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The study of electrical properties of components of a winter rape seed mixture

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Identyfikacja właściwości elektrycznych różnicujących mieszaninę nasion rzepaku ozimego
Języki publikacji
EN
Abstrakty
EN
Having conducted the investigation of electrical properties on the example of winter rape (Brassika napus oleifera diennis metzg) and its difficult-to-separate weed – cleavers (Galium aparine), we revealed a significant difference in their dielectric permittivity and the angle of dielectric loss in the wide frequency range. The revealed regularities allowed us to determine the value of the electric charge that can accumulate on the seed material in the separation process, and thus the strength of the electrical interaction between seed and separation surface.
PL
W artykule przedstawiono badania wybranych właściwości elektrycznych, które można wykorzystać do separacji nasion roślin produkcyjnych (Brassika napus oleifera diennis metzg) od nasion roślin niepożądanych (Galium aparine), których parametry geometryczne i masowe są bardzo zbliżone. Odnotowano różnice w przenikalności dielektrycznej oraz oszacowano wartość ładunku elektrycznego, który może gromadzić się w materiale.
Rocznik
Strony
60--64
Opis fizyczny
Bibliogr. 32 poz., rys.
Twórcy
  • Lviv National Agrarian University, Vol. Velykogo str., 1, 80381 Dubliany, Ukraine
autor
  • Lviv National Agrarian University, Vol. Velykogo str., 1, 80381 Dubliany, Ukraine
  • Lviv National Agrarian University, Vol. Velykogo str., 1, 80381 Dubliany, Ukraine
  • Lviv National Agrarian University, Vol. Velykogo str., 1, 80381 Dubliany, Ukraine
  • Wroclaw University of Environmental and Life Sciences, The Faculty of Life Sciences and Technology, ul. J. Chelmonskiego 37/41, 51-630 Wrocław
  • University of Agriculture in Krakow, Faculty of Production and Power Engineering, Mickiewicza Av. 21, 31-120 Krakow
  • University of Agriculture in Krakow, Faculty of Production and Power Engineering, Mickiewicza Av. 21, 31-120 Krakow
  • Warsaw University of Technology, Faculty of Electrical Engineering
Bibliografia
  • [1] Shin W., Current status of global seed industry and role of golden seed project in Korea, Journal of Plant Biotechnology, 42 (2015), No. 2, 71-76.
  • [2] Golikova S., Current state and trends in plant breeding and seed production of agricultural crops in the Russian Federation, Vestnik of Voronezh state agrarian university, (2018), No. 2, 208-216.
  • [3] Monteiro V., Amabile, R., Spehar C., Genetic parameters and morpho-agronomic characterization of barley in the Brazilian Savannah, Journal of the institute of brewing, 124 (2018), No. 2, 121-131.
  • [4] Croft M. , Marshall M., Odendo, M., Formal and Informal Seed Systems in Kenya: Supporting Indigenous Vegetable Seed Quality, Journal of development studies, 54 (2018), No. 4, 758- 775.
  • [5] Lebedev A., Kuzminov V.,Ridniy S., Manufacturing scheme impact of seedbed preparation on quality of wheat seeds, 16-th International Scientific Conference on Engineering for Rural Development. Jelgava: Latvia Univ. Agrarian, (2017), 415-419.
  • [6] Rao N., Dulloo M., Engels J., A review of factors that influence the production of quality seed for long-term conservation in genebanks, Genetic resources and crop evolution, 64 (2017), No. 5, 1061-1074.
  • [7] Lewandowska S., Kozak M., Current Situation of Seed Production in the South Western Part of Poland, 13-th Scientific and Technical Seminar on Seeds and Seedings. Prague: Czech Univ Life Sciebce, (2017), 267-272.
  • [8] Nardi M., The role of the seed sector in Italy for a modern and competitive agriculture, Italian journal of agronomy, 11 (2016), No. 2, 137-142.
  • [9] Ebert A., Santos E., Buenaventura A., Imperial R., Communitybased seed production of traditional vegetables to enhance nutrition security and empower farmers in the Philippines, 29-th International Horticultural Congress on Horticulture - Sustaining Lives, Livelihoods and Landscapes. International Symposium on Promoting the Future of Indigenous Vegetables Worldwide, Brisbane, (2014), 135-141.
  • [10] Toker C., Polat E., Ikten C., Seed and Breeding Sectors in Turkey-Present Status and Future Progress, 12-th Scientific and Technical Seminar on Seed and Seedings. Prague: Czech Univ Life Sciebce, (2015), 15-20.
  • [11] Lykhochvor V., Petrichenko V., Ivashchuk, P., Korniichuk O., Crop production. Lviv: Ukrainian technologies, (2010), 800.
