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The catalysts were prepared through incipient impregnation from an aqueous solution of the RuCl3·xH2O precursor.
Granules of high density polyethylene grafted with 0.17 wt.% maleic anhydride (PEMA) were modified with an excess of 1,4-diaminobutane (DAB) by impregnation from near critical propane.
Lithium-deficient LiYMn2O4 spinels (LD-LiYMn2O4) with nominal composition (0.9 ≤ Y < 1) have been synthesized by melt impregnation from Mn2O3 and LiNO3 at temperatures ranging from 700 °C to 850 °C.
The Co/SiO2 catalysts were prepared by a gas-phase deposition technique, atomic layer epitaxy (ALE), using Co acac 3 as precursor and by impregnation from Co(NO3 2.
Catalytic activity in combustion of toluene in toluene air mixtures and physical chemical properties of platinum catalysts prepared from reverse microemulsions (water-in-oil) and by classical impregnation from water solutions of H2PtCl6 were studied.
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The degree of impregnation varies from 31to90wt wt% depending on the host matrix and the impregnating medium used.
The catalysts were prepared by impregnation methods from metal nitrate precursor and calcined at 673 873 K.
The Fe-Mo-MgO catalyst with 1 8 40 molar ratio was prepared by impregnation method from purum quality components without any calcinations and reduction steps.
The study was carried on a commercial Pd/C catalyst and a Pd/TiO2 catalyst, which was prepared by the dry impregnation technique from the PdCl2 precursor.
Wet impregnation ranging from 1 to 5 days was evaluated in order to assess the amount of iron deposited as a function of time.
Co/MWCNTs and Co/AC catalysts with high loading of Co (about 45%) were prepared through the wet impregnation method from cobalt nitrate hexahydrate.
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