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Reviews

Advances in efficient extraction of essential oils from spices and its application in food industry: A critical review

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Pages 11482-11503 | Published online: 29 Jun 2022

References

  • Abdel-Hameed, E.-S S., M. S. Salman, M. A. Fadl, A. Elkhateeb, and M. M. Hassan. 2018. Chemical composition and biological activity of Mentha longifolia L. essential oil growing in Taif, KSA extracted by hydrodistillation, solvent free microwave and microwave hydrodistillation. Journal of Essential Oil Bearing Plants 21 (1):1–14. doi: 10.1080/0972060X.2018.1454343.
  • Aguilar, F., K. Ekramzadeh, T. Scheper, and S. Beutel. 2020. Whole-cell production of patchouli oil sesquiterpenes in Escherichia coli: Metabolic engineering and fermentation optimization in solid-liquid phase partitioning cultivation. ACS Omega 5 (50):32436–46. doi: 10.1021/acsomega.0c04590.
  • Ait Amer Meziane, I., N. Maizi, N. Abatzoglou, and E.-H. Benyoussef. 2020. Modelling and optimization of energy consumption in essential oil extraction processes. Food and Bioproducts Processing 119:373–89. doi: 10.1016/j.fbp.2019.11.018.
  • Ali, A., B. L. Chua, and Y. H. Chow. 2019. An insight into the extraction and fractionation technologies of the essential oils and bioactive compounds in Rosmarinus officinalis L.: Past, present and future. TrAC Trends in Analytical Chemistry 118:338–51. doi: 10.1016/j.trac.2019.05.040.
  • Almohammed, F., M. Koubaa, A. Khelfa, M. Nakaya, H. Mhemdi, and E. Vorobiev. 2017. Pectin recovery from sugar beet pulp enhanced by high-voltage electrical discharges. Food and Bioproducts Processing 103:95–103. doi: 10.1016/j.fbp.2017.03.005.
  • Alsaraf, S., Z. Hadi, W. M. Al-Lawati, A. A. Al Lawati, and S. A. Khan. 2020. Chemical composition, in vitro antibacterial and antioxidant potential of Omani Thyme essential oil along with in ­silico studies of its major constituent. Journal of King Saud University - Science 32 (1):1021–8. doi: 10.1016/j.jksus.2019.09.006.
  • Amigh, S., and S. Taghian Dinani. 2020. Combination of ultrasound-assisted aqueous enzymatic extraction and cooking pretreatment for date seed oil recovery. Heat and Mass Transfer 56 (8):2345–54. doi: 10.1007/s00231-020-02865-2.
  • Amorati, R., M. C. Foti, and L. Valgimigli. 2013. Antioxidant activity of essential oils. Journal of Agricultural and Food Chemistry 61 (46):10835–47. doi: 10.1021/jf403496k.
  • Andrade, J. M., C. Faustino, C. Garcia, D. Ladeiras, C. P. Reis, and P. Rijo. 2018. Rosmarinus officinalis L.: An update review of its phytochemistry and biological activity. Future Science OA 4 (4):FSO283. doi: 10.4155/fsoa-2017-0124.
  • Andrys, D., and D. Kulpa. 2018. In Vitro propagation affects the composition of narrow-leaved lavender essential oils. Acta Chromatographica 30 (4):225–30. doi: 10.1556/1326.2017.00317.
  • Angane, M., S. Swift, K. Huang, C. A. Butts, and S. Y. Quek. 2022. Essential oils and their major components: An updated review on antimicrobial activities, mechanism of action and their potential application in the food industry. Foods 11 (3):464. doi: 10.3390/foods11030464.
  • Ansari, M. A., K. F. Badrealam, A. Alam, S. Tufail, G. Khalique, M. J. Equbal, M. A. Alzohairy, A. Almatroudi, M. N. Alomary, and F. H. Pottoo. 2020. Recent nano-based therapeutic intervention of bioactive sesquiterpenes: Prospects in cancer therapeutics. Current Pharmaceutical Design 26 (11):1138–44. doi: 10.2174/1381612826666200116151522.
  • Aparajhitha, S., and R. Mahendran. 2019. Effect of plasma bubbling on free radical production and its subsequent effect on the microbial and physicochemical properties of Coconut Neera. Innovative Food Science & Emerging Technologies 58102230. doi: 10.1016/j.ifset.2019.:.
  • Arasu, M. V., P. Viayaraghavan, S. Ilavenil, N. A. Al-Dhabi, and K. C. Choi. 2019. Essential oil of four medicinal plants and protective properties in plum fruits against the spoilage bacteria and fungi. Industrial Crops and Products 133:54–62. doi: 10.1016/j.indcrop.2019.03.018.
  • Arumugam, G., U. R. Sinniah, M. K. Swamy, and P. T. Lynch. 2020. Micropropagation and essential oil characterization of Plectranthus amboinicus (Lour.) Sprengel, an aromatic medicinal plant. In Vitro Cellular & Developmental Biology - Plant 56 (4):491–503. doi: 10.1007/s11627-020-10056-1.
  • Bag, A., and R. R. Chattopadhyay. 2015. Evaluation of synergistic antibacterial and antioxidant efficacy of essential oils of spices and herbs in combination. PLoS One 10 (7):e0131321. doi: 10.1371/journal.pone.0131321.
  • Banerjee, G., and P. Chattopadhyay. 2019. Vanillin biotechnology: The perspectives and future. Journal of the Science of Food and Agriculture 99 (2):499–506. doi: 10.1002/jsfa.9303.
  • Barba, F. J., N. Grimi, and E. Vorobiev. 2015. New approaches for the use of non-conventional cell disruption technologies to extract potential food additives and nutraceuticals from microalgae. Food Engineering Reviews 7 (1):45–62. doi: 10.1007/s12393-014-9095-6.
  • Barba, F. J., O. Parniakov, S. A. Pereira, A. Wiktor, N. Grimi, N. Boussetta, J. A. Saraiva, J. Raso, O. Martin-Belloso, D. Witrowa-Rajchert, et al. 2015. Current applications and new opportunities for the use of pulsed electric fields in food science and industry. Food Research International 77:773–98. doi: 10.1016/j.foodres.2015.09.015.
  • Ben Hassine, D., S. Kammoun El Euch, R. Rahmani, N. Ghazouani, R. Kane, M. Abderrabba, and J. Bouajila. 2021. Clove buds essential oil: The impact of grinding on the chemical composition and its biological activities involved in consumer’s health security. BioMed Research International 2021:9940591. doi: 10.1155/2021/9940591.
  • Ben Jemaa, M., H. Falleh, M. A. Neves, H. Isoda, M. Nakajima, and R. Ksouri. 2017. Quality preservation of deliberately contaminated milk using thyme free and nanoemulsified essential oils. Food Chemistry 217:726–34. doi: 10.1016/j.foodchem.2016.09.030.
  • Benmoussa, H., W. Elfalleh, S. He, M. Romdhane, A. Benhamou, and R. Chawech. 2018. Microwave hydrodiffusion and gravity for rapid extraction of essential oil from Tunisian cumin (Cuminum cyminum L.) seeds: Optimization by response surface methodology. Industrial Crops and Products 124:633–42. doi: 10.1016/j.indcrop.2018.08.036.
  • Bier, M. C. J., A. B. P. Medeiros, N. De Kimpe, and C. R. Soccol. 2019. Evaluation of antioxidant activity of the fermented product from the biotransformation of R-(+)-limonene in solid-state fermentation of orange waste by Diaporthe sp. Biotechnology Research and Innovation 3 (1):168–76. doi: 10.1016/j.biori.2019.01.002.
  • Bora, H., M. Kamle, D. K. Mahato, P. Tiwari, and P. Kumar. 2020. Citrus essential oils (CEOs) and their applications in food: An overview. Plants (Basel) 9 (3):357. doi: 10.3390/plants9030357.
  • Borgarello, A. V., G. N. Mezza, M. C. Pramparo, and M. F. Gayol. 2015. Thymol enrichment from oregano essential oil by molecular distillation. Separation and Purification Technology 153:60–6. doi: 10.1016/j.seppur.2015.08.035.
  • Borges, A., A. C. Abreu, C. Dias, M. J. Saavedra, F. Borges, and M. Simoes. 2016. New perspectives on the use of phytochemicals as an emergent strategy to control bacterial infections including biofilms. Molecules 21 (7):877. doi: 10.3390/molecules21070877.
  • Boumahdi, Y., H. Moghrani, N. Nasrallah, S. Ouarek, and R. Maachi. 2021. Microwave‐assisted hydrodistillation of the essential oil from Algerian Pimpinella anisum seeds. Flavour and Fragrance Journal 36 (1):34–46. doi: 10.1002/ffj.3614.
