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Methane Pyrolysis for Zero-Emission Hydrogen Production: A Potential Bridge Technology from Fossil Fuels to a Renewable and Sustainable Hydrogen Economy

Industrial & Engineering Chemistry Research · 2021 · Vol. 60(32) · pp. 11855–11881
Nuria Sánchez‐BastardoRobert SchlöglHolger Ruland

Abstract

Hydrogen plays a key role in many industrial applications and is currently seen as one of the most promising energy vectors. Many efforts are being made to produce hydrogen with zero CO2 footprint via water electrolysis powered by renewable energies. Nevertheless, the use of fossil fuels is essential in the short term. The conventional coal gasification and steam methane reforming processes for hydrogen production are undesirable due to the huge CO2 emissions. A cleaner technology based on natural gas that has received special attention in recent years is methane pyrolysis. The thermal decomposition of methane gives rise to hydrogen and solid carbon, and thus, the release of greenhouse gases is prevented. Therefore, methane pyrolysis is a CO2-free technology that can serve as a bridge from fossil fuels to renewable energies.

Catalysts for Methane ReformingThermochemical Biomass Conversion ProcessesHybrid Renewable Energy SystemsMethaneFossil fuelSteam reformingRenewable energyHydrogen productionRenewable fuelsHydrogen economyEnvironmental scienceWaste managementNatural gas

Funding

  • Bundesministerium für Bildung und Forschung
  • Max-Planck-Gesellschaft
Citations
505
FWCI
17.61
field-weighted impact
References
256
Percentile
100%
vs. same field & year
Citations per year
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