Sosoba - Solid-state sodium batteries: Screening for electrolyte materials
Developing sustainable electrolyte materials for safe, affordable sodium-ion batteries, enabling the green energy transition and reducing reliance on critical raw materials.
Developing sustainable electrolyte materials for safe, affordable sodium-ion batteries, enabling the green energy transition and reducing reliance on critical raw materials.
Carbon-negative pressurized hydrogen production from waste using an energy efficient protonic membrane reformer.
The Mecalo project will use hydrogen to convert CO2 emissions from metal production into a raw material that can be returned to the value chain. This way, the production of critical raw materials like silicon and manganese can be made CO2-neutral...
The NEXPECH2 project is meeting the growing demand for energy while reducing greenhouse gas emissions by developing a next-generation photoelectrochemical (PEC) system that uses sunlight to split water into green hydrogen (H₂) at standard atmospheric...
The project explores how renewable energy can be integrated into the production of green ammonia for the Baltic-Nordic region, and will demonstrate electrochemical ammonia production.
The main objective of the project is to develop food ingredients and products based on innovative processing of cultivated brown algae.
The outcome of this project will lead to an improved process for dissolving and refining Ir, Ru and other PGMs from existing and potentially growing wastes, i.e., PEM electrolysers.
The APOLLO project is set to forge a circular system, intertwining traditional recycling practices with future manufacturing and recycling processes for Photovoltaic (PV) waste modules.
BioBIVE has a goal to develop bio-based and bioactive delivery systems to control fungal plant pathogens of different horticultural crops decreasing fossil-based materials and pesticide use, minimizing environmental footprint.