AbstractPd/SO42-/ZrO2/Al2O3catalysts are prepared and investigated in reaction of isomerization of N-hexane in the work. For comparison Pt/SO42-/ZrO2/Al2O3 catalysts are investigated. It is established that in the field of low temperatures (140°C) the catalyst on the basis of palladium shows high rates comparable to the Pt-containing catalyst. At more high temperatures yielding of isomers for Pd/SO42-/ZrO2/Al2O3 catalyst are lower, than for Pt/SO42-/ZrO2/Al2O3. However, isomerization depth (the maintenance of a 2, 2-dimetilbutan in mix of C6 isomers) for the palladic catalyst in all studied range of temperatures exceeds for 6-10% a similar indicator for the platinum catalyst. For clarification of the role of condition of palladium the catal...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
This journal is © The Royal Society of Chemistry and the Centre National de la Recherche Scientifiqu...
AbstractPd/SO42-/ZrO2/Al2O3catalysts are prepared and investigated in reaction of isomerization of N...
AbstractPd/Al2O3, Pd/SiO2 and their mechanical mixtures with SO42-/ZrO2/Al2O3 were prepared and test...
AbstractPd/Al2O3, Pd/SiO2 and their mechanical mixtures with SO42-/ZrO2/Al2O3 were prepared and test...
Two series of zirconia based catalysts promoted with either sulfates or phos-phates were prepared, c...
The surface properties of Pd and Pd-Pt catalysts supported on binary ZrO 2-WOx and ternary ZrO 2-Al ...
The surface properties of Pd and Pd-Pt catalysts supported on binary ZrO 2-WOx and ternary ZrO 2-Al ...
Two series of zirconia based catalysts promoted with either sulfates or phosphates were prepared, c...
AbstractThe effect of concentration of the metallic component – platinum (0.1-2 wt.%) – and its elec...
AbstractResearches of catalysts Pt/WO3/ZrO2 (Pt content is 1wt.%) at varying WO3 concentrations (10-...
Sulfated zirconia was promoted with alumina and yttria in order to improve catalyst isomerization be...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
This journal is © The Royal Society of Chemistry and the Centre National de la Recherche Scientifiqu...
AbstractPd/SO42-/ZrO2/Al2O3catalysts are prepared and investigated in reaction of isomerization of N...
AbstractPd/Al2O3, Pd/SiO2 and their mechanical mixtures with SO42-/ZrO2/Al2O3 were prepared and test...
AbstractPd/Al2O3, Pd/SiO2 and their mechanical mixtures with SO42-/ZrO2/Al2O3 were prepared and test...
Two series of zirconia based catalysts promoted with either sulfates or phos-phates were prepared, c...
The surface properties of Pd and Pd-Pt catalysts supported on binary ZrO 2-WOx and ternary ZrO 2-Al ...
The surface properties of Pd and Pd-Pt catalysts supported on binary ZrO 2-WOx and ternary ZrO 2-Al ...
Two series of zirconia based catalysts promoted with either sulfates or phosphates were prepared, c...
AbstractThe effect of concentration of the metallic component – platinum (0.1-2 wt.%) – and its elec...
AbstractResearches of catalysts Pt/WO3/ZrO2 (Pt content is 1wt.%) at varying WO3 concentrations (10-...
Sulfated zirconia was promoted with alumina and yttria in order to improve catalyst isomerization be...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
Isomerization of n-hexane (1–5 bar) is studied over sulfatedk zirconia at 423 K and 50 bar, under 5–...
This journal is © The Royal Society of Chemistry and the Centre National de la Recherche Scientifiqu...