Sister projects
In this section, you will find other projects subsidised with European funds with which PeCATHS can find interactions and initiate possible collaborations. Through collaboration with these sister projects, PeCATHS reinforces knowledge exchange, supports joint communication and dissemination, and contributes to coordinated European research efforts to accelerate the clean energy transition
STOREDGE
A LONG DURATION AND CUTTING-EDGE THERMOCHEMICAL HEAT STORAGE AND UPGRADING TECHNOLOGY FOR HEAT AND POWER APPLICATIONS
STOREDGE is a pioneering research initiative dedicated to transforming industrial heat and power systems across Europe. By developing a novel thermochemical energy storage and upgrading technology, STOREDGE enables long-duration, high-efficiency storage solutions that support decarbonisation and energy resilience. Dedicated to its mission, STOREDGE works around 4 core objectives: 1.Enable Long-Duration Storage, 2.Upgrade Medium to High Temperatures, 3.Promote Decarbonization and 4.Ensure Scalability & Flexibility
CAIPIRINH3A
Combustion of liquid ammonia, assisted by plasma discharges, as a novel and clean energy conversion method
CAIPIRINH3A Project aims to overcome the technical barriers that hinder the uptake of liquid ammonia (L-NH3) as an alternative fuel, by developing a first-of-its-kind liquid ammonia combustion engine assisted by plasma technology and smart systems able to achieve ultra-low NOx emissions,called the PlasMi NH3 Burner
ILIMITED
First-ever Ionic LIquid sorbent Methanol synthesis In order To Enable over 80% yielD
ILIMITED project develops the first-ever ionic liquid sorbent methanol synthesis enabling over 80% yield production thanks to a high selective encapsulation technology for creating an unique long-term energy storage integrated process due to the decentralized conversion of CO2 sources through an accurate 3D-printing reactor technology.
HYPPER
Hybrid protonic reactor for flexible energy conversion, storage and transmission by reversible organic electrolysis
HyPPER is a groundbreaking project that combines cutting-edge electrochemical technology and molecular catalysis to reshape the future of energy storage and transport. With an emphasis on efficiency, flexibility, and sustainability, hyPPER aims to address one of the greatest challenges of our time: how to store and transport renewable energy at scale.
NOVETROL
Novel current control for climate neutral energy infrastructure
The NOVETROL project aims at developing new Current Limiting (CL) devices, based on high-mobility materials and the extraordinary magnetoresistance (EMR) effect, as well as their integration into Direct Current (DC)-and hybrid AC/DC microgrid infrastructure.
GRAVITEQA
GRAVITational StoragE, Quantum computing, and AI for enhanced Circularity and Reliability in Clean transition-affected sector-coupled electricity grids
GRAVITEQA highlights the synergetic benefits of gravitational storage, Quantum Computing (QC) and Quantum Inspired Computing (QIC), and data-driven, trustworthy AI-based analytics services. It aims to enhance reliability and circularity in sector-coupled electricity grids, which experience a significant shift in their operational status quo due to the implications of the clean energy transition.
EMPOWER
Unlocking the Potential of Geothermal and Industrial Waste Heat Utilization
The EMPOWER consortium aims to revolutionize low-temperature energy conversion by developing a new generation of organic Rankine cycle technologies. By adopting innovative cycle architectures based on partial evaporation, we aim to achieve a substantial increase in net power output compared to conventional organic Rankine cycle technology, while simultaneously reducing the system complexity and cost. The key enabler for this breakthrough is the development of efficient two-phase turbines capable of extracting work from the expansion of liquid-gas mixtures.
HEROGRID
SMART ENERGY HARVESTING AND TRANSMISSION FOR A RELIABLE EUROPEAN ELECTRICITY GRID BASED ON DYNAMIC LINE RATING (DLR) MODEL FOR HIGH TEMPERATURE LOW-SAG (HTLS) POWERLINES
HEROGRID is a European research and innovation project with the main goal to develop and validate a new concept of Dynamic Line Rating (DLR) designed for High-Temperature Low-Sag (HTLS) powerlines, using a self-powered IoT sensor network.HEROGRID proposes to achieve this by enabling smarter, data-driven operation of existing powerlines through real-time monitoring, AI-based modelling, and energy-autonomous sensing technologies