The EU-funded ForMovFluid project aims to understand the origin of critical raw materials, essential for renewable technologies and energy transition. By combining laboratory techniques and field work in four countries, researchers will increase knowledge on fluid movement in the Earth's crust.
Researchers from ANEMEL have developed highly stable anion exchange membrane electrolysers that can produce hydrogen without using platinum-group catalysts. The new technology surpasses state-of-the-art solutions in performance and long-term stability, holding promise for industrial applications.
Researchers used drum mills to manufacture kilograms of ibuprofen-nicotinamide, a formulation that improves therapeutic efficacy and stability. The study demonstrates the possibilities of drum mills for large-scale synthesis of pharmaceutical co-crystals.
The IMPACTIVE project aims to develop a sustainable alternative to traditional pharmaceutical production methods. By leveraging mechanochemistry, the team hopes to reduce waste and emissions in the industry. The initiative has already shown promising results, with potential cost savings of up to 12%.
The ANEMEL project aims to develop efficient electrolysers for green hydrogen production, targeting low-grade water sources. The €3 million EU funding will expedite prototype design and catalyse commercialisation of the technology.