
TeSCAL – Testing the foundations of special core analysis
Increased understanding of wetting processes in oil reservoirs is crucial for optimising operational decisions in oil recovery.
Increased understanding of wetting processes in oil reservoirs is crucial for optimising operational decisions in oil recovery.
Provide the knowledge needed to reduce fossil CO2 emissions from Norwegian Ferroalloy and Si-production industry with 40% within 2030 by substituting fossil carbon with biocarbon.
The NordiCoats project is aimed at developing new bio-based epoxy compounds for high-performance applications, with a focus on sustainability and environmental friendliness.
The SENSATION project will develop a sorbent-based carbon capture technology tailored for low CO2 concentrations, varying from 400 ppm in air (Direct Air Capture) to 1-3 vol % for industrial sources.
The WINDRISE project will bring together leading Norwegian players in the value chain for sustainable and scaled-up production, transport and installation of fixed offshore wind substructures.
Complying with the Paris Climate Agreement will mean that the EU economy of 2050 is set to be mineral/metal intensive, rather than one based on fossil fuels.
NYMOOR will enable design and use of nylon mooring systems for floating wind turbines, reducing material and resource requirements and enabling novel mooring solutions.
The SEAD project will explore the potential of plant-inspired pyrogallol-based compounds as adhesion anchoring sites.
SIBERIA intends to develop completely fluorine free Na-ion batteries as an alternative battery technology for stationary storage.