Shell Global Solutions International, Fraunhofer IKTS and AVL have launched a four-year collaboration to develop a next-generation power-to-liquids (PTL) process using solid oxide co-electrolysis technology to produce synthetic aviation fuel (e-SAF) from CO2 and low-carbon electricity.
The partners will carry out an integrated pilot-scale test
programme at Shell’s Energy Transition Campus Amsterdam (ETCA).
The programme is designed to connect key process elements
into a single system, bringing together high-temperature co-electrolysis using
solid oxide electrolysis cells (SOEC), advanced membrane-based separation,
Fischer–Tropsch (FT) synthesis, and off-gas utilisation.
The parties say the research is intended to improve the
efficiency and affordability of future e-SAF production compared with currently
available PTL technologies.
Aviation is expected to increase its use of e-SAF to reduce
reliance on fossil resources and lower lifecycle greenhouse gas emissions.
However, scaling e-SAF will require not only the deployment
of PTL technologies that are already commercially available, but also continued
innovation to raise performance and reduce costs.
The initiative aims to help bridge what the companies
describe as a critical gap between lab-scale advances and commercially
deployable solutions.
Shell will contribute its Shell XTL Process, drawing on
decades of gas-to-liquids (GTL) experience.
Fraunhofer IKTS is providing its advanced solid oxide
co-electrolysis technology, while AVL will deliver electrolysis systems
engineering capabilities.
The pilot-scale set-up will pair a 24-kW SOEC electrolyser
configured for co-electrolysis with Shell’s existing FT pilot plant, which
previously supported the commercialisation of Shell’s GTL process.
The test programme is expected to conclude by the end of the
decade, with industrial commercial deployment anticipated during the following
decade.
The project is supported by the Dutch government through the
DEI Energy Innovation scheme (DEI1250051), which recognises its potential to
advance next-generation e-SAF technologies.
HP Calis, General Manager GTL/XTL Technology at Shell, said:
“The next-generation PTL technology has the potential to make e-SAF more
accessible and affordable. By bringing together complementary expertise from
Shell, Fraunhofer IKTS and AVL, this programme allows us to rigorously de-risk
and optimise the technology.”
Dr Ing. Erik Reichelt of Fraunhofer IKTS added:
“High-temperature co-electrolysis has the potential to improve the efficiency
of e-SAF production. Through this collaboration, we are excited to see our
solid oxide electrolysis technology integrated into a complete PTL process and
validated under realistic operating conditions.”
Juergen Rechberger, VP Hydrogen & Energy at AVL, stated: “Unlocking the full potential of high-temperature electrolysis requires translating promising technologies into reliable, scalable system performance. Through our expertise in electrolysis systems engineering and system integration, we are helping the transition from technology development to industrial application of next-generation e-SAF solutions.” -OGN/TradeArabia News Service