Cargando…

Unassisted and Carbon Dioxide-Assisted Hydro- and Steam-Distillation: Modelling Kinetics, Energy Consumption and Chemical and Biological Activities of Volatile Oils

The demand for more suitable eco-friendly extraction processes has grown over the last few decades and driven research to develop efficient extraction processes with low energy consumption and low costs, but always assuring the quality of the volatile oils (VOs). The present study estimated the kine...

Descripción completa

Detalles Bibliográficos
Autores principales: El-Kharraf, Sara, El-Guendouz, Soukaïna, Abdellah, Farah, El Hadrami, El Mestafa, Machado, Alexandra M., Tavares, Cláudia S., Figueiredo, Ana Cristina, Miguel, Maria Graça
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9145560/
https://www.ncbi.nlm.nih.gov/pubmed/35631393
http://dx.doi.org/10.3390/ph15050567
_version_ 1784716345518063616
author El-Kharraf, Sara
El-Guendouz, Soukaïna
Abdellah, Farah
El Hadrami, El Mestafa
Machado, Alexandra M.
Tavares, Cláudia S.
Figueiredo, Ana Cristina
Miguel, Maria Graça
author_facet El-Kharraf, Sara
El-Guendouz, Soukaïna
Abdellah, Farah
El Hadrami, El Mestafa
Machado, Alexandra M.
Tavares, Cláudia S.
Figueiredo, Ana Cristina
Miguel, Maria Graça
author_sort El-Kharraf, Sara
collection PubMed
description The demand for more suitable eco-friendly extraction processes has grown over the last few decades and driven research to develop efficient extraction processes with low energy consumption and low costs, but always assuring the quality of the volatile oils (VOs). The present study estimated the kinetic extraction and energy consumption of simultaneous hydro- and steam-distillation (SHSD), and SHSD assisted by carbon dioxide (SHSDACD), using an adopted modelling approach. The two isolation methods influenced the VOs yield, chemical composition and biological activities, namely, antioxidant, anti-glucosidase, anti-acetylcholinesterase and anti-inflammatory properties. SHSDACD provided higher VOs yields than the SHSD at a shorter extraction time: 2.8% at 30 min vs. 2.0% at 120 min, respectively, for Rosmarinus officinalis, 1.5% at 28 min vs. 1.2% at 100 min, respectively, for Lavandula angustifolia, and 1.7% at 20 min vs. 1.6% at 60 min, respectively, for Origanum compactum. The first order and sigmoid model fitted to SHSD and SHSDACD, respectively, with R(2) value at 96% and with mean square error (MSE) < 5%, where the k distillation rate constant of SHSDACD was fivefold higher and the energy consumption 10 times lower than the SHSD. The rosemary SHSD and SHSDACD VOs chemical composition were similar and dominated by 1,8-cineole (50% and 48%, respectively), and camphor (15% and 12%, respectively). However, the lavender and oregano SHSDACD VOs were richer in linalyl acetate and carvacrol, respectively, than the SHSD VOs. The SHSDACD VOs generally showed better capacity for scavenging the nitric oxide and superoxide anions free radicals as well as for inhibiting α-glucosidase, acetylcholinesterase, and lipoxygenase.
format Online
Article
Text
id pubmed-9145560
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91455602022-05-29 Unassisted and Carbon Dioxide-Assisted Hydro- and Steam-Distillation: Modelling Kinetics, Energy Consumption and Chemical and Biological Activities of Volatile Oils El-Kharraf, Sara El-Guendouz, Soukaïna Abdellah, Farah El Hadrami, El Mestafa Machado, Alexandra M. Tavares, Cláudia S. Figueiredo, Ana Cristina Miguel, Maria Graça Pharmaceuticals (Basel) Article The demand for more suitable eco-friendly extraction processes has grown over the last few decades and driven research to develop efficient extraction processes with low energy consumption and low costs, but always assuring the quality of the volatile oils (VOs). The present study estimated the kinetic extraction and energy consumption of simultaneous hydro- and steam-distillation (SHSD), and SHSD assisted by carbon dioxide (SHSDACD), using an adopted modelling approach. The two isolation methods influenced the VOs yield, chemical composition and biological activities, namely, antioxidant, anti-glucosidase, anti-acetylcholinesterase