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    Electrocatalytic conversion of ethylene to ethylene oxide mediated by halide oxidation: Chloride vs. Bromide vs. Iodide

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    1-s2.0-S1385894724045303-main.pdf (3.612Mb)
    Date
    2024-08-15
    Author
    Liang, Nan-Nan
    Choi, Wonjung
    Suk Han, Dong
    Park, Hyunwoong
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    Abstract
    Ethylene oxide (EO) is among the most extensively used chemicals and is conventionally produced via the thermochemical oxidation of ethylene. This study demonstrates that a Pt-doped RuO2 and TiO2 composite (Pt-RuO2/TiO2) electrocatalyst drives ethylene oxidation to EO in the presence of reactive chlorine and bromine species in aqueous chloride and bromide solutions at Faradaic efficiencies (FEs) of ∼100 % and ∼90 %, respectively. Despite a lower FE, the bromine production is more feasible than the chlorine production and the as-formed bromine species remains stable for postreaction with ethylene. The iodine species exhibits a low reactivity toward ethylene. The activity of Pt-RuO2/TiO2 is substantially higher than that of other catalysts. Membraned and membraneless flow electrolyzers with a Pt-RuO2/TiO2 anode for ethylene oxidation and a Pt/C cathode for oxygen reduction are demonstrated at J = 500 mA cm−2. Technoeconomic analysis reveals reduction in the production cost of EO by 10 % with the membraneless electrolyzer.
    URI
    https://www.sciencedirect.com/science/article/pii/S1385894724045303
    DOI/handle
    http://dx.doi.org/10.1016/j.cej.2024.153042
    http://hdl.handle.net/10576/64285
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    • Center for Advanced Materials Research [‎1485‎ items ]

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