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Systems analysis of biomass and carbon capture across energy sectors

Analysis of biomass and bioenergy in cmobination with carbon capture (CCU and CCS) in the sector coupled energy system as a flexible complement to variable renewables, e-fuels and direct air capture.

Biomass is often seen jointly with carbon capture in influential studies and IPCC publications. However, uncertainties regarding biomass availability affect the potential of negative emissions and carbon storage or usage availability affects cost-effective biomass usage strategies. 

We will bridge the rather binary academic research on biomass usage and carbon capture, by assessing biomass usage in a state-of-the-art sector-integrated energy systems model with a high spatio-temporal resolution, and adding up-to-date data and experience from the growing body of practical knowledge in concrete CCUS projects. 

We will assess how biomass in combination with CCUS changes the resource- and cost-efficient use of biomass to achieve climate targets across all energy systems (electricity, heat, transport, industry), under which conditions the captured carbon is used instead of stored, how various uncertainties affect these aspects and how this in turn may affect the energy system as a whole.

Summary

Project name

SysBECCUS

Status

Active

RISE role in project

Coordinator

Project start

Duration

2.5 years

Total budget

4 365 000 SEK

Partner

Chalmers university of technology

Funders

Energimyndigheten Bio+

Project website

Project members

External press

Supports the UN sustainability goals

7. Affordable and clean energy
9. Industry, innovation and infrastructure
11. Sustainable cities and communities
12. Responsible consumption and production
13. Climate action
Markus Millinger

Contact person

Markus Millinger

Forskare

+46 10 516 53 56

Read more about Markus

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