Characteristics of cold pressed product of Coriandrum sativum l. and perspectives for application

Authors

  • Ana Dobreva Institute of roses, essential and medical cultures, Kazanlak, Agricultural academy, Sofia, Bulgaria Author

Keywords:

cold pressing; composition; Coriandrum sativum L.; yield

Abstract

The quantitative and qualitative characteristics of cold-pressed coriander extract revealed it is a combination of essential and glyceride oil in a ratio of 5:95. Compared to other „Green“ technologies, the production method is characterized by simplicity, efficiency (yield 5.00 ± 0.09%) and preservation of naturalness of the raw material to the maximum extent. The volatiles consist mainly of linanol (69.7%) and non-volatile phase - from unsaturated fatty acids such as oleic (C18: 1) - 80% and linoleic (C18: 2) - 14%. This composition makes it directly applicable in products for the food industry.

References

Angelova, D. & Bazitov, V. (2014). Study of the efficacy of some soil herbicides and their effect on coriander yield (Coriandrum sativum L.). In: 70 years of the Institute of Tobacco and Tobacco products, Proceedings of International Scientific Conference, 2-6 ( Bg)

Atanasova T., Girova, T., Gochev, V., Stoilova, I., Nenov, N., Stoyanova, M. & Stoyanova, A. (2010). Low temperature extraction of essential oil bearing plants by liquificate gases. 5. Fruits from coriander (Coriandrum sativum L.), Scientific Works of University of Food Technologies, vol. 57, no. 1, 363–368.

Benelli, G., Flamini, G., Fiore, G., Cioni, P., L. & Conti, B. (2013). Larvicidal and repellent activity of the essential oil of Coriandrum sativum L. (Apiaceae) fruits against the filariasis vector Aedes albopictus Skuse (Diptera: Culicidae). Parasitology Research, Vol. 112, 3, 1155–1161.

Coriander oil. (Coriandrum sativum L.) ISO 3516: 1997. International Standard Organization, Switzerland. https://www.iso.org/standard/8884.html

Coskuner, Y. & Karababa, E. (2007). Physical properties of coriander seeds (Coriandrum sativum L.), Journal of Food Engineering, 80, 408–416.

Dobreva, K. (2009). Technological studies of extracts of black (Piper nigrum L.), cumin (Cuminum cyminum L.) and coriander (Coriandrum sativum L.), Dissertation, Plovdiv, Bulgaria.

European Pharmacopoeia. (2021) Strasbourg 10thEdition: Council Of Europe. https://pharmeuropa.edqm.eu/home

Iqbal, M., Butt, M. & Suleria, H. (2018). Coriander (Coriandrum sativum L.): Bioactive Molecules and Health Effects. In: Bioative Molecules in Food (J.M. Merillon, K.G. Ramawat ed), Springer International Publishing AG, 3 – 32.

Kiralan, M., Calikoglu,E., Ipek, A., Bayrak, A. & Gurbuz, B. (2009). Fatty acid and volatile oil composition of different coriander (Coriandrum sativum) registered varieties cultivated in Turkey. Chemistry of Natural Compounds, 45, 100 – 102.

Parthasarathy, S., Khoo, J., Miller, E., Barnett, J., Witztum, J. & Steinberg, D. (1990). Low-density lipoprotein rich in oleic acid is protected against oxidative modification: Implications for dietary prevention of atherosclerosis. PNAS, Medical Sciences, 87, 3894-3898.

Pavli´ca, Br., Vidovi´ca, S., Vladi´ca, J., Radosavljevi´c, R. & Zekovi´c, Z. (2015). Isolation of coriander (Coriandrum sativum L.) essential oil by greenextractions versus traditional techniques, Journal of Supercritical Fluids, 99, 23–28.

Ramadan, M., Kroh, L. & Mörsel, J. (2003). Radical Scavenging Activity of Black Cumin (Nigella sativa L.), Coriander (Coriandrum sativum L.), and Niger (Guizotia abyssinica Cass.) Crude Seed Oils and Oil Fractions. Journal of Agriculture and Food Chemistry, 51, 6961−6969.

Ramadan, M. & Wahdan, K. (2012). Blending of corn oil with black cumin (Nigella sativa) and coriander (Coriandrum sativum) seed oils: Impact on functionality, stability and radical scavenging activity. Food Chemistry 132, 873–879.

Siger, A., Nogala-kalucka, M. & Lampart-szczapa, E. (2008). The content and antioxidant activity of phenolic compounds in cold-pressed plant oils. Journal of Food Lipids, 15, 137–149.

Silva, F., Ferreira, S., Queiroz, J. & Domingues, F. (2011). Coriander (Coriandrum sativum L.) essential oil: its antibacterial activity and mode of action evaluated by flow cytometry. Journal of Medical Microbiology, 60, 1479–1486.

Simopoulos, A. (2002). The importance of the ratio of omega-6/omega-3 essential fatty acids. Biomedicine & Pharmacotherapy, Vol. 56, 8, 365-379.

Sharopov, F., Valiev, A., Satyal, P., Setzer, W., & Wink, M. (2017). Chemical composition and anti-proliferative activity of the essential oil of Coriandrum sativum L. American Journal of Essential Oils and Natural Products, 5(1), 11-14.

Warner, K. & Knowlton, S. (1997). Frying quality and oxidative stability of high-oceic corn oils. Journal of American Oil Chemist Society, 74, 1317 – 1321.

Zeković, Z., Pavlić, B., Cvetanović, A. & Durović, S. (2016). Supercritical fluid extraction of coriander seeds: Process optimization, chemical profile and antioxidant activity of lipid extracts. Industrial Crops and Products, 94(30), 353-362.

Published

24.04.2022

How to Cite

Dobreva, A. (2022). Characteristics of cold pressed product of Coriandrum sativum l. and perspectives for application. Bulgarian Journal of Crop Science, 59(2), 91-96. https://agriacad.eu/ojs/index.php/bjcs/article/view/1735