Published by Todd Bush on January 8, 2026
Collaborative pilot at Kuji facility showcases robust ethanol yields using LanzaTech’s fermentation technology
SKOKIE, Ill., Jan. 07, 2026 (GLOBE NEWSWIRE) -- LanzaTech Global, Inc. (NASDAQ: LNZA), a leader in industrial carbon recycling, has announced successful operational results at the municipal solid waste (MSW) to ethanol pilot plant in Kuji City, Iwate, Japan owned and operated by longstanding partner, SEKISUI CHEMICAL CO., LTD. (TSE: 4204). This 1/10th commercial scale facility, with the capacity to produce approximately 400 tons of ethanol per year, operated for nearly four years following mechanical completion in April 2022. Throughout this period, the plant demonstrated that LanzaTech’s gas fermentation platform can reliably process highly inhomogeneous, unsorted mixed non-recyclable waste streams—materials that would otherwise be destined for landfill or incineration. The demonstrated ability to manage challenging and variable waste sources is especially significant, as it shows that the technology can adapt to diverse regional waste profiles and support the development of a global circular carbon economy.
>> In Other News: Technip Energies’ Hummingbird Technology Powers LanzaJet’s World-First SAF Facility
The waste-to-ethanol plant was funded with investment by SBR, a joint venture between SEKISUI CHEMICAL and INCJ, a private-public fund overseen by the Japanese Ministry of Economy, Trade, and Industry (METI). It also received funding from the Japanese Ministry of the Environment.
The plant achieved its guaranteed performance, sustaining specific ethanol yields above guaranteed values for over 14 consecutive days after reaching steady state - making this the most productive fermentation campaign at the site to date. Notably, the ethanol yield was maintained above guaranteed performance despite operating on particularly challenging gas mixtures. The plant processed syngas (a blend of carbon monoxide and hydrogen) with a combined CO + H₂ content ranging from 40% to 55%, and an H₂:CO ratio between 1.1 and 1.4, a balance that can be especially demanding for other catalytic technologies. To put this in context, achieving high performance under these conditions is akin to running a marathon at high altitude; it demonstrates both the adaptability and resilience of the LanzaTech process.
Gasification is a widely used and established technology for processing solid waste streams, with LanzaTech having successfully integrated its fermentation platform with several proven, traditional gasifier systems. The project at Kuji provided an opportunity to collaborate on a novel gasifier design, underscoring both the value of ongoing innovation in waste conversion technologies and the adaptability of LanzaTech’s fermentation process. Even with varied feed gas conditions, the process not only remained robust but also met key performance targets, demonstrating the reliability and effectiveness of LanzaTech’s platform.
“We are immensely proud of what we’ve achieved together at our Japan demonstration facility,” said Dr. Jennifer Holmgren, CEO of LanzaTech. “Our sincere thanks go to our partner SEKISUI CHEMICAL and the prefecture of Iwate and the city of Kuji for their outstanding collaboration and support. The results at Kuji once again demonstrate the scalability and technical viability of our fermentation platform. We are also grateful to the Government of Japan for its continued support and investment in sustainable technologies. We look forward to building on this progress and expanding sustainable fuels and chemicals in Japan and beyond.”
LanzaTech remains committed to advancing waste-to-energy solutions that are essential for a circular economy and that create valuable feedstocks for sustainable aviation fuel and other chemicals. By turning challenging waste streams into critical resources, projects like this help enable low-carbon industries and accelerate the global transition to more sustainable fuels.
LanzaTech Global, Inc. (NASDAQ: LNZA) is a carbon management solutions company that transforms industrial emissions, gasified solid waste and carbon dioxide into recycled carbon ethanol via proprietary bio-fermentation technology. Ethanol is a crucial building block in the world – a key feedstock for Sustainable Aviation Fuel (SAF), marine fuel and other downstream chemical derivatives. Operating commercially at six assets today, LanzaTech’s technology unlocks value across the supply chain, reducing the carbon footprint of hard-to-abate sectors while shepherding recycled carbon fuels and products to the world, building a circular carbon economy. www.lanzatech.com
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.
Inside This Issue ✅ Verra's CCS Credits Just Got the Integrity Seal Buyers Want 💰 South Korea Unveils $747 Billion Energy Transition Plan Through 2035 💧 Hydrogen and Carbon Capture and Storage in ...
Inside This Issue 🌲 ARC Bio Tests a Refinery Shortcut to Forest-Based SAF 💧 Scientists Just Found a New Way to Make Hydrogen from Water 🤝 How Channel Partnerships Are Helping More Organizations Ta...
Inside This Issue 🏦 How Carbon Removal Offtakes Are Starting to Unlock Commercial Debt 🌉 California Opens the Door to a Three-Way Carbon Market 🧪 New Material Developed at Oregon State Provides Bo...
Gevo and ClimeFi Complete Carbon Removal Transaction, Advancing Gevo's Growing Carbon Business
Transaction supports Gevo's path toward a carbon business exceeding $30 million in annual revenue from existing operations ENGLEWOOD, Colo., Oct. 08, 2026 (GLOBE NEWSWIRE) -- Gevo, Inc. (NASDAQ: G...
ZeroMe Launches OffsetC App to Bring Transparency and Personal Agency to Carbon Offsetting
NEW YORK, Oct. 07, 2026 (GLOBE NEWSWIRE) -- ZeroMe, Inc. today announced the launch of the OffsetC carbon offset app, designed to make buying carbon credits more transparent, more accessible, and e...
CALGARY, AB, Oct. 8, 2026 /CNW/ - Gas Liquids Engineering Ltd. (GLE) is pleased to announce the successful completion of its detailed engineering scope for Enhance Energy Inc.'s Origins Carbon Capt...
Ballard Secures 4.8MW Order From Siemens Mobility to Power Hydrogen Trains in Romania
24 FCrail™ fuel cell modules will power 12 Mireo Plus H trains, Romania’s first hydrogen fleet and the platform’s largest deployment to date. VANCOUVER, CANADA and MUNICH, GERMANY – Ballard Power ...
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.