Published by Todd Bush on November 5, 2025
Tokyo, November 5, 2025 - Mitsubishi Heavy Industries, Ltd. (MHI), a global engineering and technology leader, and ICM, Inc. (ICM), a leading U.S. process technology provider for bioethanol production, have entered into a strategic alliance to accelerate innovation in ethanol dehydration.
The collaboration focuses on integrating MHI's Mitsubishi Membrane Dehydration System (MMDS™) with ICM's bioethanol process design. Together, the companies aim to increase efficiency in ethanol production by reducing energy consumption, enhancing process reliability, and supporting the industry's efforts to lower carbon intensity.
>> In Other News: Canada Nickel and NetCarb Advance Strategic Partnership to Unlock Zero Carbon Industrial Cluster in Northeastern Ontario
MHI recently achieved more than 99.5 vol.% ethanol purity using its MMDS™ at a pilot plant installed at the Nagasaki Carbon Neutral Park, located within the company's Nagasaki District Research & Innovation Center. Early pilot results indicate a significant reduction in energy consumption compared to conventional dehydration methods. Further testing and validation are planned as both companies prepare for the next phase of development and commercial implementation.
To ensure the technology's long-term performance and integration success, MHI and ICM are planning two key validation programs: a fouling test and a demonstration test. The fouling test will assess the membrane's durability and resistance to impurities in the ethanol stream, ensuring stable operation over time. The demonstration test will validate full-scale performance in a production environment, confirming efficiency, reliability, and seamless integration within ICM's process design.
Ethanol dehydration is one of the most energy-intensive steps in bioethanol production. By replacing the traditional Pressure Swing Adsorption (PSA) method with a molecular sieve separation method, MMDS™ enables high-efficiency manufacturing while significantly reducing energy use and operational costs. Because MMDS™ enables separation in the liquid phase, the system can also be designed more compactly, reducing the equipment footprint and simplifying installation.
Shaun Hubler, Director of Technology Commercialization at ICM, said, "Through this collaboration with MHI, we're exploring new approaches to ethanol dehydration that can further improve efficiency and reliability in ethanol production. The pilot results are very promising, and we look forward to building on them as we move toward full commercial deployment."
Fumitaka Miyashige, Business Manager of MMDS™ Project at MHI, stated, "This partnership represents an important step toward realizing MHI's vision for carbon-neutral industrial solutions. Working with ICM allows us to bring this advanced separation technology to the global renewable fuels market."
Further testing is scheduled to begin in Q2 2026, marking an important step toward the technology's first commercial installation. Both companies view this alliance as a long-term collaboration to advance efficiency, sustainability, and competitiveness of the global bioethanol industry.
Established in 1995 and headquartered in Colwich, Kansas, with a regional office in Brazil, ICM provides innovative technologies, solutions, and services to sustain agriculture and to advance renewable energy, including ethanol and feed technologies that will increase the supply of world protein. By providing proprietary process technologies to over 110 facilities globally with a combined annual production of approximately 8.8 billion gallons of ethanol and 25 million tons of distiller grains, ICM has become a world leader in biorefining technologies. For additional information, visit https://www.icminc.com/.
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.
Inside This Issue ⚡ Innio and Net Zero Innovation Hub Deliver World-First 3 MW Demonstration of 100% Hydrogen Backup Power for Data Centers 🌳 Chestnut Carbon Doubles Footprint in Southeast U.S. to...
Inside This Issue 🛢️ Kansas Gets Its First CO2 Storage Well, PureField Shows How 🤝 FPH2 Expands California Renewable Hydrogen Supply Partnerships To Support Public Fleets, Data Infrastructure, And...
Inside This Issue 💰 DOE Restores $1.2B for DAC Hubs and 5 Hydrogen Projects 🌏 CCUS Hub Study Identifies Five Asia-Pacific Hub Sites and Welcomes New Consortium Partners 🧪 Petronor and H2SITE Partn...
HUNT VALLEY, Md.--(BUSINESS WIRE)--Teledyne Energy Systems, Inc. is enabling a major step forward in industrial decarbonization with the deployment of its Titan™ EL Series hydrogen generator at JTE...
Enbridge B.C. Natural Gas Pipeline Expansion Receives Federal Approval
CALGARY, AB, April 24, 2026 /PRNewswire/ - Enbridge Inc. (Enbridge or the Company) (TSX: ENB) (NYSE: ENB) announced today that the Canadian Government has approved the Sunrise Expansion Program (th...
INNIO and the Net Zero Innovation Hub for Data Centers achieve an industry-first demonstration of 100% hydrogen-fueled backup power at the 3 MW scale Technical experts from Microsoft, Google, and ...
Chestnut Carbon Doubles Footprint in Southeast U.S. to Nearly 70,000 Acres of Restored Forests
Company Completes its Largest U.S. Planting Operation to Date NEW YORK, April 23, 2026 /PRNewswire/ -- Chestnut Carbon ("Chestnut"), a leading U.S. developer of nature-based carbon removal project...
Follow the money flow of climate, technology, and energy investments to uncover new opportunities and jobs.