Project cooperationUpdated on 22 May 2026
ALMACENAMIENTO Y GESTION DE ENERGIA
About
Fundación Energía Justa is developing a proprietary patented solution focused on a new energy storage and management system for renewable energy plants and applications with variable power demand.
The solution aims to improve the way renewable energy is stored, managed and used, especially in photovoltaic, wind, hybrid or distributed energy systems where there are imbalances between generation, consumption, grid export and occasional high-power demand.
The main objective is to create a more flexible, modular and efficient energy architecture, adaptable to different project scales and consumption profiles. The technology is designed to support better integration of renewable energy, optimise the use of available generation, reduce losses, improve operational stability and increase the economic performance of energy assets.
Potential applications include renewable plants with storage, energy communities, industries with variable consumption, microgrids, isolated systems, collective self-consumption, agricultural and industrial infrastructures, electric charging stations and projects requiring intelligent management of power, storage and energy supply.
The project is currently in the development and intellectual property protection phase. We are looking for technological, industrial, financial and institutional partners interested in collaborating on design, simulation, prototyping, validation, scale-up and future commercial deployment.
We are open to cooperation agreements for R&D projects, participation in European consortia, joint development with technology centres, validation in real operating environments, public or private funding, licensing agreements and the creation of dedicated project vehicles.
Our goal is to contribute to a more efficient, sustainable and economically viable energy transition by providing an innovative solution that enables better use of renewable generation and adapts energy supply to variable power applications.
Topic
- Call Module 2026-01: Integrated energy system resilience in a changing environment
- Call Module 2026-02 Energy system flexibility in a high renewable energy sources (RES) scenario: energy generation, storage and system integration
- Call Module 2026-03A/03B: Advanced renewable energy (RE) technologies for power production
- Call Module 2026-04: Industrial carbon management
- Call Module 2026-05: Hydrogen and renewable fuel
- Call Module 2026-06: Stationary battery technologies and systems for climate-neutral industry and built environment
- Call Module 2026-07: Heating and cooling technologies
- Call Module 2026-08: Integrated regional energy systems
- Call Module 2026-09: Integrated industrial energy systems
- Call Module 2026-10: Clean energy integration in the built environment
Type
- R&D Partner
- Technology Partner
- Demonstrator
- Validator/Living lab
- Consultant
- Investor
Organisation
Similar opportunities
Project cooperation
- R&D Partner
- Call Module 2026-04: Industrial carbon management
- Call Module 2026-08: Integrated regional energy systems
- Call Module 2026-09: Integrated industrial energy systems
- Call Module 2026-10: Clean energy integration in the built environment
Antonio Moreno-Munoz
Head of R&D&I at Universidad de Córdoba
Cordoba, Spain
Project cooperation
Demonstrator of a Micro Aerohydraulic Power Plant
- Other
- Consultant
- R&D Partner
- Demonstrator
- Technology Partner
- Call Module 2026-08: Integrated regional energy systems
- Call Module 2026-09: Integrated industrial energy systems
- Call Module 2026-10: Clean energy integration in the built environment
- Call Module 2026-03A/03B: Advanced renewable energy (RE) technologies for power production
alain Rohet Fiorentino
chercheur indépendant / chef de projet at aerohydrolique.fr
France
Project cooperation
Sustainability and Life Cycle Assessment
- R&D Partner
- Call Module 2026-05: Hydrogen and renewable fuel
- Call Module 2026-04: Industrial carbon management
- Call Module 2026-07: Heating and cooling technologies
- Call Module 2026-08: Integrated regional energy systems
- Call Module 2026-09: Integrated industrial energy systems
- Call Module 2026-10: Clean energy integration in the built environment
- Call Module 2026-01: Integrated energy system resilience in a changing environment
- Call Module 2026-03A/03B: Advanced renewable energy (RE) technologies for power production
- Call Module 2026-06: Stationary battery technologies and systems for climate-neutral industry and built environment
- Call Module 2026-02 Energy system flexibility in a high renewable energy sources (RES) scenario: energy generation, storage and system integration
Ehsan Nemati
Scientific Researcher at Fraunhofer IBP