40-million-euro sustainable kerosene research project CARE-O-SENE receives funding

The aim of the project is to develop novel, next-generation Fischer-Tropsch catalysts and thus to optimise the production of sustainable kerosene – or Sustainable Aviation Fuel (SAF) – on an industrial scale.

The aim of the project is to develop novel, next-generation Fischer-Tropsch catalysts and thus to optimise the production of sustainable kerosene – or Sustainable Aviation Fuel (SAF) – on an industrial scale. © Adobe Stock

Six partners from Germany and South Africa are involved in the CARE-O-SENE project (SASOL, HZB, IKTS, KIT, UCT, INERATEC).

Six partners from Germany and South Africa are involved in the CARE-O-SENE project (SASOL, HZB, IKTS, KIT, UCT, INERATEC).

The international research project CARE-O-SENE (Catalyst Research for Sustainable Kerosene) was granted 30 million euros in funding by the German Federal Ministry of Education and Research (BMBF). Additionally, the industrial consortium partners contribute 10 million euros. The aim of the project is to develop novel, next-generation Fischer-Tropsch catalysts and thus to optimise the production of sustainable kerosene – or Sustainable Aviation Fuel (SAF) – on an industrial scale. Helmholtz-Zentrum Berlin (HZB) is part of this collaboration.

Sustainable kerosene is not based on fossil-based raw materials like conventional kerosene but on green hydrogen and carbon dioxide. The technology contributes significantly to sustainably decarbonising sectors such as aviation, since fossil fuels are particularly difficult to replace in this area.

Research partners for the next generation of Fischer-Tropsch catalysts in CARE-O-SENE include Sasol Germany GmbH, Sasol Limited and the Helmholtz‐Zentrum Berlin fuer Materialien und Energie (Helmholtz Centre for Materials and Energy, HZB). Others are the Fraunhofer Institute for Ceramic Technologies and Systems (IKTS), the Karlsruhe Institute of Technology (KIT), The University of Cape Town (UCT) and INERATEC GmbH.

This project is a building block of the German National Hydrogen Strategy

Dr Dirk Schaer, Lead Technical Marketing Catalyst at Sasol says: “Our work is an important building block of the German National Hydrogen Strategy. We are delighted that the BMBF has recognised the enormous potential in the CARE-O-SENE research project on the novel Fischer-Tropsch catalysts and supports the work.”

“We are absolutely delighted about the start of CARE-O-SENE,” adds Dr Tobias Sontheimer, Head of Strategy - Energy and Information at HZB. “The fact that each partner can contribute dedicated expertise in catalysis research and work so closely with successful companies on technological implementation makes the project very special.”

German Chancellor Olaf Scholz and the South African President Cyril Ramaphosa gave the go-ahead for the CARE-O-SENE project at a ceremony at Sasol’s headquarters in Johannesburg in May this year. Now that the positive funding decision has been taken, the research work can begin.

(red.)

  • Copy link

You might also be interested in

  • Nanosilver as an electrocatalyst for CO₂ reduction
    Science Highlight
    24.09.2026
    Nanosilver as an electrocatalyst for CO₂ reduction
    Via electrolysis, CO2 can be reduced to CO, a raw material for further chemical products such as fuels. Within the GreenQuest Project, an internation team led by HZB chemist Prashanth Menezes has now systematically investigated catalyst layers made of silver nanoparticles, varying both the size of the particles and their density. The best yield was achieved with nanoparticles with diameters of around 10 nm, which were loosely distributed. Furthermore, they demonstrated how the economic efficiency of the electrochemical cell can be enhanced by integrating an additional chemical reaction at the anode, enabling the simultaneous production of a valuable formic acid, hydrogen, and CO in one device.
  • Spin waves inside a nano-oscillator imaged for the first time
    Science Highlight
    23.09.2026
    Spin waves inside a nano-oscillator imaged for the first time
    For the first time, researchers have directly imaged the magnetisation dynamics inside a spin Hall nano-oscillator — a nanoscale device that converts direct current into tunable microwave signals and is a promising building block for energy-efficient wireless communication and brain-inspired computing. A Swedish–German team led by the University of Gothenburg and Helmholtz-Zentrum Berlin (HZB) achieved this using time-resolved scanning transmission X-ray microscopy at the MAXYMUS instrument at BESSY II. The results, now published in Advanced Materials, reveal spin-wave features that had escaped previous, indirect measurement techniques.
  • Joint power instead of duplicate structures:
    News
    18.09.2026
    Joint power instead of duplicate structures:
    Berlin’s research community is further advancing its research excellence by establishing a high-performance, cross-institutional infrastructure for data and AI. With a joint agreement signed on 18 September 2026, the Berlin University Alliance (BUA), the Helmholtz-Zentrum Berlin (HZB) and the Zuse Institute Berlin (ZIB) are paving the way for a joint data science and AI centre in Berlin-Dahlem and Adlershof.