SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS

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Nickel -based catalysts were prepared by impregnation and subsequent calcination at a concentration of 10 % by weight on the following substrates : clay , Ti02 , Si02 and Al 203 . These were reduced in a stream of 20 % hydrogen / nitrogen at a temperature of 350 ° C for 2 hours and were characterize...

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Detalles Bibliográficos
Autores: Garrido-Schaeffer, A., Linares-Fuentes, T., Ale-Borja, N., Saavedra-Rotta, J.
Formato: artículo
Fecha de Publicación:1999
Institución:Universidad Nacional Mayor de San Marcos
Repositorio:Revistas - Universidad Nacional Mayor de San Marcos
Lenguaje:español
OAI Identifier:oai:revistasinvestigacion.unmsm.edu.pe:article/4323
Enlace del recurso:https://revistasinvestigacion.unmsm.edu.pe/index.php/quim/article/view/4323
Nivel de acceso:acceso abierto
Materia:Hydrogenation
catalyst Nickel
Hidrogenación
catalizador de Níquel.
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spelling SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILSSINTESIS DE CATALIZADORES Ni/SOPORTE Y SU APLICACIÓN EN PROCESOS DE HIDROGENACIÓN DE ACEITESGarrido-Schaeffer, A.Linares-Fuentes, T.Ale-Borja, N.Saavedra-Rotta, J.Hydrogenationcatalyst NickelHidrogenacióncatalizador de Níquel.Nickel -based catalysts were prepared by impregnation and subsequent calcination at a concentration of 10 % by weight on the following substrates : clay , Ti02 , Si02 and Al 203 . These were reduced in a stream of 20 % hydrogen / nitrogen at a temperature of 350 ° C for 2 hours and were characterized by X-ray diffraction with activity measurements determined that the different supports affects performance . The increasing order of performance of the catalysts with different supports in oil hydrogenation process is as follows: clay > Ti02 > at 20 3> Si02 . Activity results show that the clay has a good performance in the hydrogenation process reaching iodine decrease of sunflower oil from 150 076 to the value of 56.77 to a temperature of 280 ° CLos catalizadores basados en Níquel fueron preparados por impregnación y posterior calcinación a una concentración del 10% en peso sobre los siguientes soportes: arcilla , Ti02 , Al 203 y Si02. Estos se redujeron en una corriente de 20% de hidrógeno/nitrógeno a la temperatura de 350°C durante 2 horas y se caracterizaron por Difracción de rayos X. Con las medidas de actividad se determinó que los diferentes soportes influyen sobre el rendimiento. El orden creciente del rendimiento de los catalizadores con diferentes soportes en el proceso de hidrogenación de aceite es el siguiente: arcilla> Ti02 > Al 20 3 > Si02 . Los resultados de actividad muestran que la arcilla tiene un buen comportamiento en el proceso de hidrogenación llegando a disminuir el índice de yodo del aceite de girasol desde 150.076 hasta el valor de 56.77 a la temperatura de 280°CUniversidad Nacional Mayor de San Marcos1999-12-31info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://revistasinvestigacion.unmsm.edu.pe/index.php/quim/article/view/4323Revista Peruana de Química e Ingeniería Química; Vol. 2 Núm. 2 (1999); 97-100Revista Peruana de Química e Ingeniería Química; Vol. 2 No. 2 (1999); 97-1001609-75991726-2208reponame:Revistas - Universidad Nacional Mayor de San Marcosinstname:Universidad Nacional Mayor de San Marcosinstacron:UNMSMspahttps://revistasinvestigacion.unmsm.edu.pe/index.php/quim/article/view/4323/3451Derechos de autor 1999 A. Garrido-Schaeffer, T. Linares-Fuentes, N. Ale-Borja, J. Saavedra-Rottahttps://creativecommons.org/licenses/by-nc-sa/4.0info:eu-repo/semantics/openAccessoai:revistasinvestigacion.unmsm.edu.pe:article/43232020-05-08T12:38:03Z
dc.title.none.fl_str_mv SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS
SINTESIS DE CATALIZADORES Ni/SOPORTE Y SU APLICACIÓN EN PROCESOS DE HIDROGENACIÓN DE ACEITES
title SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS
spellingShingle SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS
Garrido-Schaeffer, A.
