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EUBCE 2026 - Ann-Christine JOHANSSON - Feedstock Flexibility Meets Carbon Capture: A New Era for Fast Pyrolysis Technology?

Feedstock Flexibility Meets Carbon Capture: A New Era for Fast Pyrolysis Technology?

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Modeling, fundamental and applied pyrolysis

Feedstock Flexibility Meets Carbon Capture: A New Era for Fast Pyrolysis Technology?

Short Introductive summary

The transition to a climate-neutral energy system necessitates the development of sustainable, scalable technologies for renewable fuel production. The Horizon funded ABATE project addresses this challenge by demonstrate the integration of thermochemical and biochemical technologies to convert residual lignocellulosic biomass into advanced bio-based intermediates suitable for refinery co-processing. The focus in this work is on the scale-up of fast pyrolysis technology and its integration with hot gas filtration and carbon capture and utilization (CCU) system, aiming to demonstrate feedstock flexible and efficient utilization of carbon in pyrolysis oil production at Technology Readiness Level (TRL) 6.

Presenter

Moderator portrait

Ann-Christine JOHANSSON

RISE, Biorefinery and energy, SWEDEN

Presenter's biography

Mrs. Ann-Christine Johansson is a researcher at RISE AB in Sweden. She has a master’s degree in chemical eng. from Luleå University of Technology and more than 15 years of experience within thermochemical conversion, pyrolysis incl. upgrading and gasification, of biomass residues and plastic waste.

Biographies and Short introductive summaries are supplied directly by presenters and are published here unedited


Co-authors:

A. Johansson, RISE, Piteå, SWEDEN
M. Gullberg, RISE, Piteå, SWEDEN
W Butt, RISE, Piteå, SWEDEN
F. Weiland, RISE, Piteå, SWEDEN
E. Wikberg, RISE, Piteå, SWEDEN
S. Zira, RISE, Piteå, SWEDEN
C. Gunnarsson, RISE, Piteå, SWEDEN

Session reference: 5BV.3.3