OXHYPRO - Novel oxygen carriers in sustainable hydrogen production
Technology aim to development of technology for complete gas conversion and energy transfer using energy storage materials between different processes.
Technology aim to development of technology for complete gas conversion and energy transfer using energy storage materials between different processes.
The goal of Allotherm is to discover and realize new alloy systems with superior thermoelectric (TE) properties to dramatically enhance TE waste heat harvesting.
The ambition of the CC+ Centre is to explore, develop and test climate positive technologies with special focus on industrial solutions.
In the project, research institutes cooperate with companies to make advanced walls and windows with new or improved properties and a small environmental footprint.
Closed regenerative life support systems are developed to support astronauts that will stay long term in space, providing them with food, oxygen, and pure water. Limitation of resources that can be transported and waste management calls for a...
Develop scalable and techno-economically viable methods for the manufacturing of porous Zn electrodes with excellent electrochemical performance and cycling stability in an alkaline rechargeable Zn-air battery (ZAB) configuration with carbon-free...
The objective of the project is to get rid of a waste challenge and at the same time create products of value, demonstrated at pilot scale. In addition, the effect of circularity in quantification of sustainability is studied.
The BioCoke4FAI project aims to develop an innovative and economically viable technology for bio-coke production for the ferroalloys industry.
CO2SMOS aims to develop cost-effective routes to produce high added-value bio-based chemicals from bio-based industrial CO2 emissions and renewable energy sources (green H2 and biomass).