Hydrogenation
catalyst Nickel
Hidrogenación
catalizador de Níquel.
title_short SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS
title_full SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS
title_fullStr SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS
title_full_unstemmed SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS
title_sort SYNTHESIS CATALYST Ni / STAND AND ITS APPLICATION PROCESSES HYDROGENATION OF OILS
dc.creator.none.fl_str_mv Garrido-Schaeffer, A.
Linares-Fuentes, T.
Ale-Borja, N.
Saavedra-Rotta, J.
author Garrido-Schaeffer, A.
author_facet Garrido-Schaeffer, A.
Linares-Fuentes, T.
Ale-Borja, N.
Saavedra-Rotta, J.
author_role author
author2 Linares-Fuentes, T.
Ale-Borja, N.
Saavedra-Rotta, J.
author2_role author
author
author
dc.subject.none.fl_str_mv Hydrogenation
catalyst Nickel
Hidrogenación
catalizador de Níquel.
topic Hydrogenation
catalyst Nickel
Hidrogenación
catalizador de Níquel.
description Nickel -based catalysts were prepared by impregnation and subsequent calcination at a concentration of 10 % by weight on the following substrates : clay , Ti02 , Si02 and Al 203 . These were reduced in a stream of 20 % hydrogen / nitrogen at a temperature of 350 ° C for 2 hours and were characterized by X-ray diffraction with activity measurements determined that the different supports affects performance . The increasing order of performance of the catalysts with different supports in oil hydrogenation process is as follows: clay > Ti02 > at 20 3> Si02 . Activity results show that the clay has a good performance in the hydrogenation process reaching iodine decrease of sunflower oil from 150 076 to the value of 56.77 to a temperature of 280 ° C
publishDate 1999
dc.date.none.fl_str_mv 1999-12-31
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.none.fl_str_mv https://revistasinvestigacion.unmsm.edu.pe/index.php/quim/article/view/4323
url https://revistasinvestigacion.unmsm.edu.pe/index.php/quim/article/view/4323
dc.language.none.fl_str_mv spa
language spa
dc.relation.none.fl_str_mv https://revistasinvestigacion.unmsm.edu.pe/index.php/quim/article/view/4323/3451
dc.rights.none.fl_str_mv Derechos de autor 1999 A. Garrido-Schaeffer, T. Linares-Fuentes, N. Ale-Borja, J. Saavedra-Rotta
https://creativecommons.org/licenses/by-nc-sa/4.0
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Derechos de autor 1999 A. Garrido-Schaeffer, T. Linares-Fuentes, N. Ale-Borja, J. Saavedra-Rotta
https://creativecommons.org/licenses/by-nc-sa/4.0
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidad Nacional Mayor de San Marcos
publisher.none.fl_str_mv Universidad Nacional Mayor de San Marcos
dc.source.none.fl_str_mv Revista Peruana de Química e Ingeniería Química; Vol. 2 Núm. 2 (1999); 97-100
Revista Peruana de Química e Ingeniería Química; Vol. 2 No. 2 (1999); 97-100
1609-7599
1726-2208
reponame:Revistas - Universidad Nacional Mayor de San Marcos
instname:Universidad Nacional Mayor de San Marcos
instacron:UNMSM
instname_str Universidad Nacional Mayor de San Marcos
instacron_str UNMSM
institution UNMSM
reponame_str Revistas - Universidad Nacional Mayor de San Marcos
collection Revistas - Universidad Nacional Mayor de San Marcos
repository.name.fl_str_mv
repository.mail.fl_str_mv
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score 13.870318
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