  • Bourke, P., D. Ziuzina, D. Boehm, P. J. Cullen, and K. Keener. 2018. The potential of cold plasma for safe and sustainable food production. Trends in Biotechnology 36 (6):615–26. doi: 10.1016/j.tibtech.2017.11.001.
  • Cam, M., E. Yuksel, H. Alasalvar, B. Basyigit, H. Sen, M. Yilmaztekin, et al. 2019. Simultaneous extraction of phenolics and essential oil from peppermint by pressurized hot water extraction. J Food Sci Technol. 56 (1):200–7. doi: 10.1007/s13197-018-3475-5.
  • Campos-Requena, V. H., B. L. Rivas, M. A. Pérez, C. R. Figueroa, N. E. Figueroa, and E. A. Sanfuentes. 2017. Thermoplastic starch/clay nanocomposites loaded with essential oil constituents as packaging for strawberries − In vivo antimicrobial synergy over Botrytis cinerea. Postharvest Biology and Technology 129:29–36. doi: 10.1016/j.postharvbio.2017.03.005.
  • Chaichi, M., A. Mohammadi, F. Badii, and M. Hashemi. 2021. Triple synergistic essential oils prevent pathogenic and spoilage bacteria growth in the refrigerated chicken breast meat. Biocatalysis and Agricultural Biotechnology 32:101926. doi: 10.1016/j.bcab.2021.101926.
  • Chakravarty, I., V. M. Parmar, and S. A. Mandavgane. 2021. Current trends in essential oil (EO) production. Biomass Conversion and Biorefinery. doi: 10.1007/s13399-021-01963-3.
  • Chen, F. Y., M. Zhang, and C. H. Yang. 2020. Application of ultrasound technology in processing of ready-to-eat fresh food: A review. Ultrasonics Sonochemistry 63:104953. doi: 10.1016/j.ultsonch.2019.104953.
  • Chen, H. Z., M. Zhang, B. Bhandari, and Z. M. Guo. 2018a. Applicability of a colorimetric indicator label for monitoring freshness of fresh-cut green bell pepper. Postharvest Biology and Technology 140:85–92. doi: 10.1016/j.postharvbio.2018.02.011.
  • Chen, H. Z., M. Zhang, B. Bhandari, and Z. M. Guo. 2018b. Evaluation of the freshness of fresh-cut green bell pepper (Capsicum annuum var. grossum) using electronic nose. LWT - Food Science and Technology 87:77–84. doi: 10.1016/j.lwt.2017.08.052.
  • Chen, H. Z., M. Zhang, B. Bhandari, and C. H. Yang. 2019. Development of a novel colorimetric food package label for monitoring lean pork freshness. LWT - Food Science and Technology 99:43–9. doi: 10.1016/j.lwt.2018.09.048.
  • Chen, H. Z., M. Zhang, B. Bhandari, and C. H. Yang. 2020. Novel pH-sensitive films containing curcumin and anthocyanins to monitor fish freshness. Food Hydrocolloids 100:105438. doi: 10.1016/j.foodhyd.2019.105438.
  • Chen, L., Y. L. Liu, and J. L. Deng. 2019. Removal of phthalic acid esters from sea buckthorn (Hippophae rhamnoides L.) pulp oil by steam distillation and molecular distillation. Food Chemistry 294:572–7. doi: 10.1016/j.foodchem.2019.05.091.
  • Chen, Z., K. Wu, W. Zhu, Y. Wang, C. Su, and F. Yi. 2022. Chemical compositions and bioactivities of essential oil from perilla leaf (Perillae Folium) obtained by ultrasonic-assisted hydro-distillation with natural deep eutectic solvents. Food Chemistry 375:131834. doi: 10.1016/j.foodchem.2021.131834.
  • da Silva Dannenberg, G., G. D. Funck, F. J. Mattei, W. P. da Silva, and Â. M. Fiorentini. 2016. Antimicrobial and antioxidant activity of essential oil from pink pepper tree (Schinus terebinthifolius Raddi) in vitro and in cheese experimentally contaminated with Listeria monocytogenes. Innovative Food Science & Emerging Technologies 36:120–7. doi: 10.1016/j.ifset.2016.06.009.
  • da Silva e Silva, N., F. de Souza Farias, M. M. dos Santos Freitas, E. J. G. Pino Hernández, V. V. Dantas, M. Enê Chaves Oliveira, M. R. S. P. Joele, and L. de Fátima Henriques Lourenço. 2021. Artificial intelligence application for classification and selection of fish gelatin packaging film produced with incorporation of palm oil and plant essential oils. Food Packaging and Shelf Life 27:100611. doi: 10.1016/j.fpsl.2020.100611.
  • da Silva, R. F., C. N. Carneiro, C. B. do C. de Sousa, F. J. V. Gomez, M. Espino, J. Boiteux, M. de los Á. Fernández, M. F. Silva, and F. de S. Dias. 2022. Sustainable extraction bioactive compounds procedures in medicinal plants based on the principles of green analytical chemistry: A review. Microchemical Journal 175:107184. doi: 10.1016/j.microc.2022.107184.
  • Dabuwar Benjamin, E., G. Adamu Ishaku, F. Andrew Peingurta, and A. Samuel Afolabi. 2019. Callus culture for the production of therapeutic compounds. American Journal of Plant Biology 4 (4):76. doi: 10.11648/j.ajpb.20190404.14.
  • Dantas, T. N. C., T. J. O. Cabral, A. A. Dantas Neto, and M. C. P. A. Moura. 2020. Enrichmnent of patchoulol extracted from patchouli (Pogostemon cablin) oil by molecular distillation using response surface and artificial neural network models. Journal of Industrial and Engineering Chemistry 81:219–27. doi: 10.1016/j.jiec.2019.09.011.
  • Demirok Soncu, E., N. Ozdemir, B. Arslan, S. Kucukkaya, and A. Soyer. 2020. Contribution of surface application of chitosan-thyme and chitosan-rosemary essential oils to the volatile composition, microbial profile, and physicochemical and sensory quality of dry-fermented sausages during storage. Meat Sci. 166:108127. doi: 10.1016/j.meatsci.2020.108127.
  • Dinh, P. N., L. M. T. Thuy, and T. P. Quoc. 2020. The extraction of rosemary essential oil by microwave-assisted hydrodistillation method. IOP Conference Series: Materials Science and Engineering 991 (1):012051. doi: 10.1088/1757-899X/991/1/012051.
  • Diniz do Nascimento, L., A. A. B. d. Moraes, K. S. d. Costa, J. M. Pereira Galúcio, P. S. Taube, C. M. L. Costa, J. Neves Cruz, E. H. de Aguiar Andrade, and L. J. G. d. Faria. 2020. Bioactive natural compounds and antioxidant activity of essential oils from spice plants: New findings and potential applications. Biomolecules 10 (7):988. doi: 10.3390/biom10070988.
  • dos Santos Reis, N., N. B. de Santana, I. M. de Carvalho Tavares, O. A. Lessa, L. R. dos Santos, N. E. Pereira, G. A. Soares, R. A. Oliveira, J. R. Oliveira, and M. Franco. 2020. Enzyme extraction by lab-scale hydrodistillation of ginger essential oil (Zingiber officinale Roscoe): Chromatographic and micromorphological analyses. Industrial Crops and Products 146:112210. doi: 10.1016/j.indcrop.2020.112210.
  • Dwivedy, A. K., B. Prakash, C. S. Chanotiya, D. Bisht, and N. K. Dubey. 2017. Chemically characterized Mentha cardiaca L. essential oil as plant based preservative in view of efficacy against biodeteriorating fungi of dry fruits, aflatoxin secretion, lipid peroxidation and safety profile assessment. Food and Chemical Toxicology 106 (Pt A):175–84. doi: 10.1016/j.fct.2017.05.043.
  • Ebadi, M. T., S. Abbasi, A. Harouni, and F. Sefidkon. 2019. Effect of cold plasma on essential oil content and composition of lemon verbena. Food Science & Nutrition 7 (4):1166–71. doi: 10.1002/fsn3.876.
  • El Asbahani, A., K. Miladi, W. Badri, M. Sala, E. H. Aït Addi, H. Casabianca, A. El Mousadik, D. Hartmann, A. Jilale, F. N. R. Renaud, et al. 2015. Essential oils: From extraction to encapsulation. International Journal of Pharmaceutics 483 (1–2):220–43. doi: 10.1016/j.ijpharm.2014.12.069.
  • El Kharraf, S., S. El-Guendouz, A. Farah, B. Bennani, M. C. Mateus, E. M. El Hadrami, and M. G. Miguel. 2021. Hydrodistillation and simultaneous hydrodistillation-steam distillation of Rosmarinus officinalis and Origanum compactum: Antioxidant, anti-inflammatory, and antibacterial effect of the essential oils. Industrial Crops and Products 168:113591. doi: 10.1016/j.indcrop.2021.113591.
