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The obtained composite materials were well characterized by FT-IR, TG, 1H NMR, 13C NMR and 31P MAS-NMR and investigated their performance as catalyst for esterification reactions of palmitic acid to biodiesel.
Hence, carbonization provides significant improvements (approximately seven times) in their catalytic performance as catalyst supports for methanol electrochemical oxidation.
Compared to the untreated CNF/PANI composites, the carbonized composites were proven to be better supporting materials for the Pt nanocatalysts and showed superior performance as catalyst supports for methanol electrochemical oxidation.
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A series of Rh nanoparticles with sizes between 3.5 and 11.4 nm were synthesized in the presence of polyvinylpyrrolidone and evaluated for their performance as catalysts in the hydrogenation of phenylacetylene and 1-octene.
It is well-established in the literature that the use of citric acid as chelating agent can give additional benefit to the HDS catalyst performance as long as the sulfidation is carried out over the catalyst precursors previously treated at low temperatures to preserve the chelating effect over Co (or Ni) and Mo species.
Laboratory prepared catalysts showed comparable performance as well as stability in comparison with commercial catalysts against hydrotreating of heavy Maya crude feed.
Finding the best point for the performance as well as emissions production and catalyst conversion efficiency is the main focus of this study.
The obtained AlOOH nanorod and nanotube arrays are anticipated to improve their performances as catalysts and absorbents and broaden their applications in the fields of biology and nanotechnology.
The electrochemical characterization is applied to all catalysts, to see their potential and performance as anodic catalyst in DMFC.
At last, the higher tolerance of a Pt0.8Bi0.2/C catalyst to the presence of ethylene glycol is demonstrate, as well as its higher performance as cathode catalyst under direct ethylene glycol solid alkaline membrane fuel cell working conditions.
O-Methylated Ketjen black is prepared and its performance as the catalyst support is also discussed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com