Induction-heated resonant reactors for electrified thermochemistry

arXiv:2607.1536510.3h-index: 31
Predicted impact top 6% in SY · last 90 daysOriginality Highly original
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This work presents a new reactor concept for electrified thermochemistry, potentially enabling more efficient use of green electricity in sustainable chemical conversion.

The paper introduces induction-heated resonant reactors that achieve uniform volumetric heating and enhanced heat transfer, enabling process intensification with near-unity power-to-heat efficiencies and low thermal losses compared to conventional induction heating.

We present induction-heated resonant reactors, a new concept in electrified thermochemistry in which the reactor itself serves as a volumetric electromagnetic resonator heated through resonant wireless power transfer. We use the Swiss roll resonator as a model system and show that it can be designed to support uniform volumetric heating profiles and enhanced heat transfer characteristics, creating opportunities for process intensification in scaled systems. Compared to conventional (i.e., non-resonant) induction heating systems, resonant reactors can achieve exceptionally high system efficiencies through the combination of near-unity power-to-heat efficiencies and low thermal losses, both enabled by the utilization of resonant energy transfer. These concepts demonstrate how the integration of electromagnetic power transduction with thermochemical reaction engineering enables new opportunities for utilizing green electricity in sustainable chemical conversion.

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