Extraction yield by hydrodistillation of Piper aduncum L. (matico) essential oil using a kinetic model
DOI:
https://doi.org/10.55996/dekamuagropec.v5i1.208Keywords:
Mathematical modelling, plant extract, secondary metabolites, extraction methodsAbstract
Essential oils are in demand in the food, pharmaceutical and cosmetic industries. The research aimed to estimate the extraction yield by hydrodistillation of Piper aduncum L. (matico) essential oil using a kinetic model. The methodology consisted of processing the plant material (harvesting, shade-drying and crushing matico leaves), extracting essential oil (hydrodistillation using two clevenger units under four scenarios) and modelling the kinetics of matico hydrodistillation extraction. The yield of matico essential oil in the four scenarios is in accordance with the mathematical model of sigmoidal kinetics. Therefore, the models determined provide a qualitative and approximate evolution of the behaviour of the extraction kinetics and the yield of matico essential oil.
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Ait, I., Bali, N., Belblidia, N.-B., Abatzoglou, N., & Benyoussef, E.-H. (2019). The first-order model in the simulation of essential oil extraction kinetics. Journal of Applied Research on Medicinal and Aromatic Plants, 15, 100226. https://doi.org/10.1016/j.jarmap.2019.100226
Albarracín, G. C., & Gallo, S. G. (2003). Comparación de dos métodos de extracción de aceite esencial utilizando Piper Aduncum (Cordoncillo) procedente de la zona cafetera (Tesis para título, Universidad Nacional de Colombia). Universidad Nacional de Colombia, Colombia. Recuperado de https://repositorio.unal.edu.co/handle/unal/2624
Arroyo, J., Almora, Y., Quino, M., Raez, E., Martínez, J., Buendía, J., … Hañari, R. (2012). Efecto protector en cirrosis hepática inducida en ratas del extracto etanólico de las hojas de Piper aduncum comparado con silimarina. Anales de la Facultad de Medicina, 73(2), 85-91. Recuperado de http://www.scielo.org.pe/scielo.php?script=sci_abstract&pid=S102555832012000200002&lng=es&nrm=iso&tlng=es
Arroyo, J., Herrera-Calderón, O., Chávez-Asmat, R., Ventura, E., Buendía, J., Pacheco, J., & Palomino, R. (2014). Efecto antitumoral in vitro del aceite esencial de Piper aduncum L. (matico) y su toxicidad oral en ratones. Anales de la Facultad de Medicina, 75(1), 13-18. Recuperado de http://www.scielo.org.pe/scielo.php?script=sci_abstract&pid=S102555832014000100003&lng=es&nrm=iso&tlng=es
Bedón, K. A., & León, N. I. (2022). Extracción del aceite esencial de matico (Piper aduncum), mediante el método de arrastre de vapor. (bachelorThesis, Ecuador: Latacunga: Universidad Técnica de Cotopaxi (UTC)). Ecuador: Latacunga: Universidad Técnica de Cotopaxi (UTC). Recuperado de http://repositorio.utc.edu.ec/handle/27000/9349
Benyoussef, E.-H., & Saibi, S. (2013). Influence of essential oil composition on water distillation kinetics. Flavour and Fragrance Journal, 28(5), 300-308.
Benyoussef, E.-H., Yahiaoui, N., Khelfaoui, A., & Aid, F. (2005). Water distillation kinetic study of spearmint essential oil and of its major components. Flavour and Fragrance Journal, 20(1), 30-33. https://doi.org/10.1002/ffj.1406
Borges, K., Carocho, M., Finimundy, T., Resende, O., Célia, J. A., Gomes, F. P., … Ferreira Junior, W. N. (2022). Analysis of Volatiles of Rose Pepper Fruits by GC/MS: Drying Kinetics, Essential Oil Yield, and External Color Analysis. Journal of Food Quality, 2022.
