Academic publishing in Europe and N. America

Archive Publication ethics Submission Payment Contacts
In the original languageTranslation into English

THE INFLUENCE OF THE MAIN TECHNOLOGICAL PARAMETERS OF COLD PRESSING OF LOCAL VARIETIES OF SUNFLOWER SEEDS ON THE YIELD AND QUALITY OF OIL

Authors

Gafurov K.Kh., Safarova D.N.

Rubric:Food processing industry
27
0
Quote
27
0

Annotation

The scientific research studied the influence of the main technological parameters (rotation speed of the screw shaft and the thickness of the press outlet slot) during cold pressing on the yield and quality of oil from local varieties of sunflower seeds. Using Response surface methodology, it was revealed that, at a shaft rotation speed of 35 rpm and a slot thickness of the outlet opening of 7.5 mm, the residual oil content of the cake will be in the range of 10-10.5%; and the acid number of the resulting oil is in the range of 1.65-1.7 mg KOH.

Keywords

pressing
shaft rotation speed
oil
outlet slot thickness
oil yield
acid number.
sunflower seeds

Authors

Gafurov K.Kh., Safarova D.N.

Share

27
0

References:

Gafurov, K.Kh. (2020). Change of physiological and biochemical properties of plant raw materials during thermal preparation before extraction. The American Journal of Engineering and Technology, 11(2), 197-205. https://doi.org/10.37547/tajet/Volume02Issue11-31

Gafurov, К.Kh., Safarova, D.N. (2022). Development of Technology for Oil Extraction from Local Sunflower Seeds at Moderate Temperature. Global Scientific Review, 8, 33–37. Retrieved from https://www.scienticreview.com/index.php/gsr/article/view/56

Georgakis, C. (2013). Design of Dynamic Experiments: A Data-Driven Methodology for the Optimization of Time-Varying Processes. Industrial & Engineering Chemistry Research, 52, 12369–12382.

Gupta, Monoj. (2017). Practical Guide to Vegetable Oil Processing. Lynnwood, USA: AOCS Press

Çakaloğlu, B., Özyurt, V.H. & Ötleş, S. (2018). Cold press in oil extraction. A review. Ukrainian Food Journal.;7(4): 640-654. Retrieved from http://dx.doi.org/10.24263/2304-974X-2018-7-4-9

Cai, Z., Li, K., Lee, W. J., Reaney, M., Zhang, N. & Wang, Y. (2021). Recent progress in the thermal treatment of oilseeds and oil oxidative stability: A review. Fundamental Research, 6(1), 767-784. Retrieved from https://doi.org/10.1016/j.fmre.2021.06.022

Dijkstra, A., Duijn, G. (2016). Vegetable Oils: Oil Production and Processing. Encyclopedia of Food and Health. Retrieved from https://www..net/publication/301702726_Vegetable_Oils_Oil_Production_and_Processing

Ilyasov, S.G., Krasnikov, V.V.(1978). Physical basis of infrared irradiation of food products. Moscow, Russia: Food industry.

Krajewska, M., Ślaska-Grzywn,a B. & Andrejko, D. (2018). Effect of infrared thermal pre-treatment of sesame seeds (sesamum indicum l.) on oil yield and quality. Ital. J. Food Sci., 30, 487-496

Murray, P. M. et al. (2016). The application of design of experiments (DoE) reaction optimization and solvent selection in the development of new synthetic chemistry, Org. Biomol. Chem., 14, 2373–2384.

Mustafaev, S.K., Kalienko, E.A., Sonina, D.V., & Efimenko, S.G. (2014). The influence of flax seed pressing conditions on the yield and quality of oil. Scientific journal of KubSAU, 100(06). Retrieved from http://ej.kubagro.ru/2014/06/pdf/103.pdf

O'Brien R. (2007). Fats and oils. Production, composition and use (translation from English). St. Petersburg, Russia: Profession.

Proctor, A. (2013). Green Vegetable Oil Processing. Retrieved from  https://ru.everand.com/book/282669726/Green-Vegetable-Oil-Processing-Revsied-First-Edition  

Shcherbakov, V.G. (1992). Technology for obtaining vegetable oils. Moscow, Russia: Kolos.

Zaitseva, L.V., Nechaev, A.P. (2019). Fats and oils: modern approaches to modernizing traditional technologies. Moscow, Russia: DeLi.

Sinha, B.K. et al.  2014. Optimal Mixture Experiments, Lecture Notes in Statistics. India: Springer.

Stanciu, Ioana (2023). Technology of vegetable oils: Technology of oils. LAP LAMBERT Academic Publishing.

Other articles of the issue

Baymuratova G.O, Khaydarov G.Sh., Saitkulov Foziljon Ergashevich, Okhunov I.I., Eshboboyev T.U., Nasimov H.M. Synthesis and study of the processes of biochemical action of the coordination compound of cobalate II-nitrate with quinazolin-4-one, 6-benzylaminopurine on the Morus alba variety of Moraceae plants
105 views
cc-license
About us Journals Books
Publication ethics Terms of use of services Privacy policy
Copyright 2013-2024 Premier Publishing s.r.o.
Praha 8 - Karlín, Lyčkovo nám. 508/7, PSČ 18600, Czech Republic pub@ppublishing.org