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DOE OSTI · 2574122

Exploring Catalyst Compositions for Microwave-Assisted Methane Dehydroaromatization

Abstract

The flaring of natural gas in U.S. shale regions remains a challenge for producers. One alternative to flaring is converting the wasted gas into valuable chemicals. Microwave-based processes offer a promising solution, potentially enabling the development of compact, modular systems for on-site production of chemicals, such as aromatics, from natural gas. This is due to the advantages of microwave heating, including efficient heating of compact volumes, accelerated reaction rates, and electrification of heating. However, developing effective catalysts for microwave-based processes is challenging, as conventional materials often require modification to be effectively heated by microwaves. This study provides an overview of a catalyst development project focused on a molybdenum-supported zeolite catalyst, optimized for the direct conversion of methane into aromatics under microwave irradiation. It details the synthesis, characterization, and the effects of promoters, as well as computational efforts undertaken to understand and enhance the catalyst's performance.

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BibTeXRIS

Haynes, Daniel [NETL] (ORCID:0000000289956943), Dutta, Biswanath [NETL Site Support Contractor, National Energy Technology Laboratory], Kanitkar, Swarom [NETL Site Support Contractor, National Energy Technology Laboratory], Mai, Duy [NETL Site Support Contractor, National Energy Technology Laboratory], Myshakin, Evgeniy [NETL Site Support Contractor, National Energy Technology Laboratory]. 2025-06-08. Exploring Catalyst Compositions for Microwave-Assisted Methane Dehydroaromatization. https://doi.org/10.2172/2574122

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