic methane. The hydrogen is obtained from water electrolysis using renewable energy. Such renewable energy is generated in RREH, which are locations where RE is cheap and abundant (e.g., solar PV in the Sahara Desert, or wind in Greenland). We instantiate our framework on a case study focusing on Belgium and 2 RREH, and we conduct a techno-economic analysis under uncertainty. This analysis highlights, among others, the interest in capturing CO via Post Combustion Carbon Capture (PCCC) rather than only through Direct Air Capture (DAC) for methane synthesis in RREH. By doing so, a notable reduction of 10% is observed in the total cost of the system under our reference scenario. In addition, we use our framework to derive a carbon price threshold above which carbon capture technologies may start playing a pivotal role in the decarbonation process of our industries.