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

Descripción del proyecto

Hacia la comercialización de una buena idea para una producción de hidrógeno sostenible y limpia

Cuando el hidrógeno y el oxígeno se combinan en una pila de combustible para producir electricidad (un flujo de iones), los únicos subproductos resultantes son agua y calor. Sin embargo, existen muchas formas de producir gas de hidrógeno y muchas de ellas no son sin emisiones. Generar gas de hidrógeno a partir de fuentes de energía renovables da como resultado el llamado «hidrógeno ecológico» y es en lo que se centra el proyecto financiado con fondos europeos HYDROSOL-beyond. El equipo está terminando la serie HYDROSOL de los proyectos Horizonte 2020, cuyo objetivo es optimizar su planta de producción de hidrógeno, que produce hidrógeno a través de energía solar térmica concentrada. Las mejoras técnicas y en el control de procesos eliminarán los cuellos de botella restantes para la comercialización y la aceptación.

Objetivo

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 technology’s 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)

Régimen de financiación

RIA - Research and Innovation action

Coordinador

ETHNIKO KENTRO EREVNAS KAI TECHNOLOGIKIS ANAPTYXIS
Aportación neta de la UEn
€ 600 000,00
Dirección
CHARILAOU THERMI ROAD 6 KM
57001 Thermi Thessaloniki
Grecia

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Región
Βόρεια Ελλάδα Κεντρική Μακεδονία Θεσσαλονίκη
Tipo de actividad
Research Organisations
Enlaces
Coste total
€ 600 000,00

Participantes (11)