CARTIF Projects

H2METAMO

Green hydrogen programme “Technologies, materials and processes for small-scale production of renewable hydrogen carriers (methane and ammonia) for distributed use in Castilla y León”.

Description

H2METAMO is focus on the development of compact and efficient plants for the generation of hydrogen molecules carriers. The project has two main lines: one for the generation of methane and another for the production of ammonia. Both includes the design of modular, compact, small size, highly efficient and viable plants from a technical-economical point of view for the generation of methane and methanol as of renewable H2, by developing new materials (avoiding the fragilization), new catalisers and the optimisation of reactors (design, dimensioning and simulation). The project also includes, the creation of a own master at the University of Burgos taught by the researchers.

 

Objectives

    • Development of compact and efficient methane plants as hydrogen carrier.
    • Development of compact and efficient plants hydrogen carrier (ammonia).
    • Promotion of specialised human resources and R&D&i in hydrogen technologies. 

Acciones

  • Síntesis de catalizadores eficientes y de abjo coste para la obtención de metano partiendo de hidrógeno renovable. 
  • Determinación de los rendimientos y cinéticas de reacción de los nuevos catalizadores para la obtención de metano. 
  • Estudio de los efectos de las condiciones de operación y estrategias de mejora de la actividad y estabilidad. 

R&D Line

  • Research on chemical-catalytic reaction processes, heterogeneous catalysts and adsorbent (bio)materials.

Partners

Investment 1. (C17. I1), of the Recovery, Transformation and Resilience Plan.

Total Budget: 2,698,246€

CARTIF Budget: 341,190€

CARTIF Financing: 341,190€

Duration: 01/09/2022 – 01/09/2025

Responsible

David Díez

Division of Agrifood and Processes

davdie@cartif.es

Networking

Circular Economy and Biotechnology projects:

BATERURGIA

BATERURGIA

BATERURGIA “research into advanced recycling technologies for obtaining strategic metals from EV batteries”, aims to respond to the challenges posed by the recycling of LIBs and provide knowledge to solve the problems arising from the recovery and selective separation of critical metals to facilitate their use in the manufacture of new batteries or to replace conventional raw materials and introduce them into other production sectors as alternative raw materials. 

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WoodLi

WoodLi

WoodLi project focuses on the development of bioadhesives for use in the manufacture of wood-based panels used, among others, in the construction sector. The bioadhesive of the WoodLi project will differ from commercial adhesives in that it will be of renewable origin and will not present toxicity problems

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FRONTSH1P

FRONTSH1P

Frontsh1p will contribute to further the green transition in the Polish region of Lódzkie. A region that on the one hand, traditionally heavily relies on coal extraction, and on the other hand, has pioneered circular (bio)economy since the early 2000s. The region has always been in the forefront of innovation and has become one of the leading regions in the field of circular economy.

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BioSFerA

BioSFerA

BioSFerA aims to develop a cost-effective interdisciplinary technology to produce sustainable aviation and maritime fuels. The overall process, combining thermochemical, biological and thermocatalytic parts is based on the gasification of biomass and other biogenic waste and the 2-stage fermentation of the produced syngas.

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AQUAMUNDAM

AQUAMUNDAM

AQUAMUNDAM pursues an improvement in the sustainable management of the integral water cycle, for this the development and demonstration of both methodologies and a modular information system that facilitates inter-administrative communication and of different agents with competence in the integral management of water is contemplated

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LIFE VALPORC

LIFE VALPORC

The goal of the LIFE + VALPORC is to demonstrate a sustainable alternative to the management of pig carcasses and manure, focusing on the environmental problems derived from its current management and valorizing these wastes by transforming them into biofuels (biogas and biodiesel) and organic fertilizers,

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