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CETP Funded Projects 2022

Projects 2022

QuantumIRES

Increasing control and efficiency in regional energy systems using quantum sensors and machine learning

A major challenge connected to the integration of renewable energy sources into power grids is to control the energy distribution on a local system level taking into consideration individual power sources.

  • TRI 5: Integrated regional energy systems

WECHULL+

Sustainable Concrete Material Leading to Improved Substructures for Offshore Renewable Energy Technologies

The main objective of WECHULL+ is to demonstrate (TRL4-6) a new, sustainable, circular and reliable concrete material suitable for floating substructures in the offshore renewable energy sector

  • TRI 2: Enhanced zero emission Power Technologies

Man0EUvRE

Energy System Modelling for Transition to a net-Zero 2050 for EU via REPowerEU

Man0EUvRE will improve energy system modelling across Europe and provide open research-based answers with ambitions to:

  • TRI 1: Integrated Net-zero-emissions Energy System
ACLOUD

ACLOUD

Advancing chemical-looping combustion of domestic fuels

The high cost of CO2 capture is an important barrier to a wider application of Carbon Capture Utilization and Storage (CCUS). The ACLOUD project will develop and demonstrate a technology that can increase capture rate, reduce energy penalty, and improve cost-efficiency of CO2 capture.

  • TRI 3: Enabling Climate Neutrality with Storage Technologies Renewable Fuels and CCU/CCS

TRAINING

Thermal energy storing and digitalization in district heating to enable transition to renewable and resource efficient energy systems

The aim of this project is to assess, control, and manage thermal storage potentials and flexibility at both building and district level to enable the complete renewable, smart, resource, and cost-efficient energy systems.

  • TRI 4: Efficient zero emission heating and cooling solutions

UNICORN

Unlocking the Full Potential of Electrolysis with Next-Generation Proton Exchange Membrane Stacks

A major outcome of the UNICORN project will be a step-wise change in the development of proton exchange membrane water electrolyser (PEMWE) stacks with the potential to disrupt the current electrolyser landscape that relies exclusively on perfluorinated membranes, platinum-coated titanium bipolar plates, and high loadings of iridium catalyst.

  • TRI 3: Enabling Climate Neutrality with Storage Technologies Renewable Fuels and CCU/CCS