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December 4, 2025Nature Energy12 citationsOpen Access

Production of hydrogen and carbon nanotubes from methane using a multi-pass floating catalyst chemical vapour deposition reactor with process gas recycling

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JPJ. M. PedenAWAlan H. Windle

Key Points

  • Hydrogen production reaches 85% alongside carbon nanotubes, showcasing enhanced process efficiency.
  • Molar process efficiency increased by 446-fold using biogas for carbon nanotube production.
  • Analysis focused on methane pyrolysis with a floating catalyst in a gas recycling setup.
  • Findings highlight potential for sustainable fuel production and CO2 mitigation.

Abstract

Abstract Converting natural gas into hydrogen and solid carbon materials using methane pyrolysis presents a promising opportunity to produce sustainable fuels and materials. The production of hydrogen and bulk carbon nanotubes (CNTs) via methane pyrolysis has been demonstrated independently, but concurrent production from the same reactor has remained elusive. Here we present a multi-pass floating catalyst chemical vapour deposition (FCCVD) reactor that converts methane into hydrogen and CNT aerogel. Whereas previous FCCVD CNT production consumed hydrogen, the multi-pass reactor recycles the carrier gas to eliminate the need for a hydrogen input. This results in a net output of 85 vol% hydrogen alongside CNT aerogel and a 446-fold increase in molar process efficiency. Furthermore, the demonstrated use of biogas to produce CNT aerogel enables a potential net sequestration of CO 2 from the atmosphere. The results of this study have been extrapolated to a pilot-scale reactor, using data gathered at a commercial facility, to consider the challenges and opportunities associated with scale-up.

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Cite This Study

Peden et al. (2025) studied this question.

synapsesocial.com/papers/6930dc8aea1aef094cca2864https://doi.org/10.1038/s41560-025-01925-3
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