Efficient syngas fermentation of gasified woody biomass

The project contributes to the development of efficient biological methanation of gasified woody biomass in a unique “solid state” reactor, developed and patented by Q Power.
Through thermal gasification of forest residues, demolition timber, park and garden waste, etc. the carbon and hydrogen content of the lignocellulosic material is made available to the microbes and thus biological conversion to methane. In this way, the raw material base is broadened.
The potential for these materials has been estimated to 59 TWh/year. Syngas fermentation enables cost-effective production on a smaller scale, <20 MW, which entails several advantages:
- It is easier to secure the feedstock supply and easier logistics.
- It is easier to match excess heat from the gasification process with local heat and steam demand.
- The financial risk is lower.
The project is expected to enable commercialization by 2030, double the Swedish biogas production within 15 years and contribute to an increased degree of self-sufficiency.
Read more about the project here.
Presentations from REGATEC 2024
A conference about the project was held as part of the programme for Regatec 2024. View the presentations here.

Jörgen Held
Baltic Energy Innovation Centre
info@beic.nu
Project information
Participants
Baltic Energy Innovation Centre
Q Power Oy
Linköping University
Nordvästra Skånes Renhållnings AB)
Scandinavian Biogas Fuels AB
Cortus AB
Time schedule
January 2023 - June 2025
Total cost of project
6 925 000 SEK
Swedish Energy Agency project number
2022-00570
More projects

Fossil-free multicopter for heavy lifting
In recent years, drones have become popular and are beeing used in various applications in society. However, there is a lack of…
Manager: Mikael Hult
Ongoing

Tree species experiment focused on biomass production – Growth, carbon sequestration and biodiveristy
Forestry can counteract an increase in greenhouse gases through its large capacity to store carbon and through the substitution of fossil fuels….
Manager: Nils Fahlvik
Ongoing

Biochar stability validation – reaching a new level of understanding and transparency
Biochar produced from biomass has large potential to provide negative greenhouse gas emissions as a stable carbon sink in soil. A major…
Manager: Cecilia Sundberg
Ongoing