arXivDaily arXiv每日学术速递 周一至周五更新
arXiv周末暂无论文更新,休息一下吧,周末愉快~~

用于电化热化学的感应加热谐振反应器

Induction-heated resonant reactors for electrified thermochemistry

Connor Cremers, Chenghao Wan, Calvin H. Lin, Zhennan Ru, Kesha Tamakuwala, Ariana B. Hofelmann, Dolly Mantle, Matthew W. Kanan, Juan Rivas-Davila, Jonathan A. Fan

arXiv 2607.15365首次发表:更新:

AI 中文总结

研究用于电化热化学的感应加热谐振反应器,以瑞士卷谐振器为模型,可实现均匀体积加热和增强传热。与传统感应加热系统相比,通过谐振能量传输提高了系统效率,展示了电磁与热化学整合利用绿色电力的新机遇。

AI 中文摘要

我们提出了感应加热谐振反应器,这是电化热化学中的一个新概念,其中反应器本身作为通过谐振无线功率传输加热的体积电磁谐振器。我们以瑞士卷谐振器作为模型系统,表明它可设计成支持均匀的体积加热分布和增强的传热特性,为规模化系统中的过程强化创造机会。与传统(即非谐振)感应加热系统相比,谐振反应器通过近乎单位的功率-热效率和低热损失的结合,能实现极高的系统效率,这两者均由谐振能量传输实现。这些概念展示了电磁功率转换与热化学反应工程的整合如何为可持续化学转化中利用绿色电力带来新机遇。

英文摘要

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.

论文原文

arXiv 摘要页 · PDF 原文 · HTML 原文

↑