Modular membrane reactors for efficient CO2 capture and valorization

Mission

HyET NoCarbon’s core mission is to develop and commercialize new innovative modular technologies to decarbonize the chemical industry and the energy supply chain.

Value proposition

HyET NoCarbon accelerates the energy transition with the large-scale deployment of its low cost, high efficiency modular systems.

Key technologies

  1. Direct Air Capture of CO2
  2. Electrochemical CO2 compression
  3. Small-scale ammonia decomposition reactors & fuel cells
    • Based on planar protonic ceramics (in reactors H2 separation
    • Based on tubular Pd membranes (in reactor H2 separation)
  4. Synthetic Fuel production
    • Based on Low Temperature electrochemical processes (Aqueous CO2 electrolysis)
    • Based on High Temperature electrochemical processes (Tubular protonic ceramics)
  5. Electrochemical ammonia production and ammonia fuel cells
    • Based on high temperature electrchemical processes (Tubular protonic ceramics)

Examples of markets served

  • CCU and sustainable aviation fuels
  • Green ammonia supply chain
  • Supplying basic building blocks for the green chemical industry
  • Shipping industry
  • Ammonia processing equipment

HyET NoCarbon

HyET NoCarbon aims to accelerate the energy transition with the large-scale deployment of its low cost, high efficiency modular systems that enable decarbonization of chemical industries and the energy supply chain. HyET NoCarbon is developing different technologies to enable decarbonization based on three core aspects – low temperature membrane electrolyzers, high temperature protonic ceramic electrolyzers and tubular palladium membrane reactors.

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