RESEARCH PAPER
Automation of the Oil Extraction Process Performed by Means of A Screw Press
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1
Institute of Computer Science and Information Technologies, Department of Computer-Aided Design, Lviv Polytechnic National University, 12 S. Bandera Str., 79013 Lviv, Ukraine
2
Institute of Mechanical Engineering and Transport, Department of Technical Mechanics and Engineering Graphics, Lviv Polytechnic National University, 12 S. Bandera Str., 79013 Lviv, Ukraine
Submission date: 2024-01-26
Acceptance date: 2024-05-20
Online publication date: 2024-10-30
Publication date: 2024-12-01
Acta Mechanica et Automatica 2024;18(4):666-676
KEYWORDS
ABSTRACT
The continuous development of the oil-manufacturing industries causes the necessity of improving extraction technologies. In this case, the specific interest is focused on the control systems of screw presses. Among a great variety of such machines, the small household presses are in significant demand among consumers. Various seeds and kernels require different technological conditions to be provided in order to maximize the qualitative and quantitative characteristics of the extracted oil. Therefore, the main objective of this research is developing and testing the control system allowing for automation of the oil extraction process. Particularly, the temperature parameters of the pressing chamber, extracted oil, and electric motor are to be monitored and limited. In addition, the consumer should be able to predefine the mass of the oil to be extracted. Considering the small household screw press LiangTai LTP200, the general algorithm (block diagram) of the control system operation is proposed and the corresponding experimental prototype is developed. The latter is based on the Arduino Mega microcontroller and is equipped with three temperature sensors, two coolers (fans), one heater, and one mass sensor. The proposed control system allows for continuous monitoring and limiting of the pressing chamber, oil, and electric motor temperatures, as well as the mass of the extracted oil. The experimental data show that the pressing chamber preheating process lasts for about 3 min (170…190 s) and its maximal temperature does not exceed 44°C. The temperature of the extracted oil does not rise over 61°C. The motor temperature changes within the range of 69...71°C. The oil extraction productivity is as follows: 1.2 kg/h (sunflower seeds), 1.06 kg/h (walnut kernels), 0.9 kg/h (almond kernels), and 0.78 kg/h (peanut kernels). The obtained results can used in further investigations focused on analyzing the influence of these parameters on the quantitative and qualitative characteristics of the extracted oil.
REFERENCES (27)
1.
Choton S, Gupta N, Bandral JD, Anjum N, Choudary A. Extrusion technology and its application in food processing: A review. Pharma Innov. 2020;9(2):162-168.
https://doi.org/10.22271/tpi.2....
3.
Frangipane MT, Cecchini M, Monarca D, Massantini R. Effects of Filtration Processes on the Quality of Extra-Virgin Olive Oil-Literature Update. Foods. 2023;12.
https://doi.org/10.3390/foods1....
4.
Guerrini L, Breschi C, Zanoni B, Calamai L, Angeloni G, Masella P, et al. Filtration Scheduling: Quality Changes in Freshly Produced Virgin Olive Oil. Foods. 2020;9(8).
https://doi.org/10.3390/foods9....
5.
García-González A, Velasco J, Velasco L, Ruiz-Méndez MV. Attempts of physical refining of sterol-rich sunflower press oil to obtain minimally processed edible oil. Foods. 2021;10(8).
https://doi.org/10.3390/foods1....
6.
Mridula D, Saha D, Gupta R, Bhadwal S, Arora S, Kumar P, et al. Oil expelling from whole and dehulled sunflower seeds: Optimization of screw pressing parameters and physico-chemical quality. International Journal of Chemical Studies. 2020;8(4):4002-9.
https://doi.org/10.22271/chemi....
7.
Gudzenko M, Vasyliv V, Mushtruk M, Zheplinska M, Palamarchuk I, Burova Z. Influence of geometric parameters of screw nozzles of twin-screw extruder-press on oil yield. Animal Science and Food Technology. 2021;12(3):5-17.
https://doi.org/10.31548/anima....
8.
Gudzenko M, Vasyliv V, Mushtruk M, Zheplinska M, Burova Z. Research on the effectiveness of means for intensifying oil compression in twin-screw extrusion presses. Animal Science and Food Technology. 2022;13(4).
https://doi.org/10.31548/anima....
9.
Alabi K, Busari R, Joel O. Development and Performance Evaluation of a Variable-Pitch Tapered-Shaft Screw Press for Palm Oil Extraction. Gazi University Journal of Science Part A: Engineering and Innovation. 2022;9(2):49-61.
https://doi.org/10.54287/gujsa....
10.
Mursalykova M, Kakimov M, Kassenov A, Iskakov B, Sergibayeva Z, Kaspakov E. Mathematical modeling of screw press configuration for processing Safflower Oil. Applied Sciences. 2023;13(5):3057.
https://doi.org/10.3390/app130....