and anti-inflammatory properties. SHSDACD provided higher VOs yields than the SHSD at a shorter extraction time: 2.8% at 30 min vs. 2.0% at 120 min, respectively, for Rosmarinus officinalis, 1.5% at 28 min vs. 1.2% at 100 min, respectively, for Lavandula angustifolia, and 1.7% at 20 min vs. 1.6% at 60 min, respectively, for Origanum compactum. The first order and sigmoid model fitted to SHSD and SHSDACD, respectively, with R(2) value at 96% and with mean square error (MSE) < 5%, where the k distillation rate constant of SHSDACD was fivefold higher and the energy consumption 10 times lower than the SHSD. The rosemary SHSD and SHSDACD VOs chemical composition were similar and dominated by 1,8-cineole (50% and 48%, respectively), and camphor (15% and 12%, respectively). However, the lavender and oregano SHSDACD VOs were richer in linalyl acetate and carvacrol, respectively, than the SHSD VOs. The SHSDACD VOs generally showed better capacity for scavenging the nitric oxide and superoxide anions free radicals as well as for inhibiting α-glucosidase, acetylcholinesterase, and lipoxygenase. MDPI 2022-05-01 /pmc/articles/PMC9145560/ /pubmed/35631393 http://dx.doi.org/10.3390/ph15050567 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
El-Kharraf, Sara
El-Guendouz, Soukaïna
Abdellah, Farah
El Hadrami, El Mestafa
Machado, Alexandra M.
Tavares, Cláudia S.
Figueiredo, Ana Cristina
Miguel, Maria Graça
Unassisted and Carbon Dioxide-Assisted Hydro- and Steam-Distillation: Modelling Kinetics, Energy Consumption and Chemical and Biological Activities of Volatile Oils
title Unassisted and Carbon Dioxide-Assisted Hydro- and Steam-Distillation: Modelling Kinetics, Energy Consumption and Chemical and Biological Activities of Volatile Oils
title_full Unassisted and Carbon Dioxide-Assisted Hydro- and Steam-Distillation: Modelling Kinetics, Energy Consumption and Chemical and Biological Activities of Volatile Oils
title_fullStr Unassisted and Carbon Dioxide-Assisted Hydro- and Steam-Distillation: Modelling Kinetics, Energy Consumption and Chemical and Biological Activities of Volatile Oils
title_full_unstemmed Unassisted and Carbon Dioxide-Assisted Hydro- and Steam-Distillation: Modelling Kinetics, Energy Consumption and Chemical and Biological Activities of Volatile Oils
title_short Unassisted and Carbon Dioxide-Assisted Hydro- and Steam-Distillation: Modelling Kinetics, Energy Consumption and Chemical and Biological Activities of Volatile Oils
title_sort unassisted and carbon dioxide-assisted hydro- and steam-distillation: modelling kinetics, energy consumption and chemical and biological activities of volatile oils
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9145560/
https://www.ncbi.nlm.nih.gov/pubmed/35631393
http://dx.doi.org/10.3390/ph15050567
work_keys_str_mv AT elkharrafsara unassistedandcarbondioxideassistedhydroandsteamdistillationmodellingkineticsenergyconsumptionandchemicalandbiologicalactivitiesofvolatileoils
AT elguendouzsoukaina unassistedandcarbondioxideassistedhydroandsteamdistillationmodellingkineticsenergyconsumptionandchemicalandbiologicalactivitiesofvolatileoils
AT abdellahfarah unassistedandcarbondioxideassistedhydroandsteamdistillationmodellingkineticsenergyconsumptionandchemicalandbiologicalactivitiesofvolatileoils
AT elhadramielmestafa unassistedandcarbondioxideassistedhydroandsteamdistillationmodellingkineticsenergyconsumptionandchemicalandbiologicalactivitiesofvolatileoils
AT machadoalexandram unassistedandcarbondioxideassistedhydroandsteamdistillationmodellingkineticsenergyconsumptionandchemicalandbiologicalactivitiesofvolatileoils
AT tavaresclaudias unassistedandcarbondioxideassistedhydroandsteamdistillationmodellingkineticsenergyconsumptionandchemicalandbiologicalactivitiesofvolatileoils
AT figueiredoanacristina unassistedandcarbondioxideassistedhydroandsteamdistillationmodellingkineticsenergyconsumptionandchemicalandbiologicalactivitiesofvolatileoils
AT miguelmariagraca unassistedandcarbondioxideassistedhydroandsteamdistillationmodellingkineticsenergyconsumptionandchemicalandbiologicalactivitiesofvolatileoils