Revista: | Journal of applied research and technology |
Base de datos: | PERIÓDICA |
Número de sistema: | 000427621 |
ISSN: | 1665-6423 |
Autores: | Pérez Vidal, H1 Lunagómez, M.A1 Pacheco, J.G1 Torres Torres, J.G1 Cruz Romero, D. De la1 Cuauhtémoc López, I1 Beltramini, J.N2 |
Instituciones: | 1Universidad Juárez Autónoma de Tabasco, División Académica de Ciencias Básicas, Cunduacán, Tabasco. México 2University of Queensland, School of Engineering, St. Lucia, Queensland. Australia |
Año: | 2018 |
Periodo: | Oct |
Volumen: | 16 |
Número: | 5 |
País: | México |
Idioma: | Inglés |
Tipo de documento: | Artículo |
Enfoque: | Experimental, aplicado |
Resumen en inglés | Mesoporous materials like SBA-15 offer excellent properties such as catalyst support adsorbent due to its textural characteristics and their surface chemistry. The main objective of this study was to support cobalt (20 % w) in the type ordered mesoporous material SBA-15 and expand the pore size with the introduction of a "blowing agent", such as f ,3,5-trimethylbenzene (TMB), to be evaluated in the degradation of phenol. By its physicochemical characterization, it was confirmed that this is an ordered mesoporous material with two-dimensional hexagonal structure (p6mm) with high specific área, narrow pore distribution and typical morphology of this material. The pore size of SBA-f5 has been extended to 19 nm by the addition of cosolvent organic molecules (TMB) and the partióle size of cobalt decreased from 18.8 nm in SBA-15 to 6.4 nm on average by supporting it in SBA-15 modified with TMB; this property seems to confer the material be more selective in the conversión of C02, which is the reason why it has greater activity for the degradation of phenol |
Disciplinas: | Química, Ingeniería |
Palabras clave: | Ingeniería química, Materiales mesoporosos, Degradación química, Fenol, Cobalto, Trimetilbenceno |
Keyword: | Chemical engineering, Chemical degradation, Phenol, Mesoporous materials, Cobalt, Trimethylbenzene |
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