Optimization of Distillation Process for Scale-up Production of Lavender Essential Oil: A Literature Review
DOI:
https://doi.org/10.33394/hjkk.v12i5.12920Keywords:
lavender, essential oil, extraction, distillationAbstract
Lavender essential oil being one of the most used essential oils. Oxygenated monoterpenes are the largest constituent of lavender essential oil and the determinant of the characteristic aroma produced. Lavender flowers are composed of several ingredients, such as essential oils, alpha-pinene, beta-myrcene, limonene, cineol, linalool, terpinine-4-ol, and linalyl acetate. The aim of this study is to develop an efficient, effective, and profitable method of lavender oil extraction that can be used for commercial scale production, in order to determine which method is most suitable for scale-up production. The method used in this study is literature review with the results of literature reviews conducted, the method with the highest percentage of essential oil components is the use of innovative methods such as extraction with the help of microwaves (MW) with the percentage of linalool (32.90%) linaly acetate (27%), extraction with the help of ultrasonic (AS) with the percentage of linalool (37.6% ), linalyl acetate (18.4%)., supercritical fluid extraction (SF) with linalool (24%), extraction, and negative pressure extraction (NPCE) with linalool percentage (27.18%) linaly acetate (25.23%). While the smallest percentage of essential oil components in the use of molecular distillation is the percentage of Linalool (4.56%), linaly acetate (12.78%). The originality of this research contribution can open the door for further research and wider practical applications.
References
Agustien, N. D., Ismail, A. M., Dhamayanthi, W., & Ambarkahi, R. P. Y. (2021). Analisis Pengembangan Usaha Agroindustri Minyak Atsiri pada UD Barokah Atsiri Jember. Jurnal Manajemen Agribisnis dan Agroindustri, 1(1), 32–41. https://doi.org/10.25047/jmaa.v1i1.7
Ariawan, I. M. D., Dewi, N. W. T., & Sudiarsa, I. W. (2020). Analisis dan Karakterisasi Minyak Atsiri Lavender danPeppermint dengan Kromatografi Gas-Spektroskopi Massa (GC-MS).
Caroline, I. R. (2022). Kajian Pustaka: Efektivitas Penggunaan Minyak Atsiri Sebagai Aromaterapi. 11(2).
Data Ekspor Impor—Badan Pusat Statistik Indonesia. (t.t.). Diambil 18 Juni 2024, dari https://www.bps.go.id/id/exim
Dębczak, A., Tyśkiewicz, K., Fekner, Z., Kamiński, P., Florkowski, G., Konkol, M., Rój, E., Grzegorczyk, A., & Malm, A. (2022). Molecular Distillation of Lavender Supercritical Extracts: Physicochemical and Antimicrobial Characterization of Feedstocks and Assessment of Distillates Enriched with Oxygenated Fragrance Components. Molecules, 27(5), 1470. https://doi.org/10.3390/molecules27051470
Dewi, I. A. M., & Masfuri, M. (2021). Inhalasi Aromaterapi Lavender terhadap Komplikasi Hemodialisis pada Pasien Gagal Ginjal Kronis. Jurnal Keperawatan Silampari, 5(1), 348–362. https://doi.org/10.31539/jks.v5i1.2956
Dewi, L. K., Friatnasary, D. L., Herawati, W., & Nurhadianty, V. (2018). Studi Perbandingan Metode Isolasi Ekstraksi Pelarut dan Destilasi Uap Minyak Atsiri Kemangi terhadap Komposisi Senyawa Aktif. 2(1).
