scholarly journals Surface Lewis Acidity of Periphery Oxide Species as a General Kinetic Descriptor for CO2 Hydrogenation to Methanol on Supported Copper Nanoparticles

ACS Catalysis ◽  
2019 ◽  
Vol 9 (11) ◽  
pp. 10409-10417 ◽  
Author(s):  
Jonglack Kim ◽  
Bidyut B. Sarma ◽  
Eva Andrés ◽  
Norbert Pfänder ◽  
Patricia Concepción ◽  
...  
2009 ◽  
Vol 63 (3) ◽  
Author(s):  
Nagy Moustafa ◽  
Doaa El-Desouki

AbstractThe surface of Porapak Q was characterized by inverse gas chromatography (IGC) carried out by the determination of dispersive and specific adsorption components of Porapak Q surface, calculating γsd and -ΔH as parameters, respectively. An interpretation was given based on the chemical structure of Porapak Q. The obtained results were confirmed through the surface Lewis acidity and basicity constants, K a and K b, respectively, correlating well with the determined thermodynamic parameters.


2015 ◽  
Vol 5 (2) ◽  
pp. 869-881 ◽  
Author(s):  
Alejandro Karelovic ◽  
Patricio Ruiz

The size of copper nanoparticles exerts a significant influence on the selectivity of the hydrogenation of carbon dioxide to methanol.


Catalysts ◽  
2021 ◽  
Vol 11 (4) ◽  
pp. 408
Author(s):  
Jesús Miguel Ramos ◽  
Jin An Wang ◽  
Sergio Odin Flores ◽  
Lifang Chen ◽  
Ulises Arellano ◽  
...  

This work reports the results of the ultrasound-assisted hydrothermal synthesis of two sets of V2O5 dispersed on SBA-15 and Zr doped SBA-15 catalysts used for the oxidation of dibenzothiophene (DBT) in a model diesel via the combination of oxidation, catalysis, and extraction technical route. These catalysts contained Lewis acidity as major and Brønsted acidity as minor. The amount of acidity varied with the content of vanadia and zirconium doping. It was found that DBT conversion is very sensitive to the Lewis acidity. DBT conversion increased by increasing the vanadium content and correlated well with the amount of surface Lewis acidity. Under the optimal experimental condition (Reaction temperature: 60 °C, reaction time 40 min, catalyst concentration: 1 g/L oil; H2O2/DBT mole ratio = 10), the 30% V2O5/SBA-15 and 30% V2O5/Zr-SBA-15 catalysts could convert more than 99% of DBT. Two reaction pathways of DBT oxidation involving vanadia surface structure, Lewis acidity, and peroxometallic complexes were proposed. When the vanadia loading V2O5 ≤ 10 wt%, the oxidative desulfurization (ODS) went through the Pathway I; in the catalysts with moderate vanadia content (V2O5 = 20–30 wt%), ODS proceeded via the Pathways II or/and the Pathway I.


2020 ◽  
Vol 510 ◽  
pp. 145439 ◽  
Author(s):  
Mo Li ◽  
Alexandre Borsay ◽  
Mostapha Dakhchoune ◽  
Kun Zhao ◽  
Wen Luo ◽  
...  

2018 ◽  
Vol 263 ◽  
pp. 100-114 ◽  
Author(s):  
Julio González ◽  
Jin An Wang ◽  
Lifang Chen ◽  
Maria Manríquez ◽  
José Salmones ◽  
...  

2018 ◽  
Author(s):  
Felix Hemmann ◽  
Jonathan Hackebeil ◽  
Andreas Lißner ◽  
Florian Mertens

Molecular sieves with beta zeolite topology are promising catalysts for various reactions as they exhibits extraordinary Lewis acidity. However, their industrial application and related research in academica is hindered because their synthesis is time consuming and typically involves toxic chemicals as hydrofluoric acid. Therefore, tetraethylammonium fluorid was tested as a non-toxic fluotide source for the synthesis of beta zeolites. In combination with the previously reported nano-seeded growth method, a fast synthesis of beta zeolites only involving non-toxic chemicals was possible. Synthesized zeolites show comparable selectivity in the Bayer-Villinger oxidation as conventional zeolites synthesized with hydrofluoric acid.<br>


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