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Non-precious metal catalysts driving advancements in natural gas electrolysis and fuel cell technologies

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Non-precious metal catalysts driving advancements in natural gas electrolysis and fuel cell technologies

Technology Introduction:
This technology enables low-voltage (~1.5 V) electrolysis of natural gas (methane) or hydrogen-enriched mixtures to produce ultra-pure hydrogen, which is directly used in fuel cells. The membrane electrode assembly (MEA), made of a non-precious metal catalyst and ion-exchange membrane, operates in both electrolysis and fuel cells. This dual-function design lowers costs and enhances scalability for real-world applications.
Industry Applicability:
This technology is suitable for petrochemical, heavy, electronics, and semiconductor industries. Natural gas can be directly delivered via pipelines to facilities, where it undergoes methane electrolysis to produce high-purity hydrogen. The hydrogen can be used in industrial processes or as a power source via fuel cells. Due to its flexibility, the technology is not limited to specific sectors and can showing great potential for widespread implementation.

National Taiwan University of Science And Technology

Taiwan Tech has five campuses: the main Taipei campus and branch campuses at Tu-Cheng, Keelung, Gong-Guan, and Chupei, with a combined total area of 29.44 hectares. The main campus, situated in a district of Taipei with convenient transportation and beautiful surroundings, covers an area of about 10 hectares. Current enrollment includes 5,605 undergraduates and 4,902 graduate students with 415 full-time faculties.

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  • Phone:02-2733-3141 #3640

  • Address:No.43, Keelung Rd., Sec.4, Da’an Dist., Taipei 10607, Taiwan

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  • Pavilion:Future Tech Net Zero FF10

  • Affiliated Ministry:Academia Sinica

  • Application Field:Green Energy & Environment

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  • Technology maturity:Others

  • Exhibiting purpose:Display of scientific results

  • Trading preferences:Negotiate by self

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