
thyssenkrupp nucera to acquire technology assets from Green Hydrogen Systems
thyssenkrupp nucera has signed an agreement to acquire key technology assets from Green Hydrogen Systems, a Danish company specialized in pressurized alkaline electrolysis.
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Water electrolyzers are electrochemical devices used to split water into its constituent elements, hydrogen and oxygen, by passage of an electrical current. There are four main types of electrolyzers: alkaline and proton exchange membrane (PEM) electrolyzers are already mature, while anion exchange membrane (AEM) and solid oxide electrolyzers are still under development. These technologies differ in numerous ways, most notably in cell design and variations within components. In this section you can find news items related to various aspects of electrolyzer technologies, equipment and components. If you would like to see your news release published here and in our email newsletter, please feel free to contact Matjaž Matošec.

thyssenkrupp nucera has signed an agreement to acquire key technology assets from Green Hydrogen Systems, a Danish company specialized in pressurized alkaline electrolysis.

The SA-H2 Fund, a blended finance facility managed by Climate Fund Managers and Dutch development financing institution Invest International, has committed up to USD 20 million to the development of the Hive Hydrogen Coega Green Ammonia Project – the first large-scale green ammonia plant in South Africa.

DB Cargo BTT, together with Hexagon Purus, Endress+Hauser, Infraserv Höchst and Fraunhofer IML, has developed a new solution for the safe and sustainable rail transport of gaseous hydrogen.

Stargate Hydrogen has officially opened its new production facility in Tallinn, Estonia. Dedicated to the manufacturing of alkaline electrolysis stacks and systems, the factory has an initial annual production capacity of 140 MW, with the potential to scale up to over 1 GW with minimal additional investment.

ANDRITZ has officially opened its new electrolyzer gigafactory in Erfurt, Germany. The new facility has an initial annual production capacity of approximately one gigawatt, which corresponds to approximately 160 to 200 electrolyzers per year.

thyssenkrupp nucera has been commissioned to carry out a Front-End Engineering Design (FEED) study for a large-scale hydrogen project in Europe. The planned water electrolysis plant will have a capacity of approximately 600 MW. An undisclosed customer will use the green hydrogen produced to decarbonise hard-to-abate industries.

Researchers at the Florida A&M University–Florida State University College of Engineering (FAMU-FSU) have developed a liquid hydrogen storage and delivery system designed to support future hybrid-electric aircraft. The system integrates fuel storage, thermal management, and flow control into a single unit, aiming to address several of the technical challenges associated with hydrogen-powered flight.

thyssenkrupp nucera and Fraunhofer IKTS have opened a pilot production facility for solid oxide electrolysis cell (SOEC) stacks in Arnstadt, Thuringia, Germany. The plant, inaugurated on 27 May, marks the next phase of the partners’ strategic collaboration to industrialise high-temperature electrolysis technology for green hydrogen production.
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