11.
Iskakov B, Kakimov M, Kudelski R, Mursalykova M, Kassenov A, Satayeva Z, et al. Improving the Technology of Primary Purification of the Safflower Oil Using Secondary Products of Processing on a Biological Basis. Foods. 2023;12(17).
https://doi.org/10.3390/foods1....
12.
Zikri A, Aswan A, Erlinawati E, Fatria F, Pratama Y, Anggraini T. Uji Kinerja Screw Oil Press Machine Ditinjau dari Rendemen dan Kualitas Minyak Kelapa yang Dihasilkan. FLUIDA. 2020;13(2):46-53.
https://doi.org/10.35313/fluid....
13.
Muhammad Afriza Zaini T, Ali S, Saputra M, Jamaluddin. Pressure Analysis of Oil Mill Screw Press Machine in PT. Ujong Neubok Dalam. Jurnal Inotera. 2022;7(2):83-87.
https://doi.org/10.31572/inote....
14.
Mansor MN, Salleh SM, Fauzi MR, Yahya MN, Juahir A, Hassan H, et al. Total Lifespan Analysis of Screw Press Using Static and Dynamic Simulation. In: AIP Conference Proceedings. 2023.
https://doi.org/10.1063/5.0121....
15.
Charan G, Krishna AR, Swarup KT, Ali SkS, Mohiddin Sk. Design and fabrication of a high-yield edible oil expeller screw shaft. Interantional journal of scientific research in engineering and management. 2023;07(03).
https://doi.org/10.55041/ijsre....
16.
Sarbeni S, Saputra A. Identification of Screw Press Machine Damage Using Failure Mode And Effect Analysis Method in PT. Socfinfo Seunagan. Jurnal Inotera. 2023;8(1):123-127.
https://doi.org/10.31572/inote....
17.
Sakdasri W, Silangam P, Chummengyen S, Sukruay A, Ngamprasertsith S, Supang W, et al. Optimization of yield and thymoqui-none content of screw press-extracted black cumin seed oil using response surface methodology. Ind Crops Prod. 2023;191.
https://doi.org/10.1016/j.indc....
18.
Bako T, Obetta SE, Umogbai VI. Mathematical modeling of mechanical horizontal screw oil extractor. Agricultural Engineering International: CIGR Journal [Internet]. 2020; 22(2):244-254. Available from:
https://cigrjournal.org/index.....
19.
Wang S, Wang J, Dong G, Chen X, Feng L, Su X, et al. Effect of Different Extraction Methods on Quality Characteristics of Rapeseed and Flaxseed Oils. Journal of Food Quality. 2022.
https://doi.org/10.1155/2022/8....
20.
Bogaert L, Mathieu H, Mhemdi H, Vorobiev E. Characterization of oilseeds mechanical expression in an instrumented pilot screw press. Industrial Crops and Products. 2018; 121:106-113.
https://doi.org/10.1016/j.indc....
21.
Kabutey A, Herák D, Mizera Č. Assessment of Quality and Efficiency of Cold-Pressed Oil from Selected Oilseeds. Foods. 2023;12(19):3636.
https://doi.org/10.3390/foods1....
22.
Kabutey A, Herák D, Mizera Č. Determination of Maximum Oil Yield, Quality Indicators and Absorbance Spectra of Hulled Sunflower Seeds Oil Extraction under Axial Loading. 2022;11(18):2866.
https://doi.org/10.3390/foods1....
23.
Kachur O, Korendiy V, Havran V. Designing and simulation of an enhanced screw-type press for vegetable oil production. Computer Design Systems. Theory and Practice. 2023;5(1):128-136.
https://doi.org/10.23939/cds20....
24.
Badigannavar R, Kavadamatti A, Kulkarni G. Temperature Based Fan Speed Controller Using Arduino. Interantional journal of scientific research in engineering and management. 2022;06(10).
https://doi.org/10.55041/ijsre....
25.
Li Y, Jin Z, Li Q, He L, Zhang Y, Song S. The Design of an Intelligent Screw Extruder Control System Based on Fuzzy Control. Lecture notes in electrical engineering. 2019;259-267.
https://doi.org/10.1007/978-98....
26.
Muliak N, Zdobytskyi A, Lobur M, Kaczynski R, Optimization of Electromechanical Systems by Intelligent Design Methods. 2022 IEEE XVIII International Conference on the Perspective Technologies and Methods in MEMS Design (MEMSTECH). Polyana (Zakarpattya). Ukraine. 2022; 65-69.
https://doi.org/10.1109/MEMSTE....
27.
Household All Stainless Steel Oil Press Ltp200 Electric Small Household Commercial Cold And Hot Pressing Fully Automatic-Specialty Tools-AliExpress [Internet]. aliexpress.us. [cited 2024 Jan 2].
https://www.aliexpress.com/ite....