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Project cooperationUpdated on 17 June 2025

UHVDCLY - Ultra High Voltage Direct Current Liquid hYdrogen

Anton Fellinger

superconduction x liquid hydrogen x district heating at private individual

Vienna, Austria

About

Reverse engineering the cern cooling for finding a way to liquid hydrogen refueling pushed me into the idea of redesigning the former separate worlds of „gas“ and „electricity“ into a new, combined system to unearth the potential of superconducting electricity distribution.

Using SLH2 as coolant for LTSC at ultra high voltage DC has the potential to carry gigawatts through existing pipelines retrofitted with my coaxial cable insert.

This requires a unified energy planning bringing together thermal, electrical and chemical energy planning.

The concept is implemented via large scale solar-steam driven turbine liquefaction offering anergy into district heating.

Topic

  • CM2025-01: Multi-vector interactions between the integrated energy system and industrial frameworks
  • CM2025-02: Energy system flexibility: renewables production, storage and system integration
  • CM2025- 03: Advanced renewable energy (RE) technologies for power production
  • CM2025- 05: Hydrogen and renewable fuels
  • CM2025- 06: Call Module 2025-06: Heating and cooling technologies
  • CM2025- 07: Integrated regional energy systems
  • CM2025- 08: Integrated industrial energy systems
  • CM2025- 09: Clean energy integration in the built environment

Type

  • R&D Partner
  • Technology Partner
  • Validator/Living lab
  • Investor

Organisation

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    Krzysztof Dionizy Pułaski

    Prezes Zarządu i dyrektor projektu at Biomax FMS Sp.z.o.o

    Warszawa, Poland