PREDICCIÓN DE LA CURVA DE RUPTURA DE UN REACTOR DE LECHO FIJO DE HIDROPROCESAMIENTO DE ACEITE PESADO
The numerical solution of a heavy oil hydroprocessing fixed bed reactor model was developed to determine the intraparticle deactivation profiles, throughout the reactor and as a function of time-on-stream, based on the continuous hypothesis, in order to obtain the breakthrough curve for a particular...
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Format: | Article |
Language: | Spanish |
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Executive Business School
2020-08-01
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Series: | Avances en Ciencias e Ingeniería |
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Online Access: | https://www.executivebs.org/publishing.cl/avances-en-ciencias-e-ingenieria-vol-11-nro-3-ano-2020-articulo-6/ |
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author | Maricruz Morales-Blancas Issis C. Romero-Ibarra Ma. del Carmen Monterrubio-Badillo Gustavo Gutiérrez-Sánchez Fabián S. Mederos-Nieto Ignacio Elizalde |
author_facet | Maricruz Morales-Blancas Issis C. Romero-Ibarra Ma. del Carmen Monterrubio-Badillo Gustavo Gutiérrez-Sánchez Fabián S. Mederos-Nieto Ignacio Elizalde |
author_sort | Maricruz Morales-Blancas |
collection | DOAJ |
description | The numerical solution of a heavy oil hydroprocessing fixed bed reactor model was developed to determine the intraparticle deactivation profiles, throughout the reactor and as a function of time-on-stream, based on the continuous hypothesis, in order to obtain the breakthrough curve for a particular set of reaction parameters and conditions. The number of segments in spatial direction and the increments in time for model convergence were varied. For the simulated conditions, a site loss front was found, from the reactor inlet to the outlet, as a function of time. The profiles found from the simulations are in correspondence with the previous experimental observations. The breakdown curve allowed the determination of the maximum time of catalyst use to reach a predetermined level of reagent conversion. |
first_indexed | 2024-12-11T12:40:06Z |
format | Article |
id | doaj.art-12b3c19ba5bd4e6487f2683f4076798e |
institution | Directory Open Access Journal |
issn | 0718-8706 |
language | Spanish |
last_indexed | 2024-12-11T12:40:06Z |
publishDate | 2020-08-01 |
publisher | Executive Business School |
record_format | Article |
series | Avances en Ciencias e Ingeniería |
spelling | doaj.art-12b3c19ba5bd4e6487f2683f4076798e2022-12-22T01:07:00ZspaExecutive Business SchoolAvances en Ciencias e Ingeniería0718-87062020-08-011135770PREDICCIÓN DE LA CURVA DE RUPTURA DE UN REACTOR DE LECHO FIJO DE HIDROPROCESAMIENTO DE ACEITE PESADOMaricruz Morales-Blancas0Issis C. Romero-Ibarra1Ma. del Carmen Monterrubio-Badillo2Gustavo Gutiérrez-Sánchez3Fabián S. Mederos-Nieto4Ignacio Elizalde5Instituto Politécnico Nacional, Centro Mexicano para la Producción más Limpia (CMP+L-IPN)Instituto Politécnico Nacional, Unidad Profesional Interdisciplinaria en Ingeniería y Tecnologías Avanzadas (UPIITA-IPN)Instituto Politécnico Nacional, Centro Mexicano para la Producción más Limpia (CMP+L-IPN)Instituto Politécnico Nacional, Centro Mexicano para la Producción más Limpia (CMP+L-IPN)Instituto Politécnico Nacional, Centro Mexicano para la Producción más Limpia (CMP+L-IPN)Instituto Politécnico Nacional, Centro Mexicano para la Producción más Limpia (CMP+L-IPN)The numerical solution of a heavy oil hydroprocessing fixed bed reactor model was developed to determine the intraparticle deactivation profiles, throughout the reactor and as a function of time-on-stream, based on the continuous hypothesis, in order to obtain the breakthrough curve for a particular set of reaction parameters and conditions. The number of segments in spatial direction and the increments in time for model convergence were varied. For the simulated conditions, a site loss front was found, from the reactor inlet to the outlet, as a function of time. The profiles found from the simulations are in correspondence with the previous experimental observations. The breakdown curve allowed the determination of the maximum time of catalyst use to reach a predetermined level of reagent conversion.https://www.executivebs.org/publishing.cl/avances-en-ciencias-e-ingenieria-vol-11-nro-3-ano-2020-articulo-6/hydrotreatingdeactivation simulationbreakthrough curveconcentration profiles |
spellingShingle | Maricruz Morales-Blancas Issis C. Romero-Ibarra Ma. del Carmen Monterrubio-Badillo Gustavo Gutiérrez-Sánchez Fabián S. Mederos-Nieto Ignacio Elizalde PREDICCIÓN DE LA CURVA DE RUPTURA DE UN REACTOR DE LECHO FIJO DE HIDROPROCESAMIENTO DE ACEITE PESADO Avances en Ciencias e Ingeniería hydrotreating deactivation simulation breakthrough curve concentration profiles |
title | PREDICCIÓN DE LA CURVA DE RUPTURA DE UN REACTOR DE LECHO FIJO DE HIDROPROCESAMIENTO DE ACEITE PESADO |
title_full | PREDICCIÓN DE LA CURVA DE RUPTURA DE UN REACTOR DE LECHO FIJO DE HIDROPROCESAMIENTO DE ACEITE PESADO |
title_fullStr | PREDICCIÓN DE LA CURVA DE RUPTURA DE UN REACTOR DE LECHO FIJO DE HIDROPROCESAMIENTO DE ACEITE PESADO |
title_full_unstemmed | PREDICCIÓN DE LA CURVA DE RUPTURA DE UN REACTOR DE LECHO FIJO DE HIDROPROCESAMIENTO DE ACEITE PESADO |
title_short | PREDICCIÓN DE LA CURVA DE RUPTURA DE UN REACTOR DE LECHO FIJO DE HIDROPROCESAMIENTO DE ACEITE PESADO |
title_sort | prediccion de la curva de ruptura de un reactor de lecho fijo de hidroprocesamiento de aceite pesado |
topic | hydrotreating deactivation simulation breakthrough curve concentration profiles |
url | https://www.executivebs.org/publishing.cl/avances-en-ciencias-e-ingenieria-vol-11-nro-3-ano-2020-articulo-6/ |
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