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H2020

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HORIZON-CL5-2023-D4-01-06
Integration of renewable heat or industrial waste heat in heat-to-cold conversion systems to generate cold for industrial processes
ExpectedOutcome:Project results are expected to contribute to all the following expected outcomes, except where options are mentioned:
Sólo fondo perdido 0 €
Europeo
Esta convocatoria está cerrada Esta línea ya está cerrada por lo que no puedes aplicar. Cerró el pasado día 20-04-2023.
Se espera una próxima convocatoria para esta ayuda, aún no está clara la fecha exacta de inicio de convocatoria.
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Presentación: Consorcio Consorcio: Esta ayuda está diseñada para aplicar a ella en formato consorcio..
Esta ayuda financia Proyectos:

ExpectedOutcome:Project results are expected to contribute to all the following expected outcomes, except where options are mentioned:

Integration of renewable thermal energy sources or industrial waste heat into more energy-, emissions-, cost- and space-efficient conversion systems generating cold for several industrial sectors and processes, maximising primary energy savings and CO2 emission reduction compared to present state-of-the-art, thereby reducing fossil fuel imports dependency. Optionally: integration of heat storage, of renewable electrical energy sources; integration of district heating or cooling network.Optionally: combined generation of heat and cold for industrial processes.
Scope:Increasing the efficiency of the cooling systems and reducing costs, coupling the cooling systems with renewable energy sources, and harnessing available industrial waste heat (including from data centres), can contribute to reduce the environmental impact and make the industrial sectors more competitive and less dependent on fossil fuel imports.

In order to reach this goal, all the following development areas need to be covered:

Identify the... ver más

ExpectedOutcome:Project results are expected to contribute to all the following expected outcomes, except where options are mentioned:

Integration of renewable thermal energy sources or industrial waste heat into more energy-, emissions-, cost- and space-efficient conversion systems generating cold for several industrial sectors and processes, maximising primary energy savings and CO2 emission reduction compared to present state-of-the-art, thereby reducing fossil fuel imports dependency. Optionally: integration of heat storage, of renewable electrical energy sources; integration of district heating or cooling network.Optionally: combined generation of heat and cold for industrial processes.
Scope:Increasing the efficiency of the cooling systems and reducing costs, coupling the cooling systems with renewable energy sources, and harnessing available industrial waste heat (including from data centres), can contribute to reduce the environmental impact and make the industrial sectors more competitive and less dependent on fossil fuel imports.

In order to reach this goal, all the following development areas need to be covered:

Identify the target industrial processes which would benefit from the integrated cooling systems; assess the impacts on these processes in terms of energy savings and GHG and air pollutant emissions reductions in the EU (and Associated States, if data are available), so as to maximise the impact and coverage of the most promising solutions in the subsequent optimisation and demonstration steps. A preliminary assessment is expected at proposal stage.Improve the refrigeration system efficiency and environmental friendliness, for example: improve the control system and operating strategies; develop internal recoveries for refrigeration plants (e.g. vapour compression plants); environment friendly materials and working fluids and novel heat exchangers for refrigeration systems (e.g. absorption systems). Optionally: combine the generation and use of both heat and cold.Integrate and demonstrate the refrigeration system in an industrial application in at least one industrial sector, including the mandatory integration of on-site or near-by solar thermal or geothermal plants with minimisation of the space needed. Optionally also: harvesting of industrial waste heat; thermal storage; cold transportation; integration of renewable electrical energy sources, with possible electrical demand flexibility for contributing to the stabilisation of the electrical grid; integration of district heating or cooling network.Identify the potential barriers to the deployment of the integrated cooling solutions due to thermal renewables variability, investigating notably other mitigation alternatives than gas-fired backups, such as insurance mechanisms to alleviate the financial risk for the company. Identify non-technical barriers due to the local regulatory framework in the EU Member States and Associated Countries.Make an analysis of the potential industrial applications and related benefits (technical, economic, climatic, environmental) of integrated cooling solutions in at least four different industrial processes, in the EU and (if data are available) in the Associated States and, by extrapolation, at global level. Define an exploitation strategy. For proposals submitted under this topic, the plan for the exploitation and dissemination of results should include a strong business case and sound exploitation strategy, as outlined in the introduction to this Destination. The exploitation plans should include preliminary plans for scalability, commercialisation, and deployment (feasibility study, business plan) indicating the possible funding sources to be potentially used (in particular the Innovation Fund). Disseminate the technical and economic benefits, notably (but not only) to the communities of the relevant Horizon Europe private-public partnerships.
Specific Topic Conditions:Activities are expected to achieve TRL 7 by the end of the project – see General Annex B.




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Temáticas Obligatorias del proyecto: Temática principal:

Características del consorcio

Ámbito Europeo : La ayuda es de ámbito europeo, puede aplicar a esta linea cualquier empresa que forme parte de la Comunidad Europea.
Tipo y tamaño de organizaciones: El diseño de consorcio necesario para la tramitación de esta ayuda necesita de:
Empresas Micro, Pequeña, Mediana, Grande
Centros Tecnológicos
Universidades
Organismos públicos

Características del Proyecto

Requisitos de diseño: *Presupuesto para cada participante en el proyecto Requisitos técnicos: ExpectedOutcome:Project results are expected to contribute to all the following expected outcomes, except where options are mentioned: ¿Quieres ejemplos? Puedes consultar aquí los últimos proyectos conocidos financiados por esta línea, sus tecnologías, sus presupuestos y sus compañías.
Capítulos financiables: Los capítulos de gastos financiables para esta línea son:
Madurez tecnológica: La tramitación de esta ayuda requiere de un nivel tecnológico mínimo en el proyecto de TRL 6:. Representa un paso importante en demostrar la madurez de una tecnología. Se construye un prototipo de alta fidelidad que aborda adecuadamente las cuestiones críticas de escala, que opera en un entorno relevante, y que debe ser a su vez una buena representación del entorno operativo real. leer más.
TRL esperado:

Características de la financiación

Intensidad de la ayuda: Sólo fondo perdido + info
Fondo perdido:
The funding rate for IA projects is 70 % for profit-making legal entities and 100 % for non-profit legal entities.
Condiciones: No existe condiciones financieras para el beneficiario.

Información adicional de la convocatoria

Efecto incentivador: Esta ayuda no tiene efecto incentivador. + info.
Respuesta Organismo: Se calcula que aproximadamente, la respuesta del organismo una vez tramitada la ayuda es de:
Meses de respuesta:
Muy Competitiva:
No Competitiva Competitiva Muy Competitiva
No conocemos el presupuesto total de la línea
Minimis: Esta línea de financiación NO considera una “ayuda de minimis”. Puedes consultar la normativa aquí.

Otras ventajas

Sello PYME: Tramitar esta ayuda con éxito permite conseguir el sello de calidad de “sello pyme innovadora”. Que permite ciertas ventajas fiscales.