Undergy

Undergy


“MISIONES” PROJECTS
English

The Undergy project, formed by the consortium of the companies Petroleum (leader), Gas Natural Comercializadora, Ayterra, Gessal, Técnicas Reunidas and H2B2 Electrolysis Technologies, will investigate the technological basis for improving the competitiveness of stationary storage of renewable energy and will integrate into a smart grid, renewable generation and seasonal storage of high-capacity energy using green hydrogen in depleted gas fields.

In the framework of this project, H2B2, in collaboration with Loyola University – Loyola Innovation Hub (https://www.uloyola.es/), will investigate the achievement of an advanced technological solution for water electrolysis for hydrogen generation that adequately responds to its renewable origin and is compatible with its large-scale supply.

The know-how for the electrolysis of water conversion of renewable energy into hydrogen will be developed, maximizing the use of renewable energy through a flexible system design and minimizing the cost of implementation. To this end, existing infrastructures will be used as much as possible.

Spanish

l proyecto Undergy, formado por el consorcio de las empresas Petroleum (líder), Gas Natural comercializadora, Ayterra, Gessal, Técnicas Reunidas y H2B2 Electrolysis Technologies, investigará las bases tecnológicas para mejorar la competitividad del almacenamiento estacionario de energía renovable e integrará en una red inteligente, la generación renovable y el almacenamiento estacional de energía de alta capacidad mediante hidrógeno verde en yacimientos agotados de gas.

En el marco de este proyecto, H2B2, en colaboración con la Universidad Loyola – Loyola Innovation Hub (https://www.uloyola.es/), investigará la consecución de una solución tecnológica avanzada de electrólisis de agua para la generación de hidrógeno que responda adecuadamente a su origen renovable y sea compatible con su suministro a gran escala.

Se desarrollará el know-how de la conversión de energía renovable en hidrógeno mediante electrólisis del agua, maximizando el aprovechamiento de la energía renovable mediante un diseño flexible del sistema y minimizando el coste de implementación. Para ello, se aprovecharán en la medida de lo posible las infraestructuras existentes.

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