Drabińska, N., Marcinkowska, M. A., Wieczorek, M. N., & Jeleń, H. H. (2023). Application of Sorbent-Based Extraction Techniques in Food Analysis. Molecules, 28(24), 7985. https://doi.org/10.3390/molecules28247985
Efendi, E., Fauzi, A. M., Machfud, M., & Sukardi, S. (2014). Rancang Bangun Sistem Peningkatan Kinerja Rantai Pasok Industri Minyak Atsiri. Jurnal Manajemen Teknologi, 13(2), 126–153. https://doi.org/10.12695/jmt.2014.13.2
Emalia, Z., Awaluddin, I., Fajarini, D., & Perdana, F. S. (2023). Penerapan Ekonomi Sirkular melalui Pembuatan Lilin Aroma Terapi Dari Minyak Bekas. BEGAWI : Jurnal Pengabdian Kepada Masyarakat, 1(1), 38–42. https://doi.org/10.23960/begawi.v1i1.7
Eslahi, H., Fahimi, N., & Sardarian, A. R. (2017). Chemical Composition of Essential Oils. Dalam Seyed Mohammad Bagher Hashemi, A. Mousavi Khaneghah, & A. De Souza Sant'Ana (Ed.), Essential Oils in Food Processing (1 ed., hlm. 119–171).Wiley.https://doi.org/10.1002/9781119149392.ch4
Fachrudin, F., Velayas, A. I., Mahfud, M., & Qadariyah, L. (2016). Ekstraksi Minyak Bunga Cempaka dengan Metode Hidrodistilasi dan Hidrodistilasi dengan Aliran Udara [Journal:eArticle, Institut Teknologi Sepuluh Nopember]. Dalam Jurnal Teknik ITS (Vol. 5, Nomor 2, hlm. 214192).https://doi.org/10.12962/j23373539.v5i2.16788
Fitri, N., & Mohammad, D. (2015). Pengembangan Model Techno-Industrial Cluster Minyak Atsiri. AJIE, 4(3), 181–190.https://doi.org/10.20885/ajie.vol4.iss3.art5
Gavahian, M., & Chu, Y.-H. (2018). Ohmic accelerated steam distillation of essential oil from lavender in comparison with conventional steam distillation. Innovative Food Science & Emerging Technologies, 50, 34–41. https://doi.org/10.1016/j.ifset.2018.10.006
Gul, O., Dar, A. H., Dash, K. K., BhagyaRaj, G., Khan, S. A., Sultan, U., Ayoub, W. S., Zahoor, I., Rasool, S., & Dwivedi, M. (2023). Essential oil extraction from lavender using negative pressure cavitation extraction and coating to extend grape shelf life. Applied Food Research, 3(2), 100335. https://doi.org/10.1016/j.afres.2023.100335
Guo, X., & Wang, P. (2020). Aroma Characteristics of Lavender Extract and Essential Oil from Lavandula angustifolia Mill. Molecules, 25(23), 5541.https://doi.org/10.3390/molecules25235541
Hedayati, S., Tarahi, M., Iraji, A., & Hashempur, M. H. (2024). Recent developments in the encapsulation of lavender essential oil. Advances in Colloid and Interface Science, 331, 103229.https://doi.org/10.1016/j.cis.2024.103229
Liu, B., Fu, J., Zhu, Y., & Chen, P. (2018). Optimization of Microwave-assisted Extraction of Essential Oil from Lavender Using Response Surface Methodology. Journal of Oleo Science, 67(10), 1327–1337. https://doi.org/10.5650/jos.ess18019
Lupia, C., Castagna, F., Bava, R., Naturale, M. D., Zicarelli, L., Marrelli, M., Statti, G., Tilocca, B., Roncada, P., Britti, D., & Palma, E. (2024). Use of Essential Oils to Counteract the Phenomena of Antimicrobial Resistance in Livestock Species. Antibiotics, 13(2), Article 2. https://doi.org/10.3390/antibiotics13020163
Mounika, A., Ilangovan, B., Mandal, S., Shraddha Yashwant, W., Priya Gali, S., & Shanmugam, A. (2022). Prospects of ultrasonically extracted food bioactives in the field of non-invasive biomedical applications – A review. Ultrasonics Sonochemistry, 89,106121.https://doi.org/10.1016/j.ultsonch.2022.106121
Nguyen, T.-D., Riordan-Short, S., Dang, T.-T. T., O’Brien, R., & Noestheden, M. (2020). Quantitation of Select Terpenes/Terpenoids and Nicotine Using Gas Chromatography–Mass Spectrometry with High-Temperature Headspace Sampling. ACS Omega, 5(10), 5565–5573. https://doi.org/10.1021/acsomega.0c00384
Nugraha, Aviasti, Nasution, A., Amaranti, R., Mulyati, D. S., & Nursagita, C. (2019). Pemanfaatan Minyak Atsiri Jenis Sereh Wangi: Budidaya, Penyulingan dan Perkembangan Teknologi. Unisba Press.