  • Esmaeili, H., N. Cheraghi, A. Khanjari, M. Rezaeigolestani, A. A. Basti, A. Kamkar, and E. M. Aghaee. 2020. Incorporation of nanoencapsulated garlic essential oil into edible films: A novel approach for extending shelf life of vacuum-packed sausages. Meat Science 166:108135. doi: 10.1016/j.meatsci.2020.108135.
  • Essien, S. O., B. Young, and S. Baroutian. 2020. Recent advances in subcritical water and supercritical carbon dioxide extraction of bioactive compounds from plant materials. Trends in Food Science & Technology 97:156–69. doi: 10.1016/j.tifs.2020.01.014.
  • Falleh, H., M. Ben Jemaa, M. Saada, and R. Ksouri. 2020. Essential oils: A promising eco-friendly food preservative. Food Chemistry 330:127268. doi: 10.1016/j.foodchem.2020.127268.
  • Fan, K., M. Zhang, and F. J. Jiang. 2019. Ultrasound treatment to modified atmospheric packaged fresh-cut cucumber: Influence on microbial inhibition and storage quality. Ultrasonics Sonochemistry 54:162–70. doi: 10.1016/j.ultsonch.2019.02.003.
  • Filly, A., A. S. Fabiano-Tixier, C. Louis, X. Fernandez, and F. Chemat. 2016. Water as a green solvent combined with different techniques for extraction of essential oil from lavender flowers. Comptes Rendus Chimie 19 (6):707–17. doi: 10.1016/j.crci.2016.01.018.
  • Friedman, M. 2017. Chemistry, antimicrobial mechanisms, and antibiotic activities of cinnamaldehyde against pathogenic bacteria in animal feeds and human foods. Journal of Agricultural and Food Chemistry 65 (48):10406–23. doi: 10.1021/acs.jafc.7b04344.
  • Garavand, F., S. Rahaee, N. Vahedikia, and S. M. Jafari. 2019. Different techniques for extraction and micro/nanoencapsulation of saffron bioactive ingredients. Trends in Food Science & Technology 89:26–44. doi: 10.1016/j.tifs.2019.05.005.
  • Gavahian, M., and Y.-H. Chu. 2018. Ohmic accelerated steam distillation of essential oil from lavender in comparison with conventional steam distillation. Innovative Food Science & Emerging Technologies 50:34–41. doi: 10.1016/j.ifset.2018.10.006.
  • Gavahian, M., and A. Farahnaky. 2018. Ohmic-assisted hydrodistillation technology: A review. Trends in Food Science & Technology 72:153–61. doi: 10.1016/j.tifs.2017.12.014.
  • Gavahian, M., Y. T. Lee, and Y. H. Chu. 2018. Ohmic-assisted hydrodistillation of citronella oil from Taiwanese citronella grass: Impacts on the essential oil and extraction medium. Innovative Food Science & Emerging Technologies 48:33–41. doi: 10.1016/j.ifset.2018.05.015.
  • Ghosh, I. N., S. D. Patil, T. K. Sharma, S. K. Srivastava, R. Pathania, and N. K. Navani. 2013. Synergistic action of cinnamaldehyde with silver nanoparticles against spore-forming bacteria: A case for judicious use of silver nanoparticles for antibacterial applications. International Journal of Nanomedicine 8:4721–31. doi: 10.2147/ijn.S49649.
  • Giacometti, J., D. Bursać Kovačević, P. Putnik, D. Gabrić, T. Bilušić, G. Krešić, V. Stulić, F. J. Barba, F. Chemat, G. Barbosa-Cánovas, et al. 2018. Extraction of bioactive compounds and essential oils from mediterranean herbs by conventional and green innovative techniques: A review. Food Research International (Ottawa, Ont.) 113:245–62. doi: 10.1016/j.foodres.2018.06.036.
  • Giuffrè, A. M., M. L. C. Labate, D. Ursino, and G. Gioffrè. 2020. The peel essential oil composition of bergamot fruit (Citrus bergamia, Risso) of Reggio Calabria (Italy): A review. Emirates Journal of Food and Agriculture 32 (11):835. doi: 10.9755/ejfa.2020.v32.i11.2197.
  • Goula, A. M., A. Papatheodorou, S. Karasavva, and K. Kaderides. 2018. Ultrasound-assisted aqueous enzymatic extraction of oil from pomegranate seeds. Waste and Biomass Valorization 9 (1):1–11. doi: 10.1007/s12649-016-9740-9.
  • György, É., É. Laslo, I. H. Kuzman, and C. Dezső András. 2020. The effect of essential oils and their combinations on bacteria from the surface of fresh vegetables. Food Science & Nutrition 8 (10):5601–11. doi: 10.1002/fsn3.1864.
  • Halim, N. A. A., Z. Z. Abidin, S. I. Siajam, C. G. Hean, and M. R. Harun. 2021. Optimization studies and compositional analysis of subcritical water extraction of essential oil from Citrus hystrix DC. leaves. The Journal of Supercritical Fluids 178:105384. doi: 10.1016/j.supflu.2021.105384.
  • Haro-Gonzalez, J. N., G. A. Castillo-Herrera, M. Martinez-Velazquez, and H. Espinosa-Andrews. 2021. Clove essential oil (Syzygium aromaticum L. Myrtaceae): Extraction, chemical composition, food applications, and essential bioactivity for human health. Molecules 26 (21):6387. doi: 10.3390/molecules26216387.
  • Hashemi, S. M. B., N. Nikmaram, S. Esteghlal, A. Mousavi Khaneghah, M. Niakousari, F. J. Barba, S. Roohinejad, and M. Koubaa. 2017. Efficiency of Ohmic assisted hydrodistillation for the extraction of essential oil from oregano (Origanum vulgare subsp. viride) spices. Innovative Food Science & Emerging Technologies 41:172–8. doi: 10.1016/j.ifset.2017.03.003.
  • Hassoun, A., and O. E. Coban. 2017. Essential oils for antimicrobial and antioxidant applications in fish and other seafood products. Trends in Food Science & Technology 68:26–36. doi: 10.1016/j.tifs.2017.07.016.
  • Hong-yu, H., Z. Yong-qing, L. Min, W. Zi-peng, Z. Min, and Z. Xiao-dan. 2019. Study on purification of lemon essential oil by molecular distillation. Storage and Process 19 (6):186–90. doi: 10.3969/j.issn.1009-6221.2019.06.029.
  • Hou, J., J. Zhang, B. Zhang, X. Jin, H. Zhang, and Z. Jin. 2020. Transcriptional analysis of metabolic pathways and regulatory mechanisms of essential oil biosynthesis in the leaves of Cinnamomum camphora (L.) Presl. Frontiers in Genetics 11:598714. doi: 10.3389/fgene.2020.598714.
  • Iamareerat, B., M. Singh, M. B. Sadiq, and A. K. Anal. 2018. Reinforced cassava starch based edible film incorporated with essential oil and sodium bentonite nanoclay as food packaging material. Journal of Food Science and Technology 55 (5):1953–9. doi: 10.1007/s13197-018-3100-7.
  • Ibanez, M. D., and M. A. Blazquez. 2021. Curcuma longa L. Rhizome essential oil from extraction to its agri-food applications: A review. Plants-Basel 10 (1):44. doi: 10.3390/plants10010044.
  • Ibrahim, G. S., and M. J. Kiki. 2020. Chemical composition, antifungal and antioxidant activity of some spice essential oils. International Journal of Life Science and Pharma Research 10 (1):L43–50. doi: 10.22376/ijpbs/lpr.2020.10.1.L43-50.
  • Ivanovic, M., K. Makoter, and M. Islamcevic Razborsek. 2021. Comparative study of chemical composition and antioxidant activity of essential oils and crude extracts of four characteristic Zingiberaceae herbs. Plants (Basel) 10 (3):501. doi: 10.3390/plants10030501.
  • Jadhav, H., A. Jadhav, Y. Morabiya, P. Takkalkar, S. S. Qureshi, A. G. Baloch, S. Nizamuddin, S. A. Mazari, R. Abro, and N. M. Mubarak. 2021. Combined impact of ultrasound pre-treatment and hydrodistillation on bioactive compounds and GC-MS analysis of Cinnamomum cassia bark extract. Waste and Biomass Valorization 12 (2):807–21. doi: 10.1007/s12649-020-01031-3.
  • Jamali, S. N., E. Assadpour, J. Feng, and S. M. Jafari. 2021. Natural antimicrobial-loaded nanoemulsions for the control of food spoilage/pathogenic microorganisms. Advances in Colloid and Interface Science 295:102504. doi: 10.1016/j.cis.2021.102504.
