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Hydrogen & C1 Gas Research Center

Hydrogen & C1 Gas Research Center
Head
  • NameChae-ho jung
  • Office+82-42-860-7290
  • Mailhjchae@krict.re.kr
이윤조 사진

Major research fields

Ammonia-based hydrogen storage/supply technology & green catalyst technologies

  • High-performance cracking catalyst materials and mass production technology for low-temperature ammonia-hydrogen conversion
  • Low temperature, low pressure, high-performance ammonia synthesis catalyst and reaction technology
  • Compact type high-efficiency reactor for ammonia-hydrogen production
  • Greenhouse gas (CH4, N2O) and fine particulate matter precursor (NOx, SOx) removal technology using ammonia fuel and eco-friendly fuel

Chemical process technology to produce clean fuels and base chemicals from C1 gas

  • Catalytic process for producing base chemicals (hydrogen, olefins, methanol, aromatics) and clean liquid fuels from gas resources (CH4, CO2)
  • Catalytic process systems (GTL, micro-GTL) for small and medium-scale natural gas and shale gas utilization
  • Low-carbon hydrogen production from underutilized gas resources
  • Base resin production by direct methane conversion

Petroleum residue-based carbon material production technology

  • Petroleum residue-based carbon material production technology
  • Carbon material production from methane
  • Artificial graphite-based cathode for secondary batteries and heat dissipating material production process

Catalytic reaction technology for electrochemical-based green hydrogen and chemical production

  • High-performance catalyst material synthesis technology for hydrogen production from water electrolysis
  • Electrochemical catalytic reaction technology for simultaneous production of high value-added chemicals and hydrogen using unutilized carbon sources
  • Mass production and localization of catalyst materials for electrochemical reactions

Gas separation membrane technology to recover greenhouse gases, base chemicals, and energy produced from industrial by-products and chemical reactions

  • Separation membrane and separation process for carbon monoxide, hydrogen, and nitrous oxide recovery from by-product gas in steel and chemical industry
  • Separation membrane and separation process for methane, carbon dioxide, and fluoride gas recovery in natural gas and semiconductor industry
  • Facilitated transport membrane and separation process for olefin/paraffin separation in petrochemical industry
  • Hybrid systems for high purity of chemical catalytic reaction products and improved reaction efficiency