Proving Regimens for Gradient Constant Magnetic Field Treatment of Tobacco leaves During their Processing
https://doi.org/10.36107/spfp.2021.188
Abstract
Possibility of utilizing gradient constant magnetic field to plant material has been studied. There are theories that water after such treatment obtains biological activity. There is no researches on proving regimens that affect changing rate of water removing from plant material during its processing. Aim of the research was proving regimens for gradient constant magnetic field treatment of tobacco leaves during their processing and affecting the curing process. Method for carrying research and laboratory equipment for studying effect of different regimens of constant magnetic field on changing leaf mass during the curing process were elaborated. Hypothesis was offered that depending on frequency and time of constant gradient magnetic field treatment rate of water removing from tobacco leaves can increase or decrease. It is discovered that gradient treatment by constant magnetic field of midrib when height of magnets positioning is 65 mm affects on curing process in different ways. When frequency was 0.178 Hz and time of treatment 11.2 seconds curing process rate reduces and when time of treatment is 44.8 seconds curing process rate accelerates. When height of magnets positioning was 25 mm curing process accelerates by 28.8 % (Frequency 0.357 Hz; time of treatment 112 seconds). Dispersion analysis of research data discovered that duration of the magnetic field effect increases after increasing frequency and time of treatment. Maximum effect was noticed when treatment of tobacco midrib was carried with frequency 0.357 Hz and time of treatment 112 seconds.
About the Authors
Evgeny I. VinevskiiRussian Federation
Alekxanr V. Chernov
Russian Federation
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Review
For citations:
Vinevskii E.I., Chernov A.V. Proving Regimens for Gradient Constant Magnetic Field Treatment of Tobacco leaves During their Processing. Storage and Processing of Farm Products. 2021;(1). (In Russ.) https://doi.org/10.36107/spfp.2021.188