  • Jeyaratnam, N., A. H. Nour, R. Kanthasamy, A. H. Nour, A. R. Yuvaraj, and J. O. Akindoyo. 2016. Essential oil from Cinnamomum cassia bark through hydrodistillation and advanced microwave assisted hydrodistillation. Industrial Crops and Products 92:57–66. doi: 10.1016/j.indcrop.2016.07.049.
  • Jiang, J. Y., L. Gong, Q. F. Dong, Y. F. Kang, K. Osako, and L. Li. 2020. Characterization of PLA-P3,4HB active film incorporated with essential oil: Application in peach preservation. Food Chemistry 313:126134. doi: 10.1016/j.foodchem.2019.126134.
  • Jin, W., A. S. Mujumdar, M. Zhang, and W. F. Shi. 2018. Novel drying techniques for spices and herbs: A review. Food Engineering Reviews 10 (1):34–45. doi: 10.1007/s12393-017-9165-7.
  • Ju, J., Y. Xie, Y. Guo, Y. Cheng, H. Qian, and W. Yao. 2020. Application of starch microcapsules containing essential oil in food preservation. Critical Reviews in Food Science and Nutrition 60 (17):2825–36. doi: 10.1080/10408398.2018.1503590.
  • Jugreet, B. S., S. Suroowan, R. R. K. Rengasamy, and M. F. Mahomoodally. 2020. Chemistry, bioactivities, mode of action and industrial applications of essential oils. Trends in Food Science & Technology 101:89–105. doi: 10.1016/j.tifs.2020.04.025.
  • Kapoor, I. P. S., B. Singh, S. Singh, and G. Singh. 2014. Essential oil and oleoresins of black pepper as natural food preservatives for orange juice. Journal of Food Processing and Preservation 38 (1):146–52. doi: 10.1111/j.1745-4549.2012.00756.x.
  • Karanicola, P., M. Patsalou, P.-Y. Stergiou, A. Kavallieratou, N. Evripidou, P. Christou, G. Panagiotou, C. Damianou, E. M. Papamichael, and M. Koutinas. 2021. Ultrasound-assisted dilute acid hydrolysis for production of essential oils, pectin and bacterial cellulose via a citrus processing waste biorefinery. Bioresource Technology 342:126010. doi: 10.1016/j.biortech.2021.126010.
  • Kessler, J. C., V. A. Vieira, I. M. Martins, Y. A. Manrique, A. Afonso, P. Ferreira, F. Mandim, I. C. F. R. Ferreira, L. Barros, A. E. Rodrigues, et al. 2022. Obtaining aromatic extracts from Portuguese Thymus mastichina L. by hydrodistillation and supercritical fluid extraction with CO2 as potential flavouring additives for food applications. Molecules 27 (3)694. doi: 10.3390/molecules27030:.
  • Khezeli, T., A. Daneshfar, and R. Sahraei. 2016. A green ultrasonic-assisted liquid–liquid microextraction based on deep eutectic solvent for the HPLC-UV determination of ferulic, caffeic and cinnamic acid from olive, almond, sesame and cinnamon oil. Talanta 150:577–85. doi: 10.1016/j.talanta.2015.12.077.
  • Kou, X. R., Y. Q. Ke, X. Q. Wang, M. R. T. Rahman, Y. Z. Xie, S. W. Chen, and H. X. Wang. 2018. Simultaneous extraction of hydrophobic and hydrophilic bioactive compounds from ginger (Zingiber officinale Roscoe). Food Chemistry 257:223–9. doi: 10.1016/j.foodchem.2018.02.125.
  • Kovács, J. K., P. Felső, L. Makszin, Z. Pápai, G. Horváth, H. Ábrahám, T. Palkovics, A. Böszörményi, L. Emődy, and G. Schneider. 2016. Antimicrobial and virulence-modulating effects of clove essential oil on the foodborne pathogen Campylobacter jejuni. Applied and Environmental Microbiology 82 (20):6158–66. doi: 10.1128/AEM.01221-16.
  • Kowalski, R., G. Kowalska, U. Pankiewicz, A. Mazurek, M. Sujka, M. Włodarczyk-Stasiak, and K. Kałwa. 2018. Effect of the method of rapeseed oil aromatisation with rosemary Rosmarinus officinalis L. on the content of volatile fraction. LWT - Food Science and Technology 95:40–6. doi: 10.1016/j.lwt.2018.04.045.
  • Kunicka-Styczyńska, A., A. Tyfa, D. Laskowski, A. Plucińska, K. Rajkowska, and K. Kowal. 2020. Clove oil (Syzygium aromaticum L.) activity against Alicyclobacillus acidoterrestris biofilm on technical surfaces. Molecules 25 (15):3334. doi: 10.3390/molecules25153334.
  • Lboumhamdi, A., M. Znini, J. Paolini, J. Costa, and L. Majidi. 2020. Chemical analysis of volatile constituents of Pulicaria mauritanica isolated by hydrodistillation and headspace solid-phase micro-extraction techniques. Antimicrobial activity of its essential oil. Analytical and Bioanalytical Chemistry Research 7 (2):197–209.
  • Lei, H., X. L. Li, Q. N. Wei, R. J. Zhou, and J. Wu. 2016. Extraction and purification of ginger essential oil by supercritical carbon dioxide combined with macroporous resin method. Current Topics in Nutraceutical Research 14 (1):59–66.
  • Li, J., Y. Liu, T. Li, M.-A. Gantumur, A. Qayum, A. Bilawal, Z. Jiang, and L. Wang. 2022. Non-covalent interaction and digestive characteristics between α-lactalbumin and safflower yellow: Impacts of microwave heating temperature. LWT - Food Science and Technology 159:113206. doi: 10.1016/j.lwt.2022.113206.
  • Li, L. L., M. Zhang, B. Bhandari, and L. Q. Zhou. 2018. LF-NMR online detection of water dynamics in apple cubes during microwave vacuum drying. Drying Technology 36 (16):2006–15. doi: 10.1080/07373937.2018.1432643.
  • Li, S., D. Lei, Z. Zhu, J. Cai, M. Manzoli, L. Jicsinszky, G. Grillo, and G. Cravotto. 2021. Complexation of maltodextrin-based inulin and green tea polyphenols via different ultrasonic pretreatment. Ultrasonics Sonochemistry 74:105568. doi: 10.1016/j.ultsonch.2021.105568.
  • Li, S., R. Zhang, D. Lei, Y. Huang, S. Cheng, Z. Zhu, Z. Wu, and G. Cravotto. 2021. Impact of ultrasound, microwaves and high-pressure processing on food components and their interactions. Trends in Food Science & Technology 109:1–15. doi: 10.1016/j.tifs.2021.01.017.
  • Li, Y., L. Xia, J. F. T. Vazquez, and S. Song. 2017. Optimization of supercritical CO2 extraction of essential oil from Artemisia annua L. by means of response surface methodology. Journal of Essential Oil Bearing Plants 20 (2):314–27. doi: 10.1080/0972060X.2017.1298475.
  • Li, Y. X., F. Erhunmwunsee, M. Liu, K. Yang, W. Zheng, and J. Tian. 2022. Antimicrobial mechanisms of spice essential oils and application in food industry. Food Chemistry 382:132312. doi: 10.1016/j.foodchem.2022.132312.
  • Li, Z., Y. Fan, and J. Xi. 2019. Recent advances in high voltage electric discharge extraction of bioactive ingredients from plant materials. Food Chemistry 277:246–60. doi: 10.1016/j.foodchem.2018.10.119.
  • Li, Z., H. Wang, X. Pan, Y. Guo, W. Gao, J. Wang, B. Dong, M. Duan, H. Yin, Q. Zhang, et al. 2022. Enzyme-deep eutectic solvent pre-treatment for extraction of essential oil from Mentha haplocalyx Briq. leaves: Kinetic, chemical composition and inhibitory enzyme activity. Industrial Crops and Products 177:114429. doi: 10.1016/j.indcrop.2021.
  • Licon, C. C., A. Moro, C. M. Libran, A. M. Molina, A. Zalacain, M. I. Berruga, and M. Carmona. 2020. Volatile transference and antimicrobial activity of cheeses made with ewes’ milk fortified with essential oils. Foods 9 (1):35. doi: 10.3390/foods9010035.
  • Lima, M. D., I. Kestekoglou, D. Charalampopoulos, and A. Chatzifragkou. 2019. Supercritical fluid extraction of carotenoids from vegetable waste matrices. Molecules 24 (3):466. doi: 10.3390/molecules24030466.
  • Lin, Y., H. He, Q. Huang, F. An, and H. Song. 2020. Flash extraction optimization of low-temperature soluble pectin from passion fruit peel (Passiflora edulis f. flavicarpa) and its soft gelation properties. Food and Bioproducts Processing 123:409–18. doi: 10.1016/j.fbp.2020.07.015.
