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Başlık: Determination of the pattern of dust and air flow movement in vortex mechanism
Yazarlar: Каспрук, Володимир Богданович
Балабан, Степан Миколайович
Ярош, Ярослав Миколайович
Volodymyr, Kaspruk
Stepan, Balaban
Yaroslav, Yarosh
Affiliation: Тернопільський національний технічний університет, вул. Руська, 56, м.Тернопіль, 46001 (UA)
Поліський національний університет, вул. Старий Брід, 7, м. Житомир, 10008 (UA)
Bibliographic description (Ukraine): Kaspruk, V., Balaban, S., Yarosh, Y. (2022). Determination of the pattern of dust and air flow movement in vortex mechanism. Journal Environmental Problems, 7(2), 2022. pp. 97–102. DOI: https://doi.org/10.23939/ep2022.02.097
Bibliographic description (International): Kaspruk, V., Balaban, S., Yarosh, Y. (2022). Determination of the pattern of dust and air flow movement in vortex mechanism. Journal Environmental Problems, 7(2), 2022. pp. 97–102. DOI: https://doi.org/10.23939/ep2022.02.097
Conference/Event: 97
Journal/Collection: Journal Environmental Problems
Issue: 7(2)
Yayın Tarihi: 7-Haz-2022
Submitted date: 19-Nis-2022
Date of entry: 18-Haz-2022
Yayıncı: Видавництво Львівської політехніки
Country (code): UA
Place of the edition/event: Львів
Anahtar kelimeler: deduster
process of separation
hydraulic resistance
deduster efficiency
Number of pages: 6
Page range: 97-102
End page: 102
Özet: The article deals with the study of the prospects for the use of mineral fertilizers encapsulated in PET for bioremediation. This increases efficiency, prevents environmental pollution from undigested plants with plant nutrients, and minimizes the number of application operations. In addition, it disposes of a significant portion of PET waste, the uncontrolled accumulation of which poses a threat to the environment. The basic technological schemes of preparation of a film-forming composition and encapsulation of fertilizers are offered. The kinetic parameters of the process of release of batteries of granulated ammonium nitrate encapsulated with a film based on modified PET are determined
URI: http://elartu.tntu.edu.ua/handle/lib/38065
Copyright owner: © Каспрук В. Б., Балабан С. М., Ярош Я. М., 2022
© Kaspruk V., Balaban S., Yarosh Y., 2022
References (Ukraine): Batluk V., Basov, M & Dorundyak, L. (2012). Matematic model of the process of dust catching in an ahharatus with a movable separator. Econtechmod, 1(1), 13-16.
Caryk, L. P., Caryk, P. L., & Vitenko, I. M. (2011). Ekolohija: Pidruсhnyk 2-he vyd. Kyïv: Heneza. Retrieved from https://shkola.in.ua/530-ekolohiia-11-klas-tsaryk.html
Cilibert, D., & Lancaster, B. (2016). Fine dust collecion in a rotary flow ciclone and wortex chambers. Chem.Eng., Westinghouse Reseach Labor., 6, 1150-1152.
Gumnytskyi, Ya. M. & Kuts, V. P. (2015) Suchasni pidkhody do neobkhidnosti ochyshchennia promyslovykh i ventyliatsiinykh vykydiv v atmosferu, Materialy mizhnarodnoi naukovo praktychnoi konferentsii „Suchasni osoblyvosti formuvannia i upravlinnia innovatsiinym potentsialom rehionalnoho rozvytku turyzmu ta rekreatsii iz zaluchenniam molodizhnoho resursu“, TNTU 2015, Ternopil, Ukraina, Vydavnytstvo TNTU
Hurets, L.L., Kozii, I. S. & Miakaieva H. M. (2017). Directions of the environmental protection processes optimization at heat power engineering enterprises. Journal of Engineering Sciences, 4(2), G12-G16.
Kaspruk, V. & Kuts V. (2015) Analiz metodiv rozrakhunku vykhrovykh pylovlovliuvachiv, Mizhnarodna naukovo tekhnichna konferentsiia “Fundamentalni ta prykladni problemy suchasnykh tekhnolohii”, TNTU 2015, Ternopil, Ukraina, Vydavnytstvo TNTU.
Kouzov, Y. E., & Yofynov, H. A. (2011). Edynaja metodyka sravnytelnych yspytanyj pyleulovytelej dlja očystky ventyljacyonnoho vozducha. Lenynhrad: VNYYOT VCSPS.
Rybdylovaa, O., Qubeissia, M. Al., Braunc, M., Cruaa, C., Manind, J., Pickettd, L.M., Serceya, G., Sazhinaa, E. M., Sazhina, S. S. & Heikal M. (2016) A model for droplet heating and its implementation into ANSYS Fluent. International Communications in Heat and Mass Transfer, 76, 285–270. http://doi.org/10.1016/j.icheatmasstransfer. 2016.05.032
Savchenko-Pererva, M.Iu. & Yakuba, O.R. (2015). Improving the efficiency of the apparatus with counter swirling flows for the food industry. Eastern-European Journal of Enterprise Technologies, 3/10 (75), 43–48. https://doi.org/10.15587/ 1729-4061.2015.43785
Content type: Article
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