Abstract

The development of resource-saving technologies for obtaining pure sea buckthorn oil and its compositions with other vegetable oils from dried crushed sea buckthorn cake is an urgent task. Sea buckthorn oil and its mixtures are obtained by extraction and simultaneous heat exposure, electrophysical methods of the process intensifying being considered in this case. Currently, there are no reliable data on the thermo- and electrophysical properties of dried crushed sea buckthorn cake at atmospheric pressure in the literature. Therefore, experimental studies of the thermo- and electrophysical properties of dried crushed sea buckthorn cake in a wide range of changes in state parameters are of great importance for solving theoretical and practical problems. The nature of the change in the specific heat, thermal conductivity and thermal diffusivity in the temperature range 20 ... 80 ° C and humidity 7.0 ... 17.5% was determined to be linear. In this case, the specific heat and the coefficient of thermal conductivity increase with increasing temperature while the coefficient of thermal diffusivity decreases. The nonlinear dependence of the dielectric loss coefficient on moisture was found to be due to a variety of forms of moisture binding in the sea buckthorn cake particles. It is obvious that with an increase in the cake temperature and humidity, the dielectric loss coefficient monotonically nonlinearly increases in the range of 0.46 ... 9.72. Empirical equations that make it possible to reliably determine the value of the specific mass heat capacity, thermal conductivity coefficients, thermal diffusivity and dielectric losses of dried crushed sea buckthorn cake from temperature and humidity in the range of 7.0 ... 17% with respect to absolutely dry matter were obtained as a result of studies of thermo- and electrophysical properties..

Highlights

  • Непосредственно перед получением сырья требуемого состава проводили комплекс мероприятий, включающий инспекцию принятых плодов облепихи с целью удаления некондиционных плодов и загрязнений растительного происхождения, после чего осуществляли мойку плодов и механический отжим сока с отделением жома

  • Также исследовали зависимость коэффициента диэлектрических потерь высушенного измельченного жмыха облепихи от содержания влаги в нем и температуры

  • Conflict of interest The authors declare no conflict of interest

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Summary

For citation

Овсянников В.Ю., Лобачева Н.Н., Торопцев В.В., Трунов С.А., Ovsyannikov V.Yu., Lobacheva N.N., Toroptsev V.V., Trunov S.A., Лобачева М.А. С. 48–55. [Proceedings of VSUET]. 2021. vol 83. no. 2. pp. 48–55. (in Russian)

БД Agris
Материалы и методы
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