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Conversion of carbon monoxide on membrane catalysts of palladium alloys. I. Reaction between CO and H2 on binary palladium alloys with ruthenium and nickel, by diffusion through a membrane catalyst or in a mixture with CO, influenced the activity and selectivity

IRON-CONTAINING CATALYSTS ON THE SURFACE OF SPHERICAL NANOSIZED SILICON OXIDE FOR THE FISCHER-TROPSCH SYNTHESIS-containing catalyst deposited on nano-sized. spherical silicon oxide. This topic is relevant in the petrochemical

Membrane catalysts of the XXI centuryProspects of the development of new types of membrane catalysts are considered. Methods

Cobalt-containing catalysts made from layered double hydroxides for synthesis of hydrocarbons from carbon monoxide and hydrogen and the method of preparation greatly impart in determining the catalyst's activity and selectivity. Findings

Pilot tests of a catalyst for the selective hydrogenation of methylacetylene and propadieneKGS-3 catalyst is tested in the selective hydrogenation of methylacetylene and propadiene con

Pd/CuO-Ni(OH)2/C as a highly efficient and stable catalyst for the electrocatalytic oxidation of ethanol† in the exposure of more active sites on the surface of the catalyst. The excellent CO2 selectivity of Pd

Synthesis and a Catalytic Study of Diastereomeric Cationic Chiral-at-Cobalt Complexes Based on (R, R)-1,2-Diphenylethylenediamine and operate as bifunctional chiral catalysts for the challenging kinetic resolution of terminal

The influence of the structural and electronic characteristics of palladium on the activity and selectivity of Pd/Al 2O 3 and Pd-Co/Al 2O 3 catalysts for the hydrogenation of acetylene hydrocarbons-promoted Pd catalysts on their adsorption and catalytic properties is studied. It is shown that the conversion

Conversion of biomass-derived feedstocks into value-added chemicals over single-atom catalysts products. Single-atom catalysts (SACs) are a promising class due to their selective nature and high atom

Membrane-catalyst systems for selectivity improvement in dehydrogenation and hydrogenation reactions was performed by palladium-containing membrane catalysts. The dependence of the selectivity of cyclopentadiene

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