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Methanol synthesis over Cu/SiO2 catalysts
Authors:John L. Robbins  Enrique Iglesia  C. P. Kelkar  Bruce DeRites
Affiliation:(1) Exxon Corporate Research Science Laboratories, Route 22 East, 08801 Annandale, New Jersey, USA
Abstract:The rates of CO and CO/CO2 hydrogenation at 4.2 MPa and 523 K are reported for a series of Cu/SiO2 catalysts containing 2 to 88 wt.% Cu. These catalysts were prepared on a variety of silica sources using several different Cu deposition techniques. In CO/CO2 hydrogenation, the rate of methanol formation is proportional to the exposed Cu surface area of the reduced catalyst precursor, as determined by N2O frontal chromatography. The observed rate, 4.2×10–3 mole CH3OH/Cu site-sec, is within a factor of three of the rates reported by others over Cu/ZnO and Cu/ZnO/Al2O3 catalysts under comparable conditions. These results suggest that the ZnO component is only a moderate promoter in methanol synthesis. Hydrogenation of CO over these catalysts also gives methanol with high selectivity, but the synthesis rate is not proportional to the Cu surface area. This implies that another type of site, either alone or in cooperation with Cu, is involved in the synthesis of methanol from CO.
Keywords:Methanol  methanol synthesis  CO hydrogenation  copper catalysts  copper/silica catalysts
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