  • Liu, Q., X. Meng, Y. Li, C.-N. Zhao, G.-Y. Tang, and H.-B. Li. 2017. Antibacterial and antifungal activities of spices. International Journal of Molecular Sciences 18 (6):1283. doi: 10.3390/ijms18061283.
  • Liu, Q., M. Zhang, B. Bhandari, J. C. Xu, and C. H. Yang. 2020. Effects of nanoemulsion-based active coatings with composite mixture of star anise essential oil, polylysine, and nisin on the quality and shelf life of ready-to-eat Yao meat products. Food Control 107:106771. doi: 10.1016/j.foodcont.2019.106771.
  • Liu, W. C., M. Zhang, B. Bhandari, and D. X. Yu. 2021. A novel combination of LF-NMR and NIR to intelligent control in pulse-spouted microwave freeze drying of blueberry. LWT - Food Science and Technology 137:110455. doi: 10.1016/j.lwt.2020.110455.
  • Liu, Z., M. Gui, T. Xu, L. Zhang, L. Kong, L. Qin, and Z. Zou. 2019. Efficient aqueous enzymatic-ultrasonication extraction of oil from Sapindus mukorossi seed kernels. Industrial Crops and Products 134:124–33. doi: 10.1016/j.indcrop.2019.03.065.
  • Liu, Z., H. Li, G. Cui, M. Wei, Z. Zou, and H. Ni. 2021. Efficient extraction of essential oil from Cinnamomum burmannii leaves using enzymolysis pretreatment and followed by microwave-assisted method. LWT - Food Science and Technology 147:111497. doi: 10.1016/j.lwt.2021.111497.
  • Liu, Z., H. Li, Z. Zhu, D. Huang, Y. Qi, C. Ma, Z. Zou, and H. Ni. 2022. Cinnamomum camphora fruit peel as a source of essential oil extracted using the solvent-free microwave-assisted method compared with conventional hydrodistillation. LWT - Food Science and Technology 153:112549. doi: 10.1016/j.lwt.2021.112549.
  • Luna Guevara, J., M. Hernandez, M. Arenas-Hernández, and L. Luna. 2021. Effect of essential oils of oregano (Origanum vulgare), thyme (Thymus vulgaris), orange (Citrus sinensis var. Valencia) in the vapor phase on the antimicrobial and sensory properties of a meat emulsion inoculated with Salmonella enterica. Food Research 5:306–12. doi: 10.26656/fr.2017.5(1).488.
  • Mahgoub, S. A., M. E. Abd El-Hack, Z. S. Mulla, W. R. El-Ghareeb, A. E. Taha, M. Q. Al-Ghadi, A. R. Alhimaidi, R. A. Amran, B. Almutairi, V. Tufarelli, et al. 2020. Improving the quality of turkey meat via storage temperature, packaging atmosphere, and oregano (Origanum vulgare) essential oil addition. Agriculture 10 (10):463. doi: 10.3390/agriculture10100463.
  • Mahomoodally, F., Z. Aumeeruddy-Elalfi, K. N. Venugopala, and M. Hosenally. 2019. Antiglycation, comparative antioxidant potential, phenolic content and yield variation of essential oils from 19 exotic and endemic medicinal plants. Saudi Journal of Biological Sciences 26 (7):1779–88. doi: 10.1016/j.sjbs.2018.05.002.
  • Maqsood, S., S. Benjakul, and F. Shahidi. 2013. Emerging role of phenolic compounds as natural food additives in fish and fish products. Critical Reviews in Food Science and Nutrition 53 (2):162–79. doi: 10.1080/10408398.2010.518775.
  • Martucci, J. F., L. B. Gende, L. M. Neira, and R. A. Ruseckaite. 2015. Oregano and lavender essential oils as antioxidant and antimicrobial additives of biogenic gelatin films. Industrial Crops and Products 71:205–13. doi: 10.1016/j.indcrop.2015.03.079.
  • Maurya, A., J. Prasad, S. Das, and A. K. Dwivedy. 2021. Essential oils and their application in food safety. Frontiers in Sustainable Food Systems 5:653240. doi: 10.3389/fsufs.2021.653420.
  • Mc Gaw, D., and R. Skeene. 2021. Comparison of the sub-critical fluid extraction of the essential oil of turmeric (Curcuma longa L.) with that of hydrodistillation. Eng 2 (4):608–19. doi: 10.3390/eng2040038.
  • Medeiros, T. D. M. d., T. D. Alexandrino, G. M. Pastore, and J. L. Bicas. 2021. Extraction and purification of limonene-1,2-diol obtained from the fungal biotransformation of limonene. Separation and Purification Technology 254:117683. doi: 10.1016/j.seppur.2020.117683.
  • Mehta, M. J., and A. Kumar. 2017. Green and efficient processing of cinnamomum cassia bark by using ionic liquids: Extraction of essential oil and construction of UV-resistant composite films from residual biomass. Chemistry, an Asian Journal 12 (24):3150–5. doi: 10.1002/asia.201701155.
  • Memarzadeh, S. M., A. Gholami, A. G. Pirbalouti, and S. Masoum. 2020. Bakhtiari savory (Satureja bachtiarica Bunge.) essential oil and its chemical profile, antioxidant activities, and leaf micromorphology under green and conventional extraction techniques. Industrial Crops and Products 154:112719. doi: 10.1016/j.indcrop.2020.112719.
  • Miloudi, K., A. Hamimed, Y. Benmimoun, Y. Bellebna, A. Taibi, and A. Tilmatine. 2018. Application of pulsed electric field for intensification of essential oil extraction. Carpathian Journal of Food Science and Technology 10 (1):104–10.
  • Mishra, A. P., H. P. Devkota, M. Nigam, C. O. Adetunji, N. Srivastava, S. Saklani, I. Shukla, L. Azmi, M. A. Shariati, H. D. Melo Coutinho, et al. 2020. Combination of essential oils in dairy products: A review of their functions and potential benefits. LWT - Food Science and Technology 133:110116. doi: 10.1016/j.lwt.2020.
  • Mittal, R. P., A. Rana, and V. Jaitak. 2019. Essential oils: An impending substitute of synthetic antimicrobial agents to overcome antimicrobial resistance. Current Drug Targets 20 (6):605–24. doi: 10.2174/1389450119666181031122917.
  • Modi, P. I., J. K. Parikh, and M. A. Desai. 2019. Sonohydrodistillation: Innovative approach for isolation of essential oil from the bark of cinnamon. Industrial Crops and Products 142111838. doi: 10.1016/j.indcrop.2019.:.
  • Mohammadhosseini, M., A. Venditti, and B. Mahdavi. 2021. Characterization of essential oils and volatiles from the aerial parts of Mentha pulegium L. (Lamiaceae) using microwave-assisted hydrodistillation (MAHD) and headspace solid phase microextraction (HS-SPME) in combination with GC-MS. Natural Product Research 2021:1–5. doi: 10.1080/14786419.2021.1960523.
  • Moosavy, M. H., S. Esmaeili, and E. Mostafavi. 2013. Antibacterial effect of mentha spicata essential oil on listeria monocytogenes in traditional Lighvan cheese. Journal of Food Safety 33 (4):509–14. doi: 10.1111/jfs.12083.
  • Morsy, N. F. S., and K. S. M. Hammad. 2021. Extraction of essential oil from methyl cinnamate basil (Ocimum canum Sims) with high yield in a short time using enzyme pretreatment. Journal of Food Science and Technology 58 (7):2599–605. doi: 10.1007/s13197-020-04766-y.
  • Mottaki, Z., M. Rezayian, V. Niknam, H. Ebrahimzadeh, and M. Mirmasoumi. 2019. Using hairy roots for production of secondary metabolites in Artemisia. Plant Biotechnology Reports 13 (3):263–71. doi: 10.1007/s11816-019-00534-3.
  • Muhammad, D. R. A., and K. Dewettinck. 2017. Cinnamon and its derivatives as potential ingredient in functional food—A review. International Journal of Food Properties 20 (sup2):2237–2263. doi: 10.1080/10942912.2017.1369102.
  • Mwaurah, P. W., S. Kumar, N. Kumar, A. K. Attkan, A. Panghal, V. K. Singh, and M. K. Garg. 2020. Novel oil extraction technologies: Process conditions, quality parameters, and optimization. Comprehensive Reviews in Food Science and Food Safety 19 (1):3–20. doi: 10.1111/1541-4337.12507.
  • Narayanankutty, A., A. Sasidharan, J. T. Job, R. Rajagopal, A. Alfarhan, Y. O. Kim, and H. J. Kim. 2021. Mango ginger (Curcuma amada Roxb.) rhizome essential oils as source of environmental friendly biocides: Comparison of the chemical composition, antibacterial, insecticidal and larvicidal properties of essential oils extracted by different methods. Environmental Research 202:111718. doi: 10.1016/j.envres.2021.111718.
