Published by Todd Bush on September 20, 2024
Researchers from Tokyo Metropolitan University have developed an innovative electrochemical cell that efficiently converts captured carbon dioxide (CO2) into formate, a green fuel. This new system, the results of which were published in the journal EES Catalysis, has the potential to address one of carbon capture's most critical challenges: finding practical uses for the captured CO2 while ensuring energy efficiency.
>> In Other News: Holcim Invests in Sublime Systems to Scale Up Innovative Low-carbon Technology
"Carbon capture and utilization to convert atmospheric CO2 into useful chemicals and fuels is essential for achieving a carbon-neutral or negative emission future," the researchers wrote in the study. Yet the question of what to do with captured CO2 has remained a persistent challenge.
Typically, captured CO2 is stored underground, but scientists are working on ways to convert it into something more useful. One promising approach is turning CO2 into environmentally friendly fuels, such as formate, which can be used in fuel cells to generate power in a similar way to hydrogen.
Formates are already produced in large quantities for use as road and sidewalk de-icers and are safe, non-combustible, and simple to handle and store—significant advantages over other sustainable fuel candidates like hydrogen and methanol. They can be kept in regular steel tanks and maintain their stability for months or even years, making them highly durable and practical for long-term use.
Current methods of converting CO2 into formate often require pure, pressurized CO2 gas. However, this process is highly energy-intensive and inefficient, making it impractical for widespread industrial use.
A more promising solution is the use of reactive carbon capture (RCC), which involves dissolving CO2 in alkaline solutions, like bicarbonate, and converting it directly into formate ions. The challenge has been to create an electrochemical cell that can selectively produce formate ions without triggering undesirable side reactions, such as hydrogen production.
The team's electrochemical cell features a porous membrane made from cellulose ester that separates the electrodes from the polymer electrolyte membrane. This design enhances the cell's ability to selectively convert bicarbonate ions into formate ions, with hydrogen ions passing through the electrolyte membrane and reacting with bicarbonate ions in the porous layer to produce CO2, which is then efficiently converted into formate ions.
The team's cell demonstrated a faradaic efficiency of 85 percent, meaning that 85 percent of the electrons used in the process were successfully converted into formate rather than other byproducts—an improvement on existing designs.
The cell was also more durable than other techniques, operating efficiently for over 30 hours and achieving near-complete conversion of bicarbonate into formate. Once water is removed from the solution, the result is solid, crystalline formate fuel.
"Given the demands on climate change technology, improvements like this to the efficient running of electrochemical cells promise to have a big impact," the team said in a statement. They hope the new electrolyzer can be a viable option for society as it shifts toward a greener future.
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.
Happy New Year from Decarbonfuse! As we wrap up 2025, we want to thank you for being part of the growing Decarbonfuse community. Your engagement and feedback have helped make this platform a trust...
Inside This Issue 💸 $213 Per Tonne: Inside the Latest Multi-Pathway CDR Deal 🏛️ Clean Energy Technologies Affiliate Vermont Renewable Gas Advances Regulatory Review 💧 Fusion Fuel’s BrightHy Soluti...
Wishing everyone a restful holiday season.🎄🎅🎁 Inside this Issue ✈️ Cathay Goes Global With SAF in Three-Continent Fuel Deal 🧪 Proton Ventures Partners With Barents Blue For Realization Of The Bar...
HyOrc Completes Factory Acceptance Test of 500kW ORC Turbine for International Customer
HOUSTON, Dec. 31, 2025 (GLOBE NEWSWIRE) -- HyOrc Corporation (OTCID: HYOR), a clean-energy technology company, today announced the successful completion of the Factory Acceptance Test (FAT) for its...
Nova Sustainable Fuels Receives Approval to Produce Sustainable Aviation Fuel in Guysborough County
Nova Sustainable Fuels has received environmental assessment approval for the first phase of a project that will see the company develop a renewable energy park in Goldboro, Guysborough County, whe...
Darling Ingredients Announces Sale of Approximately $50 Million in Production Tax Credits
IRVING, Texas -- Darling Ingredients Inc. (NYSE: DAR) today announced the sale of approximately $50 million of production tax credits to a corporate buyer. These credits were generated under the In...
Aemetis Receives Funds From the Sale of $17 Million of Federal Clean Energy Tax Credits
CUPERTINO, Calif., Dec. 30, 2025 (GLOBE NEWSWIRE) -- Aemetis, Inc. (NASDAQ: AMTX), a renewable natural gas and renewable liquid fuels company focused on lower cost and reduced emissions products, t...
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.