Founding offer · lifetime membership for a single £24, exclusive to our first members · closes 20 June Claim your place →
Global Research Partnerships £24 Lifetime Log inCreate free account

Funded Projects › H2020

HYDROSOL-beyond · Thermochemical HYDROgen production in a SOLar structured reactor:facing the challenges and beyond

H2020Status: CLOSED1 January 201931 March 2024EU funding €2,999,940Call H2020-JTI-FCH-2018-1

The HYDROSOL-beyond proposed action is a continuation of the HYDROSOL-technology series of projects based on the utilization of concentrated solar thermal power for the production of Hydrogen from the dissociation of water via redox-pair-based thermochemical cycles. HYDROSOL-beyond is an ambitious scientific endeavor aiming to address the major challenges and bottlenecks identified during the previous projects and further boost the performance of the technology via innovative solutions that will increase the potential of the technologys future commercialization. In this context, HYDROSOL-beyond will capitalize on the 750kWth existing operational infrastructure, built in the HYDROSOL-Plant project, as well as on a cluster of relevant solar platforms and units (owned & operated by the project partners) in order to collect diverse experimental data from a wide range of achievable solar power (50-750kWth) facilities. This way HYDROSOL-beyond will have the flexibility of assessing the proposed novel approaches both under realistic environments and at different scales. The main objectives of HYDROSOL-beyond are: the minimization of the parasitic loses mostly related to the high consumption of inert gas via the introduction of innovative concepts for the purification and the potential full recycling of the utilized gases the efficient recovery of heat at rates >60% the development of redox materials and structures with enhanced stability (>1,000 cycles) and with production of hydrogen ~three times higher than the current state-of-the-art Ni-ferrite foams the development of a technology with annual solar-to-fuel efficiency of 10% the improvement of the reactor design and introduction of novel reactor concepts the development of smart process control strategies and systems for the optimized operation of the plant the demonstration of efficiency >5% in the field tests, i.e. during operation at the 750kWth HYDROSOL solar platform (PSA, Spain)

Consortium · 13 organisations

coordinator

ETHNIKO KENTRO EREVNAS KAI TECHNOLOGIKIS ANAPTYXIS

EL · €600,000

thirdParty

HYGEAR HYDROGEN PLANT BV

NL

participant

SCUOLA UNIVERSITARIA PROFESSIONALE DELLA SVIZZERA ITALIANA

CH · €286,125

thirdParty

HYGEAR TECHNOLOGY AND SERVICES BV

NL

participant

ABENGOA INNOVACION SOCIEDAD ANONIMA

ES · €130,133

thirdParty

HYGEAR FUEL CELL SYSTEMS BV

NL

participant

COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES

FR · €129,055

participant

HYGEAR BV

NL · €299,544

participant

CENTRO DE INVESTIGACIONES ENERGETICAS MEDIOAMBIENTALES Y TECNOLOGICAS

ES · €605,000

thirdParty

HYGEAR OPERATIONS BV

NL

participant

DEUTSCHES ZENTRUM FUR LUFT - UND RAUMFAHRT EV

DE · €481,217

participant

CA INFRAESTRUCTURAS INNOVACION Y DEFENSA SL

ES · €64,242

participant

ENGICER SA

CH · €404,625

Research fields

View the official record on CORDIS →

← Find collaborators and more funded projects

Source: CORDIS, Publications Office of the European Union. Global Research Partnerships surfaces open EU research data to help you find collaborators; we are not affiliated with the European Union.