  • Nargesi, M. R., F. Bagheri, S. Shahriari, and R. Tahvilian. 2018. Comparison of ultrasonic assist head space solid-phase microextraction and classic hydrodistillation methods for the identification of essential oil in fruits and leaves of Pistacia atlantica. Indian Journal of Natural Products and Resources 9 (1):28–33.
  • Narnoliya, L. K., J. S. Jadaun, and S. P. Singh. 2019. The phytochemical composition, biological effects and biotechnological approaches to the production of high-value essential oil from geranium. Essential Oil Research 9:327–52.
  • Negin, G., S. Ali Mortazavi, F. Tabatabaei Yazdi, and M. Morteza. 2020. Microwave-assisted hydrodistillation extraction of essential oil from coriander seeds and evaluation of their composition, antioxidant and antimicrobial activity. Heliyon 6 (9):e04893. doi: 10.1016/j.heliyon.2020.e04893.
  • Nutrizio, M., J. Gajdoš Kljusurić, Z. Marijanović, I. Dubrović, M. Viskić, E. Mikolaj, F. Chemat, and A. Režek Jambrak. 2020. The potential of high voltage discharges for green solvent extraction of bioactive compounds and aromas from rosemary (Rosmarinus officinalis L.)-computational simulation and experimental methods. Molecules 25 (16):3711. doi: 10.3390/molecules25163711.
  • Nutrizio, M., N. Maltar-Strmečki, F. Chemat, B. Duić, and A. R. Jambrak. 2021. High-voltage electrical discharges in green extractions of bioactives from oregano leaves (Origanum vulgare L.) using water and ethanol as green solvents assessed by theoretical and experimental procedures. Food Engineering Reviews 13 (1):161–74. doi: 10.1007/s12393-020-09231-2.
  • Oliveira, R. C., M. Carvajal-Moreno, P. Mercado-Ruaro, F. Rojo-Callejas, and B. Correa. 2020. Essential oils trigger an antifungal and anti-aflatoxigenic effect on Aspergillus flavus via the induction of apoptosis-like cell death and gene regulation. Food Control. 110:107038. doi: 10.1016/j.foodcont.2019.107038.
  • Orchard, A., and S. van Vuuren. 2017. Commercial essential oils as potential antimicrobials to treat skin diseases. Evidence-Based Complementary and Alternative Medicine: eCAM 2017:4517971. doi: 10.1155/2017/4517971.
  • Özcan, M. M., and D. Arslan. 2011. Antioxidant effect of essential oils of rosemary, clove and cinnamon on hazelnut and poppy oils. Food Chemistry 129 (1):171–4. doi: 10.1016/j.foodchem.2011.01.055.
  • Ozogul, Y., E. Kuley Boğa, I. Akyol, M. Durmus, Y. Ucar, J. M. Regenstein, and A. R. Köşker. 2020. Antimicrobial activity of thyme essential oil nanoemulsions on spoilage bacteria of fish and food-borne pathogens. Food Bioscience 36:100635. doi: 10.1016/j.fbio.2020.100635.
  • Pabast, M., N. Shariatifar, S. Beikzadeh, and G. Jahed. 2018. Effects of chitosan coatings incorporating with free or nano-encapsulated Satureja plant essential oil on quality characteristics of lamb meat. Food Control. 91:185–92. doi: 10.1016/j.foodcont.2018.03.047.
  • Pavlic, B., L. Pezo, B. Maric, L. P. Tukuljac, Z. Zekovic, M. B. Solarov, and N. Teslic. 2020. Supercritical fluid extraction of raspberry seed oil: Experiments and modelling. The Journal of Supercritical Fluids 157:104687. doi: 10.1016/j.supflu.2019.104687.
  • Perino-Issartier, S., C. Ginies, G. Cravotto, and F. Chemat. 2013. A comparison of essential oils obtained from lavandin via different extraction processes: Ultrasound, microwave, turbohydrodistillation, steam and hydrodistillation. Journal of Chromatography. A 1305:41–7. doi: 10.1016/j.chroma.2013.07.024.
  • Perino, S., Z. Chemat-Djenni, E. Petitcolas, C. Ginies, and F. Chemat. 2019. Downscaling of industrial turbo-distillation to laboratory turbo-Clevenger for extraction of essential oils. Application of concepts of green analytical chemistry. Molecules 24 (15):2734. doi: 10.3390/molecules24152734.
  • Perricone, M., E. Arace, M. R. Corbo, M. Sinigaglia, and A. Bevilacqua. 2015. Bioactivity of essential oils: A review on their interaction with food components. Frontiers in Microbiology 6:76. doi: 10.3389/fmicb.2015.00076.
  • Piryaei, M., and M. Babashpour-Asl. 2021. Carbon nanotube/layered double hydroxide nanocomposite as a fibre coating for determination the essential oils of Achillea eriophora DC with the headspace solid-phase microextraction. Natural Product Research 35 (7):1217–20. doi: 10.1080/14786419.2019.1643856.
  • Plati, F., and A. Paraskevopoulou. 2022. Micro- and nano-encapsulation as tools for essential oils advantages’ exploitation in food applications: The case of oregano essential oil. Food and Bioprocess Technology 15 (5):949–77. doi: 10.1007/s11947-021-02746-4.
  • Pontes-Quero, G. M., S. Esteban-Rubio, J. Perez Cano, M. R. Aguilar, and B. Vazquez-Lasa. 2021. Oregano essential oil micro- and nanoencapsulation with bioactive properties for biotechnological and biomedical applications. Frontiers in Bioengineering and Biotechnology 9:703684. doi: 10.3389/fbioe.2021.703684.
  • Procentese, A., E. Johnson, V. Orr, A. G. Campanile, J. A. Wood, A. Marzocchella, and L. Rehmann. 2015. Deep eutectic solvent pretreatment and subsequent saccharification of corncob. Bioresource Technology 192:31–6. doi: 10.1016/j.biortech.2015.05.053.
  • Purwasena, D. I., I. Astuti, F. Z. Taufik, and Putri, I. A. 2020. The potential of clove essential oil microemulsion as an alternative biocide against Pseudomonas aeruginosa biofilm. Journal of Pure and Applied Microbiology 14 (1):261–9. doi: 10.22207/JPAM.14.1.27.
  • Qin, D., and J. Xi. 2021. Flash extraction: An ultra-rapid technique for acquiring bioactive compounds from plant materials. Trends in Food Science & Technology 112:581–91. doi: 10.1016/j.tifs.2021.04.025.
  • Radivojac, A., O. Bera, Z. Zeković, N. Teslić, Ž. Mrkonjić, D. Bursać Kovačević, P. Putnik, and B. Pavlić. 2021. Extraction of peppermint essential oils and lipophilic compounds: Assessment of process kinetics and environmental impacts with multiple techniques. Molecules 26 (10):2879. doi: 10.3390/molecules26102879.
  • Rai, M., P. Paralikar, P. Jogee, G. Agarkar, A. P. Ingle, M. Derita, and S. Zacchino. 2017. Synergistic antimicrobial potential of essential oils in combination with nanoparticles: Emerging trends and future perspectives. International Journal of Pharmaceutics 519 (1–2):67–78. doi: 10.1016/j.ijpharm.2017.01.013.
  • Ramos, M., A. Jiménez, and M. C. Garrigós. 2019. Il-based advanced techniques for the extraction of value-added compounds from natural sources and food by-products. TrAC - Trends in Analytical Chemistry 119:115616. doi: 10.1016/j.trac.2019.07.027.
  • Rao, M. V., A. S. Sengar, C. K. Sunil, and A. Rawson. 2021. Ultrasonication-A green technology extraction technique for spices: A review. Trends in Food Science & Technology 116:975–91. doi: 10.1016/j.tifs.2021.09.006.
  • Rashed, M. M. A., A. D. S. Ghaleb, J. Li, A. Nagi, Y. Hua-wei, Z. Wen-You, and Q. Tong. 2018. Enhancement of mass transfer intensification for essential oil release from Lavandula pubescence using integrated ultrasonic-microwave technique and enzymatic pretreatment. ACS Sustainable Chemistry & Engineering 6 (2):1639–49. doi: 10.1021/acssuschemeng.7b02860.
  • Rashidi, S., M. H. Eikani, and M. Ardjmand. 2018. Extraction of Hyssopus officinalis L. essential oil using instant controlled pressure drop process. Journal of Chromatography. A 1579:9–19. doi: 10.1016/j.chroma.2018.10.020.
  • Riahi, L., H. Chograni, M. Elferchichi, Y. Zaouali, N. Zoghlami, and A. Mliki. 2013. Variations in Tunisian wormwood essential oil profiles and phenolic contents between leaves and flowers and their effects on antioxidant activities. Industrial Crops and Products 46:290–6. doi: 10.1016/j.indcrop.2013.01.036.