  • [12] Kovalyshyn S., Shvets O., Grundas S.,Tys J., Use of electroseparation metod for improvement of the utility value of winter rapeseeds, International Agrophysics, 27 (2013), No 4, 419- 424.
  • [13] Kovalyshyn S., Shvets O., Holodnyak R., Description of parameters of electric separator of rape seed mixtures, Teka: Commision of Motorization and Power Industry in Agriculture, (2010), No. 10, 186-193.
  • [14] Kovalyshyn S., Dadak V., Sokolyk, V., Grundas S., Geometrical and Friction Properties of perennial grasses and their weeds in view of an electro-separation method, International Agrophysics, 29 (2015), No. 3, 185-191.
  • [15] Qian, X., Xuduo C., Xue C., Models for predicting frictional properties of rapeseed, International Agrophysics, 33 (2019), No. 1, 61-66.
  • [16] Unal H., Sincik M., Izli N., Comparison of some engineering properties of rapeseed cultivars, Industrial Crops and Products, 30 (2009), No. 1, 131-136.
  • [17] Zhang B., Li C., Wang D., Calculation and test of electric polarization force for rice seed dielectric separation, Transactions of the Chinese Society of Agricultural Engineering, 28 (2012), No. 2, 96-100.
  • [18] Basiry M., Esehaghbeygi M., Cleaning and Charging of Seeds with an Electrostatic Separator, Applied Engineering in Agriculture, 28 (2012), No. 1, 143-147.
  • [19] Fattahi S., Abdollahpour S., Ghassemzadeh H., Behfar H., Mohammadi S., Sunflower’s seed separation in high-intensity electric field, Agricultural Engineering International: CIGR Journal, 19 (2017), No. 2, 193-199.
  • [20] Butunoi T., Buda G., Dragos C., Samuila A., Wheat seeds separation in high-intensity electric field, 7-th International Symposium on Advanced Topics in Electrical Engineering, Bucharest: IEEE, (2011), 124-130.
  • [21] Singh S., Kumar P., Manohar R., Shukla J. Dielectric properties of some oil seeds different concentration of moisture contents and micro-fertilizer, International Journal of Agricultural Research, 1 (2006), No. 3, 293-304.
  • [22] Li F., Zhang X., Li X., Wang H., Effects electric field processing and dielectric separation on cotton seed germination rate and seedling mass, Transactions of the Chinese Society of Agricultural Engineering, 26 (2013), No. 9, 128-132.
  • [23] Xu J., Tan M., Zhang C., Li F., Improving paddy seed vigor by corona discharge field processing and dielectric separation, Transactions of the Chinese Society of Agricultural Engineering, 29 (2013), No. 23, 233-240.
  • [24] Ciobanu V., Visan A., Paun A., Bogdanof G., Experimental research regarding magnetic separation of seeds after their surface conditions using moistening liquids, 16-th International Scientific Conference on Engineering for Rural Development. Jelgava: Latvia Univ. Agr., (2017), 1000-1005.
  • [25] Araujo R., Zonta J., Araujo E., Hederle E., Electrical conductivity test for mung beans seeds, Revista Brasileira de Sementes, 33 (2011), No. 1, 123-130.
  • [26] Barsoukov Y., Impedance Spectroscopy: Theory, Experiment and Applications. Hoboken, USA : Wiley-Interscience, (2005), 616.
  • [27] Luczycka D., Czubaszek A., Fujarczuk M., Pruski K. Dielectric properties of wheat flour mixed with oat meal, Internationla Agrophysics, 27 (2013), No. 2, 175-180.
  • [28] Kolakowska D., Lisowski M., The effective area of measurement electrode in volume resistivity and permittivity of solid dielectrics measurements, Measurement Automation Monitoring, 61 (2015), No. 2, 32-34.
  • [29] Sacilik K., Colak A., Determination of dielectric properties of corn seeds from 1 to 100 MHz, Powder Technology, 203 (2010), No. 2, 365-370.
  • [30] Kachi M., Nadjem A., Moussaoui A., Dascalescu L., Corona discharge as affected by the presence of various dielectric materials on the surface of a grounded electrode, IEEE Transactions on Dielectrics and Electrical Insulation, 25 (2018), No. 2, 390-395.
  • [31] Li F., Zhang X., Li X., Wang H., Effects electric field processing and dielectric separation on cotton seed germination rate and seedling mass, Transactions of the Chinese Society of Agricultural Engineering, 26 (2013), No. 9, 128-132.
  • [32] Nelson S., Trabelsi S., Use of material dielectric properties for agricultural applications, Annual International Meeting of American Society of Agricultural and Biological Engineers 2016. Orlando USA, (2016), 237-268.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6bfed465-6ee5-4714-9894-b7be2fd32198
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