Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Green Hydrogen to Supply AFrican communities with stable electricity

Domaine:

environment and energy

Type de record:

paperproject
Créateur:
Bat
Éditeur:
IRC
Éditeur:
CCSD
Hôte:avatar
SSCI-VIDE+ING+NRB International audience Access to reliable electricity remains a challenge in many rural African areas, where solar energy, despite its abundance, suffers from intermittency. GH-SAFE addresses this gap by developing a sustainable, stand-alone energy storage and conversion system using green hydrogen. This will be done by developing an innovative power-to-hydrogen-to-power (P2H2P) technology that leverages surplus solar energy to produce green H2, which is safely stored using Liquid Organic Hydrogen Carriers (LOHC) and later converted back to electricity via a hydrogen internal combustion engine (HICE). The primary objectives are to develop a reliable electricity storage system compatible with rural, isolated African communities, ensure safe and efficient hydrogen storage through LOHC, and validate the P2H2P concept while assessing its economic, social, and environmental impact.The project follows a structured methodology, which addresses the scientific bottlenecks of the technology by focusing on 1) optimising proton exchange membrane (PEM) electrolyzers to produce green H2 under fluctuating solar energy conditions, 2) developing hydrogen storage and releasing LOHC-based system, which operates with low-cost catalysts and waste energy from the system; 3) designing a HICE that integrates waste heat for H2 release and achieves efficient electricity generation, 4) performing a techno-economic assessment of the system feasibility and establishing its potential environmental benefits (LCA), and 5) studying social acceptance and policy integration by engaging local stakeholders through workshops and feasibility studies to ensure community-driven implementation.GH-SAFE is structured into six work packages (WPs) covering technology development, feasibility analysis, and stakeholders engagement. A consortium of European and African institutions—including research centers, universities, and SMEs—will drive implementation, ensuring technological relevance and local adoption.The project will contribute to Africa's energy transition by demonstrating a scalable, green hydrogen-based electricity storage system. The expected impacts include improved energy access and reliability in rural areas, reduced dependence on fossil fuels and associated emissions, fostering local economic development through job creation and increased energy-driven productivity, enhancing gender equality by providing women-led businesses with stable energy access, and strengthening EU-Africa collaboration in renewable energy research and innovation.

Visit

hal.science

Tags

[CHIM.CATA]Chemical Sciences/Catalysis[SDE.ES]Environmental Sciences/Environment and Society

Similaires

Esitty/green-hydrogen-supply-chain-analyticsMapping the cost competitiveness of African green hydrogen imports to EuropeOptimal Green Hydrogen Production and Transportation: Africa to EuropeKey challenges to ensure Morocco's sustainable transition to a green hydrogen economyOptimized system for combined production of electricity/green hydrogen for multiple energy pathways: a case study of EgyptRED LIGHTS ON GREEN HYDROGEN: THE CASE OF HYPHEN GREEN HYDROGEN DEVELOPMENT IN THE TSAU ||KHAEB NATIONAL PARK

Esitty/green-hydrogen-supply-chain-analytics

Relational database design and analytics for a green hydrogen supply chain (Africa to Europe) # Gre

Mapping the cost competitiveness of African green hydrogen imports to Europe

This paper assesses green hydrogen export opportunities for African countries. Governments in many E

Optimal Green Hydrogen Production and Transportation: Africa to Europe

In this paper, we present an optimization framework for green hydrogen (GH) production integrating p

Key challenges to ensure Morocco's sustainable transition to a green hydrogen economy

International audience

Optimized system for combined production of electricity/green hydrogen for multiple energy pathways: a case study of Egypt

Abstract By optimal sizing of a wind/photovoltaic hybrid renewable-energy (RE) syst

RED LIGHTS ON GREEN HYDROGEN: THE CASE OF HYPHEN GREEN HYDROGEN DEVELOPMENT IN THE TSAU ||KHAEB NATIONAL PARK

International audience To reach the net-zero emissions goal by 2050, many nations hav