The ANEMEL team meets in Berlin!
Over two days, the entire consortium held the first plenary meeting of the year to review the work carried out over the past six months. Our partner TU Berlin hosted us in the German capital.
Over two days, the entire consortium held the first plenary meeting of the year to review the work carried out over the past six months. Our partner TU Berlin hosted us in the German capital.
In this new edition of #MeetOurPartners, we introduce Arthur Thévenot from TU Berlin, in Germany. Our researcher works on the membrane electrode assembly, bringing together the anode, cathode and membrane.
Our researcher from De Nora, in Italy, prepares the anode and the cathode of our electrolysers, while keeping scalability in mind. Discover all about her work in ANEMEL in our blogpost.
Following the success of our previous sessions, we’re excited to announce our upcoming webinar! Save the date: it will take place on 15th July at 12:00 pm (noon) CEST, featuring a presentation by our researcher Arthur Thévenot, from TU Berlin.
Our new paper published in Energy & Fuels shows that, in electrolyser design, including an ionomer is a great bonus to increase the performance and that you must also focus on the interactions between layers. This is a study led by TU Berlin and De Nora.
Over two days, the entire consortium held the first plenary meeting of the year to review the work carried out over the past six months. We were hosted by our project coordinator, the University of Galway.
Our researcher Suhas Nuggehalli Sampathkumar (EPFL) helps us to understand a recently published paper about the importance of simulated membrane electrode assemblies (MEA) to better understand the efficiency of water electrolysis.
ANEMEL brings together a team of experts with a broad range of backgrounds. Altogether, our consortium will leverage its expertise to develop an electrolyser powered by green energy sources and based on non-critical raw materials.
Get a great overview of the different types of electrolysers – the devices used to split water into hydrogen and oxygen. Some are closer to market than others; ANEMEL in particular is exploring anion exchange technologies to reduce the reliance on scarce materials and make green hydrogen cheaper.