Cicció, J. F., & Ballestero, C. M. (1997). Constituyentes volátiles de las hojas y espigas de Piper aduncum (Piperaceae) de Costa Rica. Revista de Biología Tropical, 45(2), 783-790. Recuperado de https://revistas.ucr.ac.cr/index.php/rbt/article/view/20868
Cordova, Y. L., & Velasquez, J. M. (2021). Cinética de extracción de aceite esencial por arrastre de vapor a escala piloto de la naranja, mandarina, lima y limón. Repositorio Institucional - UNSA. Recuperado de https://renati.sunedu.gob.pe/handle/sunedu/2794675
Dao, P. T., Nguyen, M. V., Tran, Q. N., Truong Le, D., Nhi Tran, & Lam, T. V. (2022). Experimental and Kinetic Modeling Studies on Extraction of Essential Oil from Vietnamese Calamondin (Citrus microcarpa) by Hydro-Distillation Process. Iranian Journal of Chemistry and Chemical Engineering. https://doi.org/10.30492/ijcce.2022.530134.4724
Dao, T. P., Dao, T. P., Bach, L. G., Dao, T. P., Bach, L. G., Phong, H. X., … van Muoi, N. (2021). Kinetic Modeling of Essential Oil Hydro-Distillation from Peels of Pomelo (Citrus grandis L.) Fruit Grown in Southern Vietnam. Sains Malaysiana, 50(11), 3251-3261. Scopus. https://doi.org/10.17576/jsm-2021-5011-09
Dousseau, S., De Souza, I., De Castro, E. M., Alves, A., Alves, E., Pereira, J. E. B., … Bastos, V. (2014). Caracterización del limbo de Piper aduncum L. (Piperaceae): Análisis estructurales, histoquímicos y de sus aceites esenciales. Gayana. Botánica, 71(1), 147-162. https://doi.org/10.4067/S0717-66432014000100015
Durofil, A., Radice, M., Blanco-Salas, J., & Ruiz-Téllez, T. (2021). Piper aduncum essential oil: A promising insecticide, acaricide and antiparasitic. A review. Parasite, 28, 42. https://doi.org/10.1051/parasite/2021040
Firenzuoli, F., Jaitak, V., Horvath, G., Bassolé, I. H. N., Setzer, W. N., & Gori, L. (2014). Essential Oils: New Perspectives in Human Health and Wellness. Evidence-based Complementary and Alternative Medicine: eCAM, 2014, 467363. https://doi.org/10.1155/2014/467363
Franco-Vega, A., Ramírez-Corona, N., Palou, E., & López-Malo, A. (2016). Estimation of mass transfer coefficients of the extraction process of essential oil from orange peel using microwave assisted extraction. Journal of Food Engineering, 170, 136-143.
Haloui, T., Farah, A., Lebrazi, S., Fadil, M., & Alaoui, A. B. (2018). Application of response surface methodology for the optimization of hydro-distillation extraction of Pistacia lentiscus L. essential oil. Journal of Applied Pharmaceutical Science, 8(1), 050-054.
Haqqyana, H., Altway, A., & Mahfud, M. (2021). Microwave-Assisted Hydrodistillation of Clove (Syzgium aromaticum) Stem Oil: Optimization and Chemical Constituents Analysis. Indonesian Journal of Chemistry, 21(6), 1358-1370. https://doi.org/10.22146/ijc.64521
Haqqyana, H. H., Wiya, V. F., Mardinah, A., Septya, H., Altway, A., & Mahfud, M. (2020). Kinetic Study in the Extraction of Essential Oil from Clove (Syzgium aromaticum) Stem using Microwave Hydrodistillation. Moroccan Journal of Chemistry, 8(1), 8-071. https://doi.org/10.48317/IMIST.PRSM/morjchem-v8i1.19126
Huaman, C. J., & Cabezas, O. E. (2019). Aceite de matico (Piper aduncum) en el control de Moniliophthora roreri agente causal de la moniliasis en cacao. Peruvian Agricultural Research, 1(2). https://doi.org/10.51431/par.v1i2.583
Ingaroca, S., Castro, A., & Ramos, N. (2019). Composición química y ensayos de actividad antioxidante y del efecto fungistático sobre Candida albicans del aceite esencial de Piper aduncum L. «Matico». Revista de la Sociedad Química del Perú, 85(2), 268-279. Recuperado de http://www.scielo.org.pe/scielo.php?script=sci_abstract&pid=S1810634X2019000200013&lng=es&nrm=iso&tlng=es
Irshad, M., Subhani, M. A., Ali, S., Hussain, A., Irshad, M., Subhani, M. A., … Hussain, A. (2019). Biological Importance of Essential Oils. En Essential Oils—Oils of Nature. IntechOpen. https://doi.org/10.5772/intechopen.87198
Katiyar, R. (2017). Modeling and simulation of Mentha arvensis L. essential oil extraction by water-steam distillation process. International Research Journal of Engineering and Technology, 4(6), 2793-2798.
