Scientists from the Institute of Catalysis SB RAS with support from the Russian Science Foundation are working on catalysts for converting used cooking oils into components for environmentally friendly aviation fuel. These sustainable aviation fuel (SAF) technologies are capable of reducing the carbon footprint of air travel significantly without making drastic changes to the existing infrastructure.
>> In Other News: New Electrochemical Method Splits Water With Electricity To Produce Hydrogen Fuel — And Cuts Energy Costs In The Process
Aviation remains a major source of greenhouse gas emissions: the industry emitted over 940 million tons of CO₂ into the atmosphere in 2024 alone. At the same time, the aviation industry is stepping up the production of fuels from renewable feedstock. Although SAF combustion produces carbon dioxide as well, aggregate emissions across the entire production chain (from feedstock to usage) are almost 80% lower than those of conventional jet fuel. While global SAF production is currently estimated at about 2 million tons per year, major companies expect to increase SAF production to 500 million tons by 2050.
Used edible oils are considered among the most accessible and economically attractive feedstock for SAF. They are cheaper than petroleum feedstock; the global market for edible oils is estimated at about $7 billion. These oils are processed with the HEFA technology, which removes oxygen from fats using hydrogen and converts them into a hydrocarbon mixture. This mixture undergoes cracking and isomerization, which results in feedstock that can be used to produce aviation fuel, diesel, and gasoline.
There are two approaches to the HEFA process. With the classic approach, the reactions are divided into two stages: oxygen is removed to form normal alkanes, after which the fuel’s performance properties are improved. A more modern and cost-effective approach involves a single-stage process in which hydrodeoxygenation, hydroisomerization, and partial hydrocracking occur simultaneously on a single catalyst. It is these types of systems that are the focus of research at the Institute of Catalysis SB RAS.
The scientists are looking into bifunctional catalysts based on nickel and molybdenum which are applied to zeolite-containing carriers. Their goal is to understand how carrier preparation methods and active component application affect the efficiency, selectivity, and reliability of the catalysts.
In the future, these solutions could streamline the production of environmentally friendly aviation fuel and cut its cost significantly.
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.
Inside This Issue 🍁 Ballard Buys GeoPura for $400M in Hydrogen Power Push ⛽ XCF Global Begins Producing Renewable Fuels at New Rise Renewables Reno 📈 WoodMac: CCUS Growth Continues Despite Project...
Inside This Issue ⚡ Airbus and MTU Aero Engines to Create a Joint Venture to Develop a Fully Electric Hydrogen Fuel Cell Engine 🌳 Something Weird Is Going on with the 66 Billion Trees China Plante...
Inside This Issue ⚡ SB 1350: California Makes Hydrogen Power Count as Clean 🏭 Europe's Carbon Capture Push Shifts From Ambition To Delivery At CCSA EU Conference 2026 🍁 Canada and Alberta Tie New ...
MAX Power Mobilizes for Commercial Validation Program at Canada’s First Natural Hydrogen Discovery
Multi-well program commences early next week at Lawson Complex following 3D seismic and independent modelling as MAX Power advances toward potential commercial-scale Natural Hydrogen development. ...
Montana Renewables Collaborates with Gulfstream for Low Emissions Testing
GREAT FALLS, Mont., July 8, 2026 /PRNewswire/ -- Montana Renewables, LLC (MRL) is proud to have collaborated with Gulfstream Aerospace Corp. and its partners as the exclusive fuel supplier for rece...
XCF Global Begins Producing Renewable Fuels at New Rise Renewables Reno
Initial renewable diesel production marks commissioning and restart milestone as facility advances toward planned sustainable aviation fuel configuration Marks transition to expected revenue-gener...
Carbon Capture Project Gains Support
Deep Sky seeks to build on Alberta success as it pitches province on ‘economic opportunity for Manitoba on a global scale’ WINNIPEG — A direct air carbon capture facility proposed for southwestern...
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.