Nuriska, H., Mulyanti, D., & Aryani, R. (2023). Karakterisasi Minyak Lavender (Lavandula angustifolia) Untuk Alternatif Bahan Aktif Sediaan Farmasi. Bandung Conference Series: Pharmacy,483–486. https://doi.org/10.29313/bcsp.v3i2.84
Radwan, M. N., Morad, M. M., Ali, M. M., & Wasfy, K. I. (2020). A solar steam distillation system for extracting lavender volatile oil. Energy Reports, 6, 30803087.https://doi.org/10.1016/j.egyr.2020.11.034
Sari, D. I. K., Nugraha, D. A., & Taufani, W. P. (2022). Studi Formulasi, Karakterisasi, Dan Hedonik Sediaan Body Scrub Minyak Atsiri Bunga Lavender (Lavandula angustifolia). 3(3).
Sihite, J. S. (2022). Ulasan Efektivitas Ekstrak Lavender (Lavandula Angustifolia) Terhadap Nyamuk (Culex Sp.) Sebagai Diffuser Organik. Journal of Innovation Research and Knowledge, 1(11), Article 11.
Sipahelut, S. G. (2019). Perbandingan Komponen Aktif Minyak Atsiri dari Daging Buah Pala Kering Cabinet Dryer Melalui Metode Distilasi Air dan Air-Uap. AGRITEKNO: Jurnal Teknologi Pertanian, 8(1), Article 1. https://doi.org/10.30598/jagritekno.2019.8.1.8
Tyśkiewicz, K., Konkol, M., & Rój, E. (2019). Supercritical Carbon Dioxide (scCO2) Extraction of Phenolic Compounds from Lavender (Lavandula angustifolia) Flowers: A Box-Behnken Experimental Optimization. Molecules, 24(18), 3354.https://doi.org/10.3390/molecules24183354
Wainer, J., Thomas, A., Chimhau, T., & Harding, K. G. (2022). Extraction of Essential Oils from Lavandula × intermedia ‘Margaret Roberts’ Using Steam Distillation, Hydrodistillation, and Cellulase-Assisted Hydrodistillation: Experimentation and Cost Analysis. Plants, 11(24), 3479.https://doi.org/10.3390/plants11243479
Downloads
Published
How to Cite
Issue
Section
Citation Check
License
License and Publishing Agreement
In submitting the manuscript to the journal, the authors certify that:
- They are authorized by their co-authors to enter into these arrangements.
- The work described has not been formally published before, except in the form of an abstract or as part of a published lecture, review, thesis, or overlay journal.
- That it is not under consideration for publication elsewhere,
- That its publication has been approved by all the author(s) and by the responsible authorities – tacitly or explicitly – of the institutes where the work has been carried out.
- They secure the right to reproduce any material that has already been published or copyrighted elsewhere.
- They agree to the following license and publishing agreement.
Copyright
Authors who publish with Hydrogen: Jurnal Kependidikan Kimia agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License (CC BY-SA 4.0) that allows others to share the work with an acknowledgment of the work's authorship and initial publication in this journal.Â
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgment of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work.
Licensing for Data Publication
Hydrogen: Jurnal Kependidikan Kimia uses a variety of waivers and licenses, that are specifically designed for and appropriate for the treatment of data: Open Data Commons Attribution License, http://www.opendatacommons.org/licenses/by/1.0/ (default) Other data publishing licenses may be allowed as exceptions (subject to approval by the editor on a case-by-case basis) and should be justified with a written statement from the author, which will be published with the article.