Labri, K., Moghrani, H., Ihadadene, R., Hamitouche, H., & Maachi, R. (2022). The application of the full factorial design and Response Surface Methodology in optimization conditions for essential oils extraction from Lavandula stoechas, Carum carvi and Eucalyptus camaldulensis: Effect of plants particle size on the extraction of essential oils. Sustainable Chemistry and Pharmacy, 30, 100830. https://doi.org/10.1016/j.scp.2022.100830
Lainez-Cerón, E., Ramírez-Corona, N., López-Malo, A., & Franco-Vega, A. (2022). An overview of mathematical modeling for conventional and intensified processes for extracting essential oils. Chemical Engineering and Processing - Process Intensification, 178, 109032. https://doi.org/10.1016/j.cep.2022.109032
León, G., Osorio, M. del R., & Martínez, S. R. (2015). Comparación de dos métodos de extracción del aceite esencial de C itrus sinensis L. Revista Cubana de Farmacia, 49(4), 0-0. Recuperado de http://scielo.sld.cu/scielo.php?script=sci_abstract&pid=S0034-75152015000400014&lng=es&nrm=iso&tlng=es
Leyva, M., Marquetti, M. del C., Montada, D., Payroll, J., Scull, R., Morejón, G., & Pino, O. (2020). Actividad insecticida de los aceites esenciales de Piper aduncum subsp. Ossanum y Ocimun basilicum sobre Aedes aegypti, Aedes albopictus y Culex quinquefasciatus. Novitates Caribaea, (16), 122-132. https://doi.org/10.33800/nc.vi16.231
Marković, M. S., Radosavljević, D. B., Pavićević, V. P., Ristić, M. S., Milojević, S., Bošković-Vragolović, N. M., & Veljković, V. B. (2018). Influence of common juniper berries pretreatment on the essential oil yield, chemical composition and extraction kinetics of classical and microwave-assisted hydrodistillation. Industrial Crops and Products, 122, 402-413. Scopus. https://doi.org/10.1016/j.indcrop.2018.06.018
Meyer, G., Sarmiento, O. I., Ramírez, R. I., Guevara, O., Meyer, G., Sarmiento, O. I., … Guevara, O. (2018). Evaluación del rendimiento del aceite esencial de caléndula (Calendula officinalis L) obtenido por OAHD. Revista ION, 31(1), 13-19. https://doi.org/10.18273/revion.v31n1-2018002
Milojević, S. Ž., Radosavljević, D. B., Pavićević, V. P., Pejanović, S., & Veljković, V. B. (2013). Modeling the kinetics of essential oil hydrodistillation from plant materials. Hemijska industrija, 67(5), 843-859. Recuperado de https://doiserbia.nb.rs/Article.aspx?ID=0367-598X1300009M
Morais, V. P., Cabral, F. V., Fernandes, C. C., & Miranda, M. L. D. (2023). Brief Review on Piper aduncum L., its Bioactive Metabolites and its Potential to Develop Bioproducts. Brazilian Archives of Biology and Technology, 66. Scopus. https://doi.org/10.1590/1678-4324-2023220314
Moreno, J., López, G., & Siche, R. (2010a). Modelación y optimización del proceso de extracción de aceite esencial de eucalipto (Eucalyptus globulus). Scientia Agropecuaria, 1(2), 147-154. https://doi.org/10.17268/sci.agropecu.2010.02.05
Moreno, J., López, G., & Siche, R. (2010b). Modelación y optimización del proceso de extracción de aceite esencial de eucalipto (Eucalyptus globulus). Scientia Agropecuaria, 1(2), 147-154. Recuperado de https://www.redalyc.org/articulo.oa?id=357633695005
Negreiros, J. R. da S., & Miqueloni, D. P. (2015). Morphological and phytochemical characterization of Piper hispidinervum DC. and Piper aduncum L. populations in the state of Acre. Revista Ceres, 62, 78-86. https://doi.org/10.1590/0034-737X201562010010
Phat, D. T., Quyen, N. T. C., Minh, P. T. H., & Huyen, L. V. (2020). Modeling the kinetics of essential oil hydrodistillation from Vietnamese ginger (Zingiber officinale). 991, 012108. https://doi.org/10.1088/1757-899X/991/1/012108
Pino, O., Sánchez, Y., Rodríguez, H., Correa, T. M., Demedio, J., & Sanabria, J. L. (2011). Caracterización química y actividad acaricida del aceite esencial de Piper aduncum subsp. Ossanum frente a Varroa destructor. Revista de Protección Vegetal, 26(1), 52-61. Recuperado de http://scielo.sld.cu/scielo.php?script=sci_abstract&pid=S1010-27522011000100008&lng=es&nrm=iso&tlng=en
