Updated on 24 August 2026
TalTech – R&D Partner for Hydrogen, Renewable Fuels and Thermochemical Energy Conversion
Professor - Research Group of Sustainable Energy and Fuels: Department of Energy Technology at Tallinn University of Technology
Tallinn, Estonia
About
Tallinn University of Technology (TalTech), Estonia, offers research and technology capabilities for collaborative CETPartnership projects in hydrogen, renewable fuels and clean energy transition.
Our expertise covers thermochemical conversion, combustion processes, biomass and waste-derived fuels, pyrolysis, gasification, fuel and feedstock characterisation, reaction and transport processes, emissions and process modelling.
TalTech has access to relevant experimental infrastructure, including pilot-scale fluidised-bed combustion/gasification and pyrolysis facilities, together with analytical and characterisation capabilities. These facilities provide a basis for experimental research, process evaluation, modelling and validation of emerging clean-energy technologies.
We are particularly interested in collaborative projects addressing hydrogen and renewable fuels, sustainable fuel production, biomass and waste valorisation, industrial decarbonisation, carbon utilisation and integrated industrial energy systems.
TalTech can contribute as an R&D partner, technology-development partner, demonstrator and experimental validation partner, depending on the project structure. Our capabilities can complement catalyst developers, technology providers, fuel producers, industrial partners, system integrators and demonstration sites.
We are open to joining strong international consortia as well as developing complementary project concepts with research and industrial partners. Where scientifically and technically justified, our established international research collaborations can also provide additional complementary expertise and capabilities.
We would be pleased to connect with organisations developing ambitious clean-energy projects where TalTech’s experimental, modelling and thermochemical-conversion capabilities can provide clear scientific and technical value.
Topic
- Call Module 2026-04: Industrial carbon management
- Call Module 2026-05: Hydrogen and renewable fuel
- Call Module 2026-09: Integrated industrial energy systems
Type
- R&D Partner
- Technology Partner
- Demonstrator
- Other
Organisation
Similar opportunities
Project cooperation
Pilot scale Methanol production in a German technology center
- Call Module 2026-05: Hydrogen and renewable fuel
- Call Module 2026-04: Industrial carbon management
- Call Module 2026-09: Integrated industrial energy systems
Markus Schubert
Professor for Chemical Process Engineering at Dresden University of Technology
Germany
Project cooperation
Digital Engineering for Industrial Decarbonisation and Clean Energy Integration
- R&D Partner
- Technology 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 2026-09: Integrated industrial energy systems
Antonio Gómez
R&D manager at Nabladot, S.L.
Zaragoza, Spain
Project cooperation
THERMOS & RE-HEAT RESEACRCH INITAITIVES
- Investor
- Consultant
- R&D Partner
- Demonstrator
- Technology Partner
- Validator/Living lab
- Call Module 2026-05: Hydrogen and renewable fuel
- Call Module 2026-07: Heating and cooling technologies
- Call Module 2026-09: Integrated industrial energy systems
- 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 2026-02 Energy system flexibility in a high renewable energy sources (RES) scenario: energy generation, storage and system integration
Abdelhakim Hassabou
Group Leader - Solar Research Center at Chair of Thermodynamics - Technical University of Munich (TUM)
Germany