Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material
Solid-liquid extraction from plant sources is a widely used bioseparation for obtaining organic substances of interest in the food, pharmaceutical, and cosmetic industries. In the present work, the extraction operation with the solved Simpson model was studied by fractional calculation of the anomal...
| Autores: | , , , , , |
|---|---|
| Tipo de recurso: | artículo |
| Estado: | Versión publicada |
| Fecha de publicación: | 2020 |
| País: | México |
| Institución: | UNIVERSIDAD AUTÓNOMA DEL ESTADO DE HIDALGO |
| Repositorio: | PÄDI Boletín Científico de Ciencias Básicas e Ingeniería del ICBI |
| Idioma: | español |
| OAI Identifier: | oai:repository.uaeh.edu.mx:article/6370 |
| Acceso en línea: | https://repository.uaeh.edu.mx/revistas/index.php/icbi/article/view/6370 |
| Access Level: | acceso abierto |
| Palabra clave: | Extraction modeling metabolites Fick's second law Extracción modelación metabolitos segunda ley de Fick |
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Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material Simulación del tiempo de extracción en función de la temperatura de proceso y de la microestructura del material vegetal |
| title |
Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material |
| spellingShingle |
Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material Valencia-Pérez, Naella Sandivel Extraction modeling metabolites Fick's second law Extracción modelación metabolitos segunda ley de Fick |
| title_short |
Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material |
| title_full |
Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material |
| title_fullStr |
Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material |
| title_full_unstemmed |
Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material |
| title_sort |
Simulation of the extraction time as a function of the process temperature and the microstructure of the plant material |
| dc.creator.none.fl_str_mv |
Valencia-Pérez, Naella Sandivel Cerón-Montes, Genaro Iván Garrido-Hernández, Aristeo Carrillo-Sancen, Gabriela Yañez-Fernández, Jorge Castro-Muñoz, Roberto |
| author |
Valencia-Pérez, Naella Sandivel |
| author_facet |
Valencia-Pérez, Naella Sandivel Cerón-Montes, Genaro Iván Garrido-Hernández, Aristeo Carrillo-Sancen, Gabriela Yañez-Fernández, Jorge Castro-Muñoz, Roberto |
| author_role |
author |
| author2 |
Cerón-Montes, Genaro Iván Garrido-Hernández, Aristeo Carrillo-Sancen, Gabriela Yañez-Fernández, Jorge Castro-Muñoz, Roberto |
| author2_role |
author author author author author |
| dc.subject.none.fl_str_mv |
Extraction modeling metabolites Fick's second law Extracción modelación metabolitos segunda ley de Fick |
| topic |
Extraction modeling metabolites Fick's second law Extracción modelación metabolitos segunda ley de Fick |
| description |
Solid-liquid extraction from plant sources is a widely used bioseparation for obtaining organic substances of interest in the food, pharmaceutical, and cosmetic industries. In the present work, the extraction operation with the solved Simpson model was studied by fractional calculation of the anomalous diffusion expression of Fick's second law to study the effect of microstructure and temperature on extraction behavior and time of extraction. The determination of this time is of great importance for the process since if it’s not reached, the yield obtained from the vegetable source decreases and if it’s higher, it reduces its profitability, for this a novel numerical method was proposed that defines the extraction time one in which there is a marked change in the extraction speed. The simulation was carried out with Matlab and the parameters of the model that represent the effect of the microstructure (n) and the effect of temperature (k) were individually and combined in a range of 80% to 120% of their initial value. The adjustment of the experimental data to the Simpson model presented an R2 of 0.998, while the evaluation of the parameter k (temperature) showed to have less consequence in the behavior and extraction time than the parameter n (microstructure) which presented extraction times of 507.8 to 14.5 min. and from 79.3 to 46.6 min. for n and k respectively. The results of the simulation were consistent with those observed in biomaterials with clearly different structures such as those of seeds and fruits processed at different temperatures, so the proposed numerical methods can be a useful tool in this bioseparation. |
| publishDate |
2020 |
| dc.date.none.fl_str_mv |
2020-12-12 |
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info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion |
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article |
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publishedVersion |
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https://repository.uaeh.edu.mx/revistas/index.php/icbi/article/view/6370 10.29057/icbi.v8iEspecial.6370 |
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https://repository.uaeh.edu.mx/revistas/index.php/icbi/article/view/6370 |
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10.29057/icbi.v8iEspecial.6370 |
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spa |
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spa |
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https://repository.uaeh.edu.mx/revistas/index.php/icbi/article/view/6370/7652 |
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info:eu-repo/semantics/openAccess |
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openAccess |
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application/pdf |
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Universidad Autónoma del Estado de Hidalgo |
