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The effect of ruthenium promotion of the Co/d-Al2O3 catalyst on the hydrogen reduction kinetics of cobalt analysis and phase transformations can be described by a kinetic scheme consisting of three sequential

Ruthenium promoted cobalt-alumina catalysts for the synthesis of high-molecular-weight solid hydrocarbons from CO and hydrogen

δ -Alumina supported cobalt catalysts promoted by ruthenium for Fischer-Tropsch synthesis fractions of metallic cobalt. It was shown that cobalt in oxide precursors is a component of the spinel

Zr—P-modification of the γ-Al2O3 support of cobalt-containing catalysts for the Fischer—Tropsch synthesisСО (gcat h)–1 at a СО conversion of 20–23%).

Влияние добавок углеродных нанотрубок и оксидных нановолокон на механические свойства композита на основе алюминия

Deciphering the corrosion puzzle: Nano-iron-biochar composite – Not a quick fix for metal immobilization in peat soilsDeciphering the corrosion puzzle: Nano-iron-biochar composite – Not a quick fix for metal

Enviro-HIRLAM black carbon modelling for Northern Europe and Arctic

Longitudinal profiles of the vacuolar pH in internally perfused cells of characean alga

Zinc shields against copper phytotoxicity in a contaminated soilZinc shields against copper phytotoxicity in a contaminated soil

Electrostatic landscapes in crystal engineering: a new perspective on synthonsElectrostatic landscapes in crystal engineering: a new perspective on synthons

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