Article (Scientific journals)
Towards the integration of Remote Renewable Energy Hubs with CCUS chain for a future energy system: the Belgian case
Mbenoun, Jocelyn; Costa, Alexis; Dachet, Victor et al.
2026In Applied Energy, 426, p. 128428
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Keywords :
Remote Renewable Energy Hubs; Energy; Carbon capture; Low-carbon fuel imports
Abstract :
[en] This article proposes a future multi-carrier energy system model for regions with a high energy demand but a limited renewable energy potential. These regions are particularly challenged to reach their CO2 emission reduction targets. The system implies to combine the imports of low carbon resources as well as to set-up an efficient Carbon Capture, Utilization and Storage (CCUS) supply chain. Low carbon energy resources could be imported from Remote Renewable Energy Hubs (RREH), which are regions with a high renewable energy potential, but a low local energy demand. The proposed multi energy system is applied to the specific case of Belgium. It models legacy generation capacities, renewable energy potential, several carbon capture technologies, and the possibility to sequestrate or valorize the captured CO2 while serving three primary energy commodities: electricity, natural gas (methane - CH4) and hydrogen - H2. The Belgian system is interconnected with neighbor systems, RREHs and sequestration sites with the possibility to import energy and export CO2. In the RREHs, two types of e-fuels can be produced and shipped back to Belgium: (i) green H2 using electrolysis and renewable energy and (ii) e-CH4 by combining green-H2 with CO2, either imported from Belgium or locally captured through Direct Air Capture (DAC) technologies. The post-combustion CO2 capture (PCCC) in Belgium is modeled considering two different technologies (capture by absorption using monoethanolamine (MEA) solvent and a hybrid carbon capture plant combining vacuum pressure swing absorption (VPSA) process with a cryogenic carbon purification unit (CPU)) with several capture configurations. Different characteristics of the CO2 emitters and technical requirements of CCUS technologies (pressure, liquefaction, transport, storage) are considered. Results show that, since the renewable energy potential is limited in Belgium, access to CO2 sequestration capacity is crucial for reaching CO2 emissions reduction target. If the sequestration capacity is limited, energy imports from the RREHs become inevitable. This leads to higher energy costs in Belgium, resulting in a shift in the choice of PCCC technologies.
Disciplines :
Energy
Author, co-author :
Mbenoun, Jocelyn ;  Université de Liège - ULiège > Montefiore Institute of Electrical Engineering and Computer Science
Costa, Alexis;  UMONS - University of Mons
Dachet, Victor  ;  Université de Liège - ULiège > Département d'électricité, électronique et informatique (Institut Montefiore) > Smart grids
Fonteneau, Raphaël  ;  Université de Liège - ULiège > Département d'électricité, électronique et informatique (Institut Montefiore) > Smart grids
Dubois, Lionel;  UMONS - University of Mons
Thomas, Diane;  UMONS - University of Mons
De Weireld, Guy;  UMONS - University of Mons
Ernst, Damien  ;  Université de Liège - ULiège > Département d'électricité, électronique et informatique (Institut Montefiore) > Smart grids
Language :
English
Title :
Towards the integration of Remote Renewable Energy Hubs with CCUS chain for a future energy system: the Belgian case
Publication date :
2026
Journal title :
Applied Energy
ISSN :
0306-2619
eISSN :
1872-9118
Publisher :
Elsevier, London, United Kingdom
Volume :
426
Pages :
128428
Peer reviewed :
Peer Reviewed verified by ORBi
Name of the research project :
DRIVER
Funders :
Fonds de transition énergétique
Available on ORBi :
since 04 May 2026

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