Horizon Europe Sister Projects

ILIMITED is part of the wider Horizon Europe research and innovation ecosystem. The project actively aligns with, exchanges knowledge, and creates synergies with several sister projects under the HORIZON-CL5-2024-D2-01-04 call, addressing related challenges in energy systems, flexibility, digitalisation, and the integration of innovative solutions.

By connecting with these projects, ILIMITED contributes to a stronger European impact, avoids duplication of effort, and supports the uptake of complementary results across regions, stakeholders, and policy contexts.

Sister projects

Grid Forming Loads to provide maximum flexibility and enable future power systems with very high renewable generation penetration

GridForLoads develops and validates the concept of Grid Forming Loads (GFL). This includes defining the concept, selecting suitable types of loads, developing advanced controllers, and implementing them in relevant applications such as electric vehicle chargers, pump drives, and railway power systems.

Website: GridForLoads

Social media: LinkedIn

Photo-electrocatalytic routes for long-term sustainable hydrogen storage

PeCATHS is developing an integrated long-term energy storage system that uses hydrogen in the form of liquid organic hydrogen carriers (LOHCs), combined with innovative biomass conversion. By integrating the chemical and energy sectors, the project aims to synthesise platform chemicals and achieve long-term energy storage in liquid form, enhancing the sustainability and efficiency of energy systems.

Website: PeCATHS

Social media: LinkedIn, Mastodon, BlueSky, YouTube

Flexible ammonia synthesis technology for energy storage

FASTER aims to revolutionise the energy storage industry by validating the performance, techno-economic feasibility, and environmental impact of mild-temperature NH3 synthesis, boosting decentralised production of green ammonia as an energy and hydrogen vector.

Website: FASTER

Social media: LinkedIn, BlueSky

Combustion of liquid ammonia, assisted by plasma discharges, as a novel and clean energy conversion method.

CAIPIRINH3A aims to remove barriers to using ammonia as an alternative fuel by developing the Plasma Mist Ammonia (PlasMi-NH3) burner, a groundbreaking plasma-enabled combustor that burns ammonia efficiently with ultra-low NOx emissions.

Website: CAIPIRINH3A

Social media: LinkedIn, X, YouTube

Novel current control for climate neutral energy infrastructure

NOVETROL is 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.

Website: NOVETROL

Social media: LinkedIn, YouTube

Unlocking the potential of energy storage for grid-edge applications.

STOREDGE develops thermochemical heat storage technology with high efficiency and competitive costs. By storing heat in chemical bonds, it enables long-duration and even seasonal storage, while also upgrading medium-temperature heat to drive high-efficiency power cycles, such as supercritical systems.

Website: STOREDGE

Social media: LinkedIn

Electro-thermal energy converter using novel combined thermoacoustic and electrocaloric system

THERMINATOR is developing an advanced energy conversion “skin” that transforms waste heat into electricity. The technology integrates thermoacoustic and electrocaloric systems to reduce energy loss and improve efficiency across various sectors.

Website: THERMINATOR

Social media: LinkedIn

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. Focusing on efficiency, flexibility, and sustainability, hyPPER aims to address one of the greatest challenges of our time: storing and transporting renewable energy at scale.

Website: hyPPER

Social media: LinkedIn

Strengthening impact through collaboration

Through collaboration with these sister projects, ILIMITED reinforces knowledge exchange, supports joint dissemination and contributes to coordinated European research efforts aimed at accelerating the clean energy transition.