Potzernheim, M. C. L., Bizzo, H. R., Silva, J. P., & Vieira, R. F. (2012). Chemical characterization of essential oil constituents of four populations of Piper aduncum L. from Distrito Federal, Brazil. Biochemical Systematics and Ecology, 42, 25-31. https://doi.org/10.1016/j.bse.2011.12.025
Radivojac, A., Bera, O., Zeković, Z., Teslić, N., Mrkonjić, Ž., Bursać Kovačević, D., … Pavlić, B. (2021). Extraction of Peppermint Essential Oils and Lipophilic Compounds: Assessment of Process Kinetics and Environmental Impacts with Multiple Techniques. Molecules, 26(10), 2879. https://doi.org/10.3390/molecules26102879
Rincón, C. A., Castaño, J. C., & Ríos, E. (2012). Actividad biológica de los aceites esenciales de Acmella ciliata (Kunth) Cass. Revista Cubana de Plantas Medicinales, 17(2), 160-171. Recuperado de http://scielo.sld.cu/scielo.php?script=sci_abstract&pid=S1028-47962012000200005&lng=es&nrm=iso&tlng=en
Scalvenzi, L. (2014). New frontiers of essential oils research: Biotransformation of the phytocomplex and its pure compounds by endophytic fungi. Acta Horticulturae, 1030, 125-132. Scopus. https://doi.org/10.17660/ActaHortic.2014.1030.15
Scalvenzi, L., Yaguache-Camacho, B., Cabrera- Martínez, P., & Guerrini, A. (2016). Actividad antifúngica in vitro de aceites esenciales de Ocotea quixos (Lam.) Kosterm. Y Piper aduncum L. Bioagro, 28(1), 039-046. Recuperado de http://ve.scielo.org/scielo.php?script=sci_abstract&pid=S1316-33612016000100005&lng=es&nrm=iso&tlng=es
Shahwan, T. (2015). Lagergren equation: Can maximum loading of sorption replace equilibrium loading? Chemical Engineering Research and Design, 96, 172-176. https://doi.org/10.1016/j.cherd.2015.03.001
Silva, A. L., Chaves, F. C. M., Lameira, R. C., & Bizzo, H. R. (2013). Yield and composition of the essential oil from Piper aduncum L., cultivated in Manaus, AM, regarding plant density and cutting period. Revista Brasileira de Plantas Medicinais, 15, 670-674. https://doi.org/10.1590/S1516-05722013000500007
Souza, E. T. de, Siqueira, L. M., Almeida, R. N., Lucas, A. M., Silva, C. G. F. da, Cassel, E., & Vargas, R. M. F. (2020). Comparison of different extraction techniques of Zingiber officinale essential oil. Brazilian Archives of Biology and Technology, 63, e20190213.
Sovová, Н., Aleksovski, S. A., Bocevska, M., & Stateva, R. P. (2006). Supercritical fluid extraction of essential oils: Results of joint research. Chemical Industry and Chemical Engineering Quarterly, 12(3), 168-174. https://doi.org/10.2298/CICEQ0603168S
Stanisavljević, I. T., Lazić, M. L., Veljković, V. B., Stojičević, S. S., Veličković, D. T., & Ristić, M. S. (2010). Kinetics of Hydrodistillation and Chemical Composition of Essential Oil from Cherry Laurel (Prunus laurocerasusL. var.serbicaPančić) Leaves. Journal of Essential Oil Research, 22(6), 564. Recuperado de https://www.academia.edu/18068979/Kinetics_of_Hydrodistillation_and_Chemical_Composition_of_Essential_Oil_from_Cherry_Laurel_Prunus_laurocerasus_L_var_serbica_Pan%C4%8Di%C4%87_Leaves
Tan, C.-S., & Liou, D.-C. (1989). Modeling of desorption at supercritical conditions. AIChE Journal, 35(6), 1029-1031. https://doi.org/10.1002/aic.690350616
Teixeira, S. D., Fiorio, J. L., Galvan, D., Sefstrom, C., Cogo, P. M., Sales, V., … Benghi, T. G. S. (2016). Investigation on chemical composition and optimization of essential oil obtainment from waste Pinus taeda L. using hydrodistillation. Brazilian Archives of Biology and Technology, 59. https://doi.org/10.1590/1678-4324-2016150043
Vásquez, M. R. S. (2015). Estudio fitoquímico y cuantificación de flavonoides totales de las hojas de Piper peltatum L. y Piper aduncum L. procedentes de la región Amazonas. In Crescendo, 6(1), 33-43. https://doi.org/10.21895/incres.2015.v6n1.04
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