Publication | Closed Access
Direct Catalytic Conversion of Methane to Methanol in an Aqueous Medium by using Copper‐Promoted Fe‐ZSM‐5
618
Citations
31
References
2012
Year
Materials ScienceSelective OxidationChemical EngineeringAqueous MediumEngineeringCatalytic ApplicationIndustrial CatalysisCopper‐promoted Fe‐zsm‐5Iron Copper ZeoliteCatalysisDirect Catalytic ConversionChemistryHydrogenCatalyst PreparationCatalytic ProcessCarbon–hydrogen BondCatalyst ActivationCatalytic Synthesis
Iron copper zeolite (Fe-Cu-ZSM-5) with aqueous hydrogen peroxide is active for the selective oxidation of methane to methanol. Iron is involved in the activation of the carbon–hydrogen bond, while copper allows methanol to form as the major product. The catalyst is stable, re-usable and activates methane giving >90 % methanol selectivity and 10 % conversion in a closed catalytic cycle (see scheme).
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