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Electromagnetic energy as an impact factor on life processes of a biological object of a plant origin

  • Radko, I. (National University of Life and Environmental Sciences of Ukraine) ;
  • Nalyvaiko, V. (Department of Electrical Engineering, Electromechanics and Electro Technology) ;
  • Okushko, O. (Educational and Research Institute of Energy, Automation and Energy Saving)
  • 투고 : 2020.01.08
  • 심사 : 2020.02.05
  • 발행 : 2020.02.28

초록

The foremost problem in the agricultural industry in Ukraine is the issue of improving its energy resources efficiency. The existence of this problem is related to the substantial technological inferiority of the industry to those present in the developed countries, especially in terms of creation of no-waste production technologies of agricultural products. The direct effect on the solving of this issue has the necessity to ensure minimal energy costs during treatment of plant objects. This article presents the research results on the effect of electromagnetic energy on activation of plants development. It was found that each such object has its own individual energy resource and that forceful increase of the latter has specific maximum values and gives rise to the plant development process. At the same time, the implementation of the research results is hindered by some factors, among the most major of which are the following: lack of reliable and complete data on the bioenergy resources of plants, its "natural" chart; unavailability of research on the energy sources interaction processes and its effect on the physiological potential of biological objects, at least at the level of low series, absence of the appropriate electrotechnical equipment, including electromagnetic energy sources.

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참고문헌

  1. Barba, F. J., Parniakov, O., Pereira, S., Wiktor, A., Grimi, N., Boussetta, N., Saraiva, J., Raso, J., Martin-Belloso, O., Witrowa-Rajchert, D., Lebovka, N., & Vorobiev, E. (2015). Influence of Innovative Processing on ${\gamma}$-Aminobutyric Acid (GABA) Contents in Plant Food Materials. Food Research International, 77, 773 - 798. https://doi.org/10.1016/j.foodres.2015.09.015
  2. Borodin, I. (1996). Electricity controls plants. Mehanizaciia i elektrifikaciia selskogo hoziastva, 4, 28 - 30.
  3. Chervinsky, L., Usenko, S., & Spodoba, M. (2019). Researching of the Tesla's Bifilar Coils, as a Sources of Electrical Energy. Korean Journal of Food & Health Convergence, 5(4), 17 - 20.
  4. Chervinsky, L. (2018). Rationale and Definition of Tog Gating of The Efficiency of The Biological Activity of Optical Radiation on Animal Organism. Korean Journal of Food & Health Convergence. 4(4), 1 - 5. https://doi.org/10.13106/kjfhc.2018.vol4.no4.1
  5. Grigorev, V. (2002). Method of electromagnetic stimulation of living organisms and plants. Traktory i selskohoziastvennye mashiny, 1, 18 - 22.
  6. Inozemtsev, H., Bereka, O., & Okushko, O. (2013). Elektrotekhnolohii obrobky silskohospodarskoi produktsii: Monohrafiia [Electrical processing of agricultural products: Monograph]. Kyiv, Ukraina: TOV "AhrarMediaHrup", 293 p.
  7. Inozemtsev, H., & Okushko, O. (2016). The influence of electromagnetic energy on the growth processes of plant objects. Innovacii v selskom hoziastve, 6, 1-6.
  8. Kozyrskyi, V., Savchenko V., & Sinyavsky, O. (2018). Presowing Processing of Seeds in Magnetic Field : Handbook of Research on Renewable Energy and Electric Resources for Sustainable Rural Development. USA, IGI Global, p.p. 576 - 620.
  9. Nikiforova, L., Kizim, I., & Bogatyrev, Y. (2014). Electrotechnological system for monitoring effects of optical range electromagnetic fields on vegetation bioobject. Technical Electrodynamics.
  10. Scerbakov, K. (2002). Stimulation of plant growth processes by a low-energy magnetic field. Mehanizaciia i elektrifikaciia selskogo hoziastva, 7, 26 - 29.
  11. Verescagin, I. (1974). Osnovy elektrogazodinamiki dispersnyh system: Basics of electrogasdynamics of disperse systems. Moscow, Russia: Energiia, 480 p.