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Universidad Autónoma del Estado de Hidalgo |
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Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; Vol 8 No Especial (2020): Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; 46-53 Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; Vol. 8 Núm. Especial (2020): Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; 46-53 2007-6363 10.29057/icbi.v8iEspecial reponame:PÄDI Boletín Científico de Ciencias Básicas e Ingeniería del ICBI instname:UNIVERSIDAD AUTÓNOMA DEL ESTADO DE HIDALGO instacron:UAEH |
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UNIVERSIDAD AUTÓNOMA DEL ESTADO DE HIDALGO |
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PÄDI Boletín Científico de Ciencias Básicas e Ingeniería del ICBI |
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PÄDI Boletín Científico de Ciencias Básicas e Ingeniería del ICBI |
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Simulation of the extraction time as a function of the process temperature and the microstructure of the plant materialSimulación del tiempo de extracción en función de la temperatura de proceso y de la microestructura del material vegetalValencia-Pérez, Naella SandivelCerón-Montes, Genaro IvánGarrido-Hernández, AristeoCarrillo-Sancen, GabrielaYañez-Fernández, JorgeCastro-Muñoz, RobertoExtractionmodelingmetabolitesFick's second lawExtracciónmodelaciónmetabolitossegunda ley de FickSolid-liquid extraction from plant sources is a widely used bioseparation for obtaining organic substances of interest in the food, pharmaceutical, and cosmetic industries. In the present work, the extraction operation with the solved Simpson model was studied by fractional calculation of the anomalous diffusion expression of Fick's second law to study the effect of microstructure and temperature on extraction behavior and time of extraction. The determination of this time is of great importance for the process since if it’s not reached, the yield obtained from the vegetable source decreases and if it’s higher, it reduces its profitability, for this a novel numerical method was proposed that defines the extraction time one in which there is a marked change in the extraction speed. The simulation was carried out with Matlab and the parameters of the model that represent the effect of the microstructure (n) and the effect of temperature (k) were individually and combined in a range of 80% to 120% of their initial value. The adjustment of the experimental data to the Simpson model presented an R2 of 0.998, while the evaluation of the parameter k (temperature) showed to have less consequence in the behavior and extraction time than the parameter n (microstructure) which presented extraction times of 507.8 to 14.5 min. and from 79.3 to 46.6 min. for n and k respectively. The results of the simulation were consistent with those observed in biomaterials with clearly different structures such as those of seeds and fruits processed at different temperatures, so the proposed numerical methods can be a useful tool in this bioseparation.La extracción sólido líquido de fuentes vegetales es una bioseparación ampliamente utilizada para la obtención de sustancias orgánicas de interés en la industria alimentaria, farmacéutica y cosmética. En el presente trabajo se estudió la operación de extracción con el modelo resuelto de Simpson por calculo fraccional de la expresión de difusión anómala de la segunda ley de Fick para estudiar el efecto de la microestructura y la temperatura en el comportamiento de la extracción y el tiempo de extracción. La determinación del tiempo de extracción es de gran importancia para el proceso ya que de no alcanzarse disminuye el rendimiento obtenido de la fuente vegetal y de ser mayor reduce su rentabilidad. Para ello se propuso un método numérico novedoso que define como tiempo de extracción aquel en el que se tiene un cambio marcado en la velocidad de extracción. La simulación se realizó con Matlab y se evaluó los parámetros del modelo que representan el efecto de la microestructura (n) y el efecto de la temperatura (k) de manera individual y combinado en un rango de 80% a 120% de su valor inicial. El ajuste de los datos experimentales al modelo de Simpson presento una R2 de 0.998, mientras la evaluación del parámetro k (temperatura) mostró tener menor consecuencia en el comportamiento y tiempo de extracción que el parámetro n (microestructura) los cuales presentaron tiempos de extracción de 507.8 a 14.5 min. y de 79.3 a 46.6 min. para n y k respectivamente. Los resultados de la simulación fueron congruentes con los observados en biomateriales con estructuras claramente diferentes como las de semillas y frutos procesados a diferentes temperaturas por lo que los métodos numéricos propuestos pueden ser una herramienta útil en esta bioseparación.Universidad Autónoma del Estado de Hidalgo2020-12-12info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://repository.uaeh.edu.mx/revistas/index.php/icbi/article/view/637010.29057/icbi.v8iEspecial.6370Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; Vol 8 No Especial (2020): Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; 46-53Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; Vol. 8 Núm. Especial (2020): Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI; 46-532007-636310.29057/icbi.v8iEspecialreponame:PÄDI Boletín Científico de Ciencias Básicas e Ingeniería del ICBIinstname:UNIVERSIDAD AUTÓNOMA DEL ESTADO DE HIDALGOinstacron:UAEHspahttps://repository.uaeh.edu.mx/revistas/index.php/icbi/article/view/6370/7652info:eu-repo/semantics/openAccessoai:repository.uaeh.edu.mx:article/63702024-08-19T22:36:43Z |
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