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Direct conversion of ethane to oxygenates ethylene and hydrogen in a noncatalytic biphasic plasma microreactor
Title | Direct conversion of ethane to oxygenates ethylene and hydrogen in a noncatalytic biphasic plasma microreactor |
Publication Type | Journal Article |
Year of Publication | 2023 |
Authors | Cameli, F, Dimitrakellis, P, Vlachos, DG |
Journal | ACS Sustainable Chemistry & Engineering |
Volume | 11 |
Pagination | 8003-8008 |
Date Published | may |
Keywords | 8.3 |
Abstract | We selectively upgrade ethane (C2H6) to ethanol (C2H5OH), methanol (CH3OH), and acetic acid (CH3COOH) in a catalyst-free, continuous, argon/water biphasic plasma microreactor. The water (H2O) evaporates and electron- dissociates into OH· radicals. OH· recombines with alkyl radicals, produced via electron dissociation of ethane, to generate the oxygenates that absorb into H2O. A plasma-assisted path, reminiscent of the low-temperature thermocatalytic ethane steam reforming, leads to significant H2 coproduction. The gaseous stream also comprises CO2 and C2H4. Up to 1.3 and 1 μmol min–1 of liquid C2H5OH and CH3OH are attained, respectively. Compared to CO2-assisted ethane plasma conversion, which produces many oxygenates with low selectivity, the carbon selectivity can range from >70% C2H5OH, CH3OH, and CH3COOH to 60% C2H4. The low carbon footprint, electrified, modular, intensified process using a reactive evaporation and separation plasma could pave the way for the valorization of underutilized shale gas resources in remote areas. |
URL | https://pubs.acs.org/doi/10.1021/acssuschemeng.3c01594 |
DOI | 10.1021/acssuschemeng.3c01594 |