  • Ribeiro-Santos, R., M. Andrade, N. R. de Melo, and A. Sanches-Silva. 2017. Use of essential oils in active food packaging: Recent advances and future trends. Trends in Food Science & Technology 61:132–40. doi: 10.1016/j.tifs.2016.11.021.
  • Romero, V., I. Lavilla, A. Alvarez, C. Bendicho, B. Espina, and L. M. Salonen. 2022. Covalent organic framework as adsorbent for ultrasound-assisted dispersive (micro)solid phase extraction of polycyclic synthetic fragrances from seawater followed by fluorescent determination. Analytica Chimica Acta 1191:339293. doi: 10.1016/j.aca.2021.339293.
  • Sadowska, U., A. Matwijczuk, A. Niemczynowicz, T. Dróżdż, and A. Żabiński. 2019. Spectroscopic examination and chemometric analysis of essential oils obtained from peppermint herb (Mentha piperita L.) and caraway fruit (Carum carvi L.) subjected to pulsed electric fields. Processes 7 (7):466. doi: 10.3390/pr7070466.
  • Samadi, M., Z. Zainal Abidin, H. Yoshida, R. Yunus, D. R. Awang Biak, C. H. Lee, and E. H. Lok. 2020. Subcritical water extraction of essential oil from Aquilaria malaccensis leaves. Separation Science and Technology 55 (15):2779–98. doi: 10.1080/01496395.2019.1650768.
  • Sangsuwan, J., and S. Sutthasupa. 2019. Effect of chitosan and alginate beads incorporated with lavender, clove essential oils, and vanillin against Botrytis cinerea and their application in fresh table grapes packaging system. Packaging Technology and Science 32 (12):595–605. doi: 10.1002/pts.2476.
  • Shah, S., M. Hafeez, M. Y. Wu, S. S. Zhang, M. Ilyas, G. Wu, and F. L. Yang. 2020. Downregulation of chitin synthase A gene by diallyl trisulfide, an active substance from garlic essential oil, inhibits oviposition and alters the morphology of adult Sitotroga cerealella. Journal of Pest Science 93 (3):1097–106. doi: 10.1007/s10340-020-01226-6.
  • Shang, C., H. Lin, X. Fang, Y. Wang, Z. Jiang, Y. Qu, M. Xiang, Z. Shen, L. Xin, Y. Lu, et al. 2021. Beneficial effects of cinnamon and its extracts in the management of cardiovascular diseases and diabetes. Food & Function 12 (24):12194–220. doi: 10.1039/d1fo01935j.
  • Sharanyakanth, P. S., R. Lokeswari, and R. Mahendran. 2021. Plasma bubbling effect on essential oil yield, extraction efficiency, and flavor compound of Cuminum cyminum L. seeds. Journal of Food Process Engineering 44 (7):13730. doi: 10.1111/jfpe.13730.
  • Sharifzadeh, S., S. Karimi, H. Abbasi, and M. Assari. 2022. Sequential ultrasound-microwave technique as an efficient method for extraction of essential oil from Lavandula coronopifolia Poir. Journal of Food Measurement and Characterization 16 (1):377–90. doi: 10.1007/s11694-021-01170-8.
  • Shi, H., M. Zhang, and B. Adhikari. 2018. Advances of electronic nose and its application in fresh foods: A review. Critical Reviews in Food Science and Nutrition 58 (16):2700–10. doi: 10.1080/10408398.2017.1327419.
  • Skalicka-Woźniak, K., M. Walasek, A. Ludwiczuk, and K. Głowniak. 2013. Isolation of terpenoids from Pimpinella anisum essential oil by high-performance counter-current chromatography. Journal of Separation Science 36 (16):2611–4. doi: 10.1002/jssc.201300407.
  • Smigielski, K., R. Prusinowska, A. Stobiecka, A. Kunicka-Styczynska, and R. Gruska. 2018. Biological properties and chemical composition of essential oils from flowers and aerial parts of lavender (Lavandula angustifolia). Journal of Essential Oil Bearing Plants 21 (5):1303–14. doi: 10.1080/0972060X.2018.1503068.
  • Sneha, K., A. Narayanankutty, J. T. Job, O. J. Olatunji, A. Alfarhan, A. C. Famurewa, and V. Ramesh. 2022. Antimicrobial and larvicidal activities of different ocimum essential oils extracted by ultrasound-assisted hydrodistillation. Molecules 27 (5):1456. doi: 10.3390/molecules27051456.
  • Solanki, K. P., M. A. Desai, and J. K. Parikh. 2018. Sono hydrodistillation for isolation of citronella oil: A symbiotic effect of sonication and hydrodistillation towards energy efficiency and environment friendliness. Ultrasonics Sonochemistry 49:145–53. doi: 10.1016/j.ultsonch.2018.07.038.
  • Somrani, M., M. C. Ingles, H. Debbabi, F. Abidi, and A. Palop. 2020. Garlic, onion, and cinnamon essential oil anti-biofilms’ effect against Listeria monocytogenes. Foods 9 (5):567. doi: 10.3390/foods9050567.
  • Stanojević, L. P., Z. B. Todorović, K. S. Stanojević, J. S. Stanojević, D. Z. Troter, L. B. Nikolić, and B. Đorđević. 2021. The influence of natural deep eutectic solvent glyceline on the yield, chemical composition and antioxidative activity of essential oil from rosemary (Rosmarinus officinalis L.) leaves. Journal of Essential Oil Research 33 (3):247–55. doi: 10.1080/10412905.2021.1873867.
  • Su, Y., M. Zhang, B. Bhandari, and W. Zhang. 2018. Enhancement of water removing and the quality of fried purple-fleshed sweet potato in the vacuum frying by combined power ultrasound and microwave technology. Ultrasonics Sonochemistry 44:368–79. doi: 10.1016/j.ultsonch.2018.02.049.
  • Sun, Q., M. Zhang, and A. S. Mujumdar. 2019. Recent developments of artificial intelligence in drying of fresh food: A review. Critical Reviews in Food Science and Nutrition 59 (14):2258–75. doi: 10.1080/10408398.2018.1446900.
  • Tanapichatsakul, C., S. Khruengsai, and P. Pripdeevech. 2020. In vitro and in vivo antifungal activity of Cuminum cyminum essential oil against Aspergillus aculeatus causing bunch rot of postharvest grapes. PLoS One 15 (11):e0242862. doi: 10.1371/journal.pone.0242862.
  • Tang, B., H. Zhang, and K. H. Row. 2015. Application of deep eutectic solvents in the extraction and separation of target compounds from various samples. Journal of Separation Science 38 (6):1053–64. doi: 10.1002/jssc.201401347.
  • Tariq, S., S. Wani, W. Rasool, K. Shafi, M. A. Bhat, A. Prabhakar, A. H. Shalla, and M. A. Rather. 2019. A comprehensive review of the antibacterial, antifungal and antiviral potential of essential oils and their chemical constituents against drug-resistant microbial pathogens. Microbial Pathogenesis 134:103580. doi: 10.1016/j.micpath.2019.103580.
  • Teng, X., M. Zhang, and S. Devahastin. 2019. New developments on ultrasound-assisted processing and flavor detection of spices: A review. Ultrasonics Sonochemistry 55:297–307. doi: 10.1016/j.ultsonch.2019.01.014.
  • Terenina, M. B., T. A. Misharina, N. I. Krikunova, E. S. Alinkina, L. D. Fatkulina, and A. K. Vorob’yova. 2011. Oregano essential oil as an inhibitor of higher fatty acid oxidation. Applied Biochemistry and Microbiology 47 (4):445–9. doi: 10.1134/S0003683811040181.
  • Tian, H. X., Z. Y. Lu, D. F. Li, and J. Hu. 2018. Preparation and characterization of citral-loaded solid lipid nanoparticles. Food Chemistry 248:78–85. doi: 10.1016/j.foodchem.2017.11.091.
  • Tunç, M. T., and İ. Koca. 2019. Ohmic heating assisted hydrodistillation of clove essential oil. Industrial Crops and Products 141:111763. doi: 10.1016/j.indcrop.2019.111763.
  • Tunç, M. T., and İ. Koca. 2021. Optimization of ohmic heating assisted hydrodistillation of cinnamon and bay leaf essential oil. Journal of Food Process Engineering 44 (3):13635. doi: 10.1111/jfpe.13635.
  • Tunç, M. T., and H. İ. Odabaş. 2021. Single-step recovery of pectin and essential oil from lemon waste by ohmic heating assisted extraction/hydrodistillation: A multi-response optimization study. Innovative Food Science & Emerging Technologies 74:102850. doi: 10.1016/j.ifset.2021.102850.
