Open Journal of Physical Chemistry

Volume 2, Issue 1 (February 2012)

ISSN Print: 2162-1969   ISSN Online: 2162-1977

Google-based Impact Factor: 0.32  Citations  

Catalytic Reduction of Benzaldehyde Under Hydrogen Flow over Nickel-Containing Mesoporous Silica Catalysts

HTML  Download Download as PDF (Size: 764KB)  PP. 73-80  
DOI: 10.4236/ojpc.2012.21010    7,081 Downloads   14,357 Views  Citations

ABSTRACT

The hydrogenation of benzaldehyde over a series of nickel-containing mesoporous silicas with different nickel contents was studied at atmospheric pressure in the range temperature of 393 - 513 K under H2 ?ow. These materials (noted Nin-HMS with n = Si/Ni = 50, 25, 15) have been prepared at room temperature using a route based on hydrogen bonding and self-assembly between neutral primary amine micelles (S0) and neutral inorganic precursors (I0). They were characterized by their chemical analysis, BET surface area, XRD, FT-IR, and SEM microscopy. The obtained products were benzylalcohol, toluene, benzene with yields depending on the nickel content (Si/Ni ratio) and reaction temperature. The products of benzaldehyde hydrogenation (benzylalcohol, and toluene) and hydrogenolysis (benzene) were preferentially formed at low/middle and high reaction temperature respectively. The mesoporous Ni-containing materials were very active hydrogenation catalysts with almost 90% selectivity to benzylalcohol product and showed excellent stability. A mechanism in which the reaction could be initiated by a benzaldehyde reduction over Nin-HMS materials under hydrogen flow with formation of reaction products is proposed.

Share and Cite:

A. Saadi, K. Lanasri, K. Bachari, D. Halliche and C. Rabia, "Catalytic Reduction of Benzaldehyde Under Hydrogen Flow over Nickel-Containing Mesoporous Silica Catalysts," Open Journal of Physical Chemistry, Vol. 2 No. 1, 2012, pp. 73-80. doi: 10.4236/ojpc.2012.21010.

Cited by

[1] Optically functionalized hierarchical hematite assembled silica-titania nanocomposites for hydrocarbon detection: Fiber optic chemical sensor
Microporous and …, 2021
[2] Rational design of thermoresponsive functionalized MCM-41 and their decoration with bimetallic Ag–Pd nanoparticles for catalytic application
2020
[3] The Application of Attenuated Total Reflection Infrared Spectroscopy to Investigate the Liquid Phase Hydrogenation of Benzaldehyde Over an Alumina …
2020
[4] The Rapeseed Oil Based Organofunctional Silane for Stainless Steel Protective Coatings
2020
[5] Synergistic catalysis of hybrid nano-structure Pd catalyst for highly efficient catalytic selective hydrogenation of benzaldehyde
2020
[6] Role of Sm3+ and Ce4+ on mesoporous rice husk silica for selective oxidation of benzyl alcohol to benzaldehyde
2019
[7] Selective gas-phase hydrogenation of benzaldehyde in the presence of Ni-, Co- and Fe-doped BaCuO2 delafossites: effect of metal substituent on the production of …
2019
[8] Modified mesoporous HMS supported Ni for deoxygenation of triolein into hydrocarbon-biofuel production
Energy Conversion and Management, 2018
[9] Core-shell Ni/NiO grafted cobalt (II) complex: an efficient inorganic nanocomposite for photocatalytic reduction of CO2 under visible light irradiation
Applied Surface Science, 2018
[10] Ni-Co bimetallic nanoparticles anchored reduced graphene oxide as an efficient counter electrode for the application of dye sensitized solar cells
2017
[11] Ni–Co bimetallic nanoparticles anchored reduced graphene oxide as an efficient counter electrode for the application of dye sensitized solar cells
Journal of Materials Science: Materials in Electronics, 2017
[12] Synthesis and characterization of Ni NPs-doped silica–titania nanocomposites: structural, optical and photocatalytic properties
Applied Physics A, 2017
[13] Vapour phase selective hydrogenation of benzaldehyde to benzyl alcohol using Cu supported Mg-Al hydrotalicite catalyst
Catalysis Communications, 2017
[14] Catalytic Hydrogenation of Benzaldehyde for Selective Synthesis of Benzyl Alcohol: A Review
ChemistrySelect, 2016
[15] Sodium borohydride reduction of aldehydes catalyzed by an oxovanadium (IV) Schiff base complex encapsulated in the nanocavity of zeolite-Y
Inorganic Chemistry Communications, 2015
[16] Ni–Co alloy nanostructures anchored on mesoporous silica nanoparticles for non-enzymatic glucose sensor applications
RSC Advances, 2015
[17] Manganese (III) porphyrin anchored onto multi-wall carbon nanotubes: An efficient and reusable catalyst for the heterogeneous reduction of aldehydes and ketones
Journal of Coordination Chemistry, 2015
[18] ПОЛУЧЕНИЕ И СВОЙСТВА ЩЕЛОЧНОГО ЛИГНИНА ИЗ МИСКАНТУСА КИТАЙСКОГО
2014
[19] Деполимеризация ацетонлигнина в этаноле
2014
[20] Деполимеризация ацетонлигнина метанолом в сверхкритических условия
Ползуновский вестник, 2013

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.