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CETP Funded Projects 2023

Projects 2023

ELECTROMET

Direct CO2 ELECTROcatalysis for renewable METhane production

ELECTROMET aims to demonstrate, from laboratory to industrial scale, the feasibility of efficiently converting CO₂ into renewable methane, integrating it into the gas grid with a viable business model, through the development of advanced catalysts, a scalable electrolyzer, a digital twin, and a roadmap to facilitate market uptake.

  • Joint Call 2023
  • TRI 3: Enabling Climate Neutrality with Storage Technologies Renewable Fuels and CCU/CCS

STEWART

Science-based environmenTally friEndly neW lAyout foR floaTing PV

As part of the STEWART project, an interdisciplinary and international team is working on the development of a scientifically sound and environmentally friendly concept for floating photovoltaic systems for the onshore and nearshore sector that integrates ecological, economic and regulatory aspects.

  • Joint Call 2023
  • TRI 2: Enhanced zero emission Power Technologies

HyPer

Hybrid approach for Perovskite-Silicon Tandem Solar Cells

The HyPer project aims to develop a route to manufacture perovskite-silicon tandem solar cells on large areas that can be transferred and integrated into a high-throughput industrial fabrication line.

  • Joint Call 2023
  • TRI 2: Enhanced zero emission Power Technologies

CHASE

Combined Heat pump and thermal Storage for Energy efficient industry

CHASE aims at developing combined high temperature heat pump and latent thermal energy storage systems to enable industrial processes using sustainable electricity from intermittent sources.

  • Joint Call 2023
  • TRI 4: Efficient zero emission heating and cooling solutions

HeriSol

Prosumer Solutions for Heritage Buildings based on BIPV

The core objective of the HeriSol Project is transforming heritage buildings from mere consumers to proactive "prosumers" in the energy landscape.

  • Joint Call 2023
  • TRI 7: Integration in the built environment

RESTORE

flaRE gaS boTtoming sOfc hybRid cyclE

Developing a very efficient combined heat and power system for flare gas, by implementing a hybrid cycle combining a micro gas turbine and a SOFC, to avoid flaring while still enabling the reduction of carbon dioxide emissions through carbon capturing.

  • Joint Call 2023
  • TRI 6: Integrated industrial energy systems