  • Tzima, K., N. P. Brunton, J. G. Lyng, D. Frontuto, and D. K. Rai. 2021. The effect of pulsed electric field as a pre-treatment step in ultrasound assisted extraction of phenolic compounds from fresh rosemary and thyme by-products. Innovative Food Science & Emerging Technologies 69:102644. doi: 10.1016/j.ifset.2021.102644.
  • Usuki, T., and K. Munakata. 2017. Extraction of essential oils from the flowers of Osmanthus fragrans var. aurantiacus using an ionic liquid. Bulletin of the Chemical Society of Japan 90 (10):1105–10. doi: 10.1246/bcsj.20170202.
  • Uwineza, P. A., and A. Waśkiewicz. 2020. Recent advances in supercritical fluid extraction of natural bioactive compounds from natural plant materials. Molecules 25 (17):3847. doi: 10.3390/molecules25173847.
  • Vanda, H., Y. T. Dai, E. G. Wilson, R. Verpoorte, and Y. H. Choi. 2018. Green solvents from ionic liquids and deep eutectic solvents to natural deep eutectic solvents. Comptes Rendus Chimie 21 (6):628–38. doi: 10.1016/j.crci.2018.04.002.
  • Varghese, S. A., S. Siengchin, and J. Parameswaranpillai. 2020. Essential oils as antimicrobial agents in biopolymer-based food packaging - A comprehensive review. Food Bioscience 38:100785. doi: 10.1016/j.fbio.2020.100785.
  • Vorobiev, E., and N. Lebovka. 2016. Extraction from foods and biomaterials enhanced by pulsed electric energy. In Innovative food processing technologies, 31–56. Sawston, UK: Woodhead Publishing.
  • Waheed, A., S. Akram, R. Ashraf, M. Mushtaq, and A. Adnan. 2020. Kinetic model and optimization for enzyme‐assisted hydrodistillation of d‐limonene‐rich essential oil from orange peel. Flavour and Fragrance Journal 35 (5):561–9. doi: 10.1002/ffj.3598.
  • Wang-di, S., L. Pan-Pan, and C. Wen. 2018. Study on the main components of lavender essential oil of molecular distillation purification by HS-SPME-GC. Science and Technology of Food Industry (2):196–206.
  • Wang, Y., R. Li, Z.-T. Jiang, J. Tan, S.-H. Tang, T.-T. Li, L.-L. Liang, H.-J. He, Y.-M. Liu, J.-T. Li, et al. 2018. Green and solvent-free simultaneous ultrasonic-microwave assisted extraction of essential oil from white and black peppers. Industrial Crops and Products 114:164–72. doi: 10.1016/j.indcrop.2018.02.002.
  • Wu, X. F., M. Zhang, A. S. Mujumdar, and C. H. Yang. 2020. Effect of ultrasound-assisted osmotic dehydration pretreatment on the infrared drying of Pakchoi Stems. Drying Technology 38 (15):2015–26. doi: 10.1080/07373937.2019.1608232.
  • Xia, S., G. A. Baker, H. Li, S. Ravula, and H. Zhao. 2014. Aqueous ionic liquids and deep eutectic solvents for cellulosic biomass pretreatment and saccharification. RSC Advances 4 (21):10586–96. doi: 10.1039/C3RA46149A.
  • Xiong, K., and Y. Chen. 2020. Supercritical carbon dioxide extraction of essential oil from tangerine peel: Experimental optimization and kinetics modelling. Chemical Engineering Research and Design 164:412–23. doi: 10.1016/j.cherd.2020.09.032.
  • Xu, F. X., J. Y. Zhang, J. Jin, Z. G. Li, Y. B. She, and M. R. Lee. 2021. Microwave-assisted natural deep eutectic solvents pretreatment followed by hydrodistillation coupled with GC-MS for analysis of essential oil from turmeric (Curcuma longa L.). Journal of Oleo Science 70 (10):1481–94. doi: 10.5650/jos.ess20368.
  • Xuan Truong, D., N. Thao Thi, N. Van Xa, T. Kien Trung, V. Tuan Anh, and P. Huong Lan. 2021. Experimentation and dynamic modeling of batch packed distillation for star anise essential oil purification. Separation Science and Technology. doi: 10.1080/01496395.2021.2002894.
  • Yang, Y.-C., C.-S. Wang, and M.-C. Wei. 2020. Development and validation of an ultrasound-assisted supercritical carbon-dioxide procedure for the production of essential oils from Perilla frutescens. LWT - Food Science and Technology 128:109503. doi: 10.1016/j.lwt.2020.109503.
  • Yang, Y. C., and M. C. Wei. 2018. Development and characterization of a green procedure for apigenin extraction from Scutellaria barbata D. Don. Food Chemistry 252:381–9. doi: 10.1016/j.foodchem.2017.12.086.
  • Yu, G.-W., Q. Cheng, J. Nie, X.-J. Wang, P. Wang, Z.-G. Li, and M.-R. Lee. 2018. Microwave hydrodistillation based on deep eutectic solvent for extraction and analysis of essential oil from three amomum species using gas chromatography-mass spectrometry. Chromatographia 81 (4):657–67. doi: 10.1007/s10337-018-3482-8.
  • Zeković, Z., M. Kaplan, B. Pavlić, E. O. Olgun, J. Vladić, O. Canlı, and S. Vidović. 2016. Chemical characterization of polyphenols and volatile fraction of coriander (Coriandrum sativum L.) extracts obtained by subcritical water extraction. Industrial Crops and Products 87:54–63. doi: 10.1016/j.indcrop.2016.04.024.
  • Zhang, H. Y., Y. Liang, X. L. Li, and H. B. Kang. 2020. Effect of chitosan-gelatin coating containing nano-encapsulated tarragon essential oil on the preservation of pork slices. Meat Science 166:108137. doi: 10.1016/j.meatsci.2020.108137.
  • Zhang, M., J. Tang, A. S. Mujumdar, and S. Wang. 2006. Trends in microwave-related drying of fruits and vegetables. Trends in Food Science & Technology 17 (10):524–34. doi: 10.1016/j.tifs.2006.04.011.
  • Zhang, Q., W. Gao, Y. Guo, Y. Li, X. Cao, W. Xu, L. Yang, and F. Chen. 2020. Aqueous enzyme-ultrasonic pretreatment for efficient isolation of essential oil from Artemisia argyi and investigation on its chemical composition and biological activity. Industrial Crops and Products 158:113031. doi: 10.1016/j.indcrop.2020.113031.
  • Zhang, Q. W., L. G. Lin, and W. C. Ye. 2018. Techniques for extraction and isolation of natural products: a comprehensive review. Chinese Medicine 13:20. doi: 10.1186/s13020-018-0177-x.
  • Zhang, X., H. Zhu, J. Wang, F. Li, J. Wang, X. Ma, J. Li, Y. Huang, Z. Liu, L. Zhang, et al. 2022. Anti-microbial activity of citronella (Cymbopogon citratus) essential oil separation by ultrasound assisted ohmic heating hydrodistillation. Industrial Crops and Products 176:114299. doi: 10.1016/j.indcrop.2021.114299.
  • Zhao, Y., Y. Y. Fan, W. G. Yu, J. Wang, W. Lu, and X. Q. Song. 2019. Ultrasound-enhanced subcritical fluid extraction of essential oil from Nymphaea alba var and its antioxidant activity. Journal of AOAC International 102 (5):1448–54. doi: 10.5740/jaoacint.18-0337.
  • Zheng, J., Y. Zhou, Y. Li, D. P. Xu, S. Li, and H. B. Li. 2016. Spices for prevention and treatment of cancers. Nutrients 8 (8):495. doi: 10.3390/nu8080495.
  • Zhu, Y. L., C. Z. Li, H. Y. Cui, and L. Lin. 2021. Encapsulation strategies to enhance the antibacterial properties of essential oils in food system. Food Control 123:107856. doi: 10.1016/j.foodcont.2020.107856.
  • Žlabur, J. Š., S. Voća, M. Brnč=ić, and S. Rimac-Brnč=ić. 2018. New trends in food technology for green recovery of bioactive compounds from plant materials. In Role of materials science in food bioengineering, 1–36. Cambridge, MA: Academic Press.
  • Zorga, J., A. Kunicka-Styczyńska, R. Gruska, and K. Śmigielski. 2020. Ultrasound-assisted hydrodistillation of essential oil from celery seeds (Apium graveolens L.) and its biological and aroma profiles. Molecules 25 (22):5322. doi: 10.3390/molecules25225322.
  • Zou, H. N., N. Zhao, X. J. Shi, S. Sun, and C. P. Yu. 2020. Modifying the physicochemical and functional properties of water-soluble protein from mussels by high-pressure homogenization treatment. International Journal of Food Engineering 16 (3):0274. doi: 10.1515/ijfe-2019-0274.

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