U_sevilla_en

VECTOR 10 NC – University of Seville

In May 2024, we completed the commissioning of the Vector10 for the University of Seville (US).

This project is located at our customer facilities in Seville, Spain. Our customer is the University of Seville where the team is studying smart grid systems to maximize energy utilization on grid that includes hydrogen as an energy vector.

Technical characteristics of the project:

  • Power to Power Unit: Vector 10 (Low Pressure)
  • Source of energy: Solar
  • Final delivered pressure: up to 35 barg
  • Fuel cell capacity: 6,8 kW VDC gross power
  • Voltage: configurable to connect to 24, 48 and 72 VDC buses
  • Cooling System: Air/Water system
  • Storage capacity: 2 x 850 litres at 35 barg
  • Energy Management System: Vector 10 Software
  • Batteries: No
  • Date of commissioning: 09/05/24

 

Link: https://www.us.es/

Last posts

In the current context of the energy transition, the search for competitive and environmentally friendly technological solutions is more important than ever. At H2Vector Energy Technologies, S.L., we continue our commitment to innovation through our new project: “Research and development of a novel fuel cell stack system using AEM technology”. This ambitious initiative, registered under file number VE2-010000-2024-75, is part of the PERTE VEC – Section B program framework.

Read Post »

At H2Vector Energy Technologies, S.L., we continue to expand our research lines to offer innovative solutions to the climate challenge. We are proud to announce our new project, named METANOGENHICA – “Methane for the dual generation of Hydrogen and useful carbon”.

This initiative represents a significant step forward in the field of digitalization applied to industrial sustainability, providing new tools for resource management and emissions reduction.

Read Post »

Our CEO, Miguel Ángel Ocando, took part in the technical and business podcast Seeds of Success, where he provides an in-depth analysis of the technological challenges of solid-state storage, competitiveness compared with lithium, and the integration of hydrogen solutions into the industrial sector.

The transition towards a decarbonized industrial model requires viable, safe, and scalable technological solutions.

Read Post »

This website stores cookies on your computer. These cookies are used to provide a more personalized experience and to track your whereabouts around our website in compliance with the European General Data Protection Regulation. If you decide to to opt-out of any future tracking, a cookie will be setup in your browser to remember this choice for one year.

Accept or Deny