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Research Article

Valorising waste biomass from aromatic and medicinal plants to produce steam for the extraction of essential oils

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References

  • Holechek, J.L., Geli, H.M.E., Sawalhah, M.N. and Valdez, R.A., 2022, Global assessment: Can renewable energy replace fossil fuels by 2050? Sustainability 14, 4792. doi: 10.3390/su14084792
  • Fang, W., Jean, D.H., Zhizhang, Y., Min, W., Faming, W., Sheng, L., Zhigang, Y., Lei, H. and Yuhao, F., et al., 2021, Technologies and perspectives for achieving carbon neutrality. The Innovation 2(4), 1–23. doi: 10.1016/j.xinn.2021.100180
  • Mejria, J., Aydib, A., Abderrabbab, M. and Mejric, M., 2018, Emerging extraction processes of essential oils: A review. Asian Journal of Green Chemistry 2, 171–280. doi: 10.22631/AJGC.2018.119980.1053
  • Machado, C.A., Oliveira, F.O., de Andrade, M.A., Hodel, K.V.S., Lepikson, H. and Machado, B.A.S., 2022, Steam distillation for essential oil extraction: An Evaluation of technological advances based on an analysis of patent documents. Sustainability 14, 7119. doi: 10.3390/su14127119
  • Hsing Yuan, Y. and Ya Chin, L., 2017, Green extraction of Cymbopogon citrus essential oil by solar energy. Industrial Crops and Products 108, 716–721. doi: 10.1016/j.indcrop.2017.07.039
  • Patnaik, J. and Kumar Tarei, T., 2022, Analysing appropriateness in appropriate technology for achieving sustainability: A multi-sectorial examination in a developing economy. Journal of Cleaner Production 349, 131204. doi: 10.1016/j.jclepro.2022.131204
  • Radivojac, A., Bera, O., Zekovic, Z. and Teslic, N., et al., 2021, Extraction of peppermint essential oils and lipophilic compounds: Assessment of process kinetics and environmental impacts with multiple techniques. Molecules 26, 2879. doi: 10.3390/molecules26102879
  • Machado, C.A., Oliveira, F.O., de Andrade, M.A. and Hodel, K.V.S., et al., 2022, Steam distillation for essential oil extraction: An Evaluation of technological advances based on an analysis of patent documents. Sustainability 14, 7119. doi: 10.3390/su14127119
  • Lamberti, L., Grillo, G., Gallina, L. Carnaroglio, D., et al., 2021, Microwave-assisted hydrodistillation of hop (Humulus lupulus L.) terpenes: A pilot-scale study. Foods 10(11), 2726. doi: 10.3390/foods10112726
  • Shi, G., Lin, L., Liu, Y., Chen, G., Yang, A., Wu, Y., Zhou, Y. and Li, H., et al., 2021, Study on the mechanism of ionic liquids improving the extraction efficiency of essential oil based on experimental optimization and density functional theory: The fennel (Foeniculi Fructus) essential oil case. Molecules 26(11), 3169. doi: 10.3390/molecules26113169
  • Elyemni, M., Louaste, B., Nechad, I., Elkamli, T., Bouia, A., Taleb, M., Chaouch, M. and Eloutassi, N., et al., 2019, Extraction of essential oils of Rosmarinus officinalis L. by two different methods: Hydrodistillation and Microwave assisted hydrodistillation. Scientific World Journal 2019, 1–6. doi: 10.1155/2019/3659432
  • Mejri, J.L.A.I.L., Aydi, A., Abderrabba, M. and Mejri, M., 2018, Emerging extraction processes of essential oils: A review. Asian Journal of Green Chemistry 2(3), 246–267. doi: 10.22631/ajgc.2018.119980.1053
  • Andras, C., Salamon, B., Gyorgy, E., Mihok, E. and Szep, A., 2018, Essential oil extraction from herbs and their use in the food industry. Acta Agraria Debreceniensis 150, 59–74. doi: 10.34101/actaagrar/150/1702
  • Asilbekova, D.T., Bobakulov, K.M., Sasmakov, S.A. and Abdurakhmanov, J.M., et al., 2017, Composition and antimicrobial activity of essential oils from Daucus carota L. subsp. carota, growing in Uzbekistan. American Journal of Essential Oils and Natural Products 5(4), 9–13. https://www.researchgate.net/publication/322245600
  • Du, B., Schwartz-Narbonne, H., Tandoc, M., Heffernan, E.M., Mack, M.L. and Siegel, J.A., 2022, The impact of émissions from an essential oil diffuser on cognitive performance. Indoor Air 32, 1–12. doi: 10.1111/ina.12919
