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In this work, a series of catalysts of LaCo1-xGaxO3 with perovskite phase supported on ZrO2 was prepared by combining the citrate complexing method with incipient impregnation.
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Results and discussion presented in this study connect this non-destructive characterization method with mechanisms of incipient plastic deformation in polyethylene.
These catalysts were synthesized with incipient wetness impregnation method and were characterized with CO pulse chemisorption, TPR, TPD, TPO, and synchrotron-based X-ray diffraction and X-ray absorption techniques.
H-ZSM5 zeolites were impregnated by the incipient wetness method with gallium amounts varying between 2 and 10 wt.%, and were submitted to reductive and oxidative pre-treatments.
Nickel adsorbents supported on the γ-Al2O3 with different nickel precursor species (nickel formate, nickel acetate, and nickel nitrate) were prepared by the incipient impregnation method with nickel loadings at 10%.
Re Ni/CeO2 bimetallic catalysts were prepared by the incipient wetness impregnation method with aqueous solutions of Ni(NO3 2·6H2O and NH4ReO4.
Nickel-tungstate/alumina (NiW/Al2O3) and nickel-molybdate/alumina (NiMoAl2O3) catalysts were prepared using an incipient wetness impregnation method with citric acid as a complexing agent.
Pt catalysts for the low-temperature water gas shift (WGS) reaction were then prepared by the incipient wetness impregnation method with the TiO2/PRGO (TirGO) supports.
The palladium is then placed onto the surface of the ns-AlOOH rooted on the Al-fiber via incipient wetness impregnation method with a toluene solution of palladium acetate.
Hydrodesulfurization (HDS) catalysts prepared by the incipient wetness impregnation method with Co Mo P based solutions were characterized with various physical techniques and their efficiencies in HDS of thiophene were evaluated.
Regarding the comparison of a single-bead, non-contact incipient wetness preparation method with the corresponding conventional laboratory scale catalyst synthesis procedures, we show that the miniaturized single-bead synthesis is almost as accurate and reproducible as the conventional approach.
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