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
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- 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
Networking
Circular Economy and Biotechnology projects:
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,
LIFE SMART Hospital
The LIFE SMART Hospital Project has promoted the sustainability of the health sector through the deployment of best practices and available technologies, training programs and replication of experience.
VALOR-PLUS
The VALOR-PLUS supports the realisation of sustainable, economically viable closed loop integrated biorefineries through the development of new knowledge, (bio-)technologies and products that enable valorisation of key biorefinery by-products.
LIFE COLRECEPS
The main objective of the COLRECEPS project is the implementation of a prototype demonstration plant to recycle residual EPS and obtain EPS beads. With these pearls, new recycled EPS prototype products will be manufactured.
LIFE REVAWASTE
The LIFE REVAWASTE project (www.revawaste.eu) was born proposing the sustainable management of a broad spectrum of waste in an integrated plant or “Mixed Plant”.
LIFE EUCALYPTUS ENERGY
The LIFE EUCALYPTUS ENERGY Project consists of the pyrolysis of eucalyptus biomass for the production of electricity and biochar. It is intended to make use of the residual biomass of eucalyptus forest exploitation.
RECALZA
RECALZA proposes to develop a chemical recycling process of the generated polyurethane foam residues, to obtain the polyol again and re-manufacture new products (recycled soles) that meet the requirements for the footwear sector.
CONREPOL
The CONREPOL project will evaluate both chemical procedures based on the use of compounds that increase the surface polarity (silane coupling agents) of the waste and physical treatments with the same objective.
GREEN-CAR
The GREEN CAR ecodesign Project applies the ecodesign methodology to several components of the “electric vehicle” system: batteries, converter, charging points, conditioning systems and auxiliary systems from renewable sources
LIFE RESCATAME
RESCATAME represents a new system for the sustainable management of traffic through the use of models that predict pollution levels, which are supported by data collected by the network of air quality sensors, and that can help to execute a rapid action.
BIOREFINERÍA FT
The FT BIOREFINERY Project consists in developing a technology that allows obtaining 2nd generation liquid biofuels (synthetic diesel) and electrical energy, through the application of gasification and co-gasification processes, of different types of solid and / or liquid waste ( herbaceous biomass, lignocellulosic, glycerin, etc.)
BIALEMA
BIALEMA: RED for the production of Biofuels and its impact on food, energy and the environment. Conducted by Dr. Antonio Francisco Valdes Delgado (CUBAENERGIA).
BIORECOS
The BIORECOS Project aims to design and build a demonstration plant of a modular nature that allows, through pyrolysis, the production of charcoal and / or active coal, as well as the generation of electrical energy.
ENHANCE HEALTH
The ENHANCE HEALTH project focuses on environmental and health concerns related to air pollution produced by industries and waste incinerators in urban areas.