  • Peza, I. and Ross, C., 2021, Extractive industries and the environment: Production, pollution, and protest in global history. The Extractive Industries and Society 8, 1–7. doi: 10.1016/j.exis.2021.100933
  • Upadhyay, A., 2022, Application of residual biomass from medicinal and aromatic plants. Global Journal of Medicinal Plants Research 7(1), 433–434.
  • Saha, A. and Basak, B.B., 2020, Scope of value addition and utilization of residual biomass from medicinal and aromatic plants. Industrial Crops and Products 145, 111979. doi: 10.1016/j.indcrop.2019.111979
  • Nakayama, H.D., Samudio Oggero, A., Talavera, T. and Armoa, R., 2022, Medicinal and aromatic plants. The challenge of taking advantage of its by-products in the San Pedro department. Población y Desarrollo 28(54), 16–25. doi: 10.18004/pdfce/2076-054x/2022.028.54.016
  • Elguea-Culebras, G.O., Melero Bravo, E. and Sanchez-Vioque, R., 2022, Potential sources and methodologies for the recovery of phenolic compounds from distillation residues of Mediterranean aromatic plants. An approach to the valuation of by-products of the essential oil market–A review. Industrial Crops and Products 175, 114261. doi: 10.1016/j.indcrop.2021.114261
  • Dangles, O., 2012, Antioxidant activity of plant phenols: Chemical mechanisms and biological significance. Current Organic Chemistry 16(6), 692–714. doi: 10.2174/138527212799957995
  • Mgoma, S.T., Basitere, M. and Mshayisa, V.V., 2021, Kinetics and thermodynamics of oil extraction from South African hass avocados using hexane as a solvent. South African Journal of Chemical Engineering 37, 244–251. doi: 10.1016/j.sajce.2021.06.007
  • Bispo dos Santos, S., Arêdes Martins, M., Caneschi, A.L., Morette Aguilar, P.R. and dos Reis Coimbra, J.S., 2015, Kinetics and thermodynamics of oil extraction from Jatropha curcas L. Using ethanol as a solvent. International Journal of Chemical Engineering 2015, 871236. doi: 10.1155/2015/871236
  • Moradi, S., Fazlali, A. and Hamedi, H., 2018, Microwave-assisted hydro-distillation of essential oil from Rosemary: Comparison with traditional distillation. Avicenna Journal of Medical Biotechnology 10(1), 22–28.
  • Wei, L., Zhang, Y. and Jiang, B., 2013, Comparison of Microwave-assisted hydrodistillation with the traditional hydrodistillation method in the extraction of essential oils from dwarfed Cinnamomum camphora var. Linaolifera Fujita Leaves and twigs. Advance Journal of Food Science & Technology 5(11), 1436–1442. doi: 10.19026/ajfst.5.3363
  • Smaili, T., Bendif, H., Öztürk, M., Flamini, G. and Peron, G., 2021, Chemical composition and antioxidant activity of essential oil from Daucus reboudii Coss., an Endemic Plant of Algeria. Applied Sciences 11(4), 1843. doi: 10.3390/app11041843
  • Behidj-Benyounes, N., Benyounes, K., Dahmene, T., Chebouti, N. and Gana, S., 2015, Physicochemical profile of essential oil of Daucus carota. International Journal of Agricultural and Biological Engineering 9(2), 200–203.
  • Bendiabdellah, A., El Amine Dib, M., Djabou, N. and Allali, H., et al., 2012, Costa, Biological activities and volatile constituents of Daucus muricatus L. from Algeria. Chemistry Central Journal 6(48), 1–10. doi: 10.1186/1752-153X-6-48
  • Meliani, N., Dib, M.A., Bendiabdellah, A. and Djabou, N., et al., 2012, Evaluation of antioxidant activity of essential oil and extracts from Algerian Daucus carota L. aerial parts. World Journal of Pharmaceutical Research 1(5), 1121–1129.
  • Ksouri, A., Dob, T., Belkebir, A., Krimat, S. and Chelghoum, C., 2015, Chemical composition and antioxidant activity of the essential oil and the methanol extract of Algerian wild carrot Daucus carota L. ssp. carota. (L.) Thell. Journal of Materials and Environmental Science 6(3), 784–791.
  • Alves-Silva, J.M., Zuzarte, M., Gonçalves, M.J. and Cavaleiro, C., et al., 2016, New claims for wild carrot (Daucus carota subsp. carota) essential oil. Evidence-Based Complementary and Alternative Medicine 2016, 9045196. doi: 10.1155/2016/9045196

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