Effective Hydrogen Production and Controllable Carbon Nanotube Synthesis from Methane Pyrolysis over Quaternary Alloys
ID:6 View Protection:ATTENDEE Updated Time:2026-08-11 22:21:44 Hits:2 Oral Presentation

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Abstract
Methane pyrolysis (MP) offers a promising pathway for CO2-free hydrogen production while simultaneously generating high-value carbon materials. However, current catalysts face challenges such as high melting points, limited catalytic efficiency, poor stability, and insufficient utilization of the carbon by-products. Here, we report a new family of quaternary liquid alloy catalysts (LACs) developed by incorporating a fourth element (Mn, Fe, Co, Cu, Mg, Al, or Cr) into the NiMo-Bi system. Among them, the NiMoMn-Bi alloy demonstrated the most outstanding performance, with a remarkably low activation energy of 72.4 kJ mol⁻¹, enabling efficient MP over a broad temperature range of 350–1050 °C. This catalyst achieved a fourfold increase in hydrogen production efficiency compared with its ternary counterpart. Furthermore, NiMoMn-Bi exhibited 99.98% H2 selectivity and outstanding stability over 260 h of continuous operation. Notably, the carbon nanotubes synthesized from NiMoMn-Bi and NiMoCu-Bi alloys exhibited excellent Li+ battery performance, highlighting their potential for energy storage applications.
 
Keywords
Methane pyrolysis, molten alloy catalysts, density functional theory, reaction kinetic
Speaker
Mengting Wang
Mrs. Monash University

Submission Author
Mengting Wang Monash University
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Important Date
  • Conference Date

    Nov 20

    2026

    to

    Nov 24

    2026

  • Sep 30 2026

    Draft paper submission deadline

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China University of Mining and Technology