Approbation of cavitation and flotation separation technology of heterogeneous liquid phase environments

dc.citation.conferenceLitteris et Artibus
dc.contributor.affiliationLviv Polytechnic National Universityuk_UA
dc.contributor.authorZnak, Zynoviy
dc.contributor.authorSukhatskiy, Yuriy
dc.contributor.authorZin, Olga
dc.contributor.authorMnykh, Roman
dc.coverage.countryUAuk_UA
dc.coverage.placenameLvivuk_UA
dc.date.accessioned2018-05-07T07:53:14Z
dc.date.available2018-05-07T07:53:14Z
dc.date.issued2016
dc.description.abstractThe concept of cavitation and flotation technology to separate heterogeneous liquid-phase environments was proposed. It implements the principle of the chemical-technological systems synthesis. The results of approbation of this technology in various industrial processes: sulfuric ore enrichment; intensification of regeneration stage of used absorbent solution from purification process of exhaust gases formed in the calcination furnaces of metatitanic acid paste from SO2; separation of kaolin slurry; extraction of sodium oxalate from liquid wastes of leather industries; separation of the insoluble residue during dissolution of langbeinite ore. High efficiency of the developed technology was shown.uk_UA
dc.format.pages426-427
dc.identifier.citationApprobation of cavitation and flotation separation technology of heterogeneous liquid phase environments / Zynoviy Znak, Yuriy Sukhatskiy, Olga Zin, Roman Mnykh // Litteris et Artibus : proceedings of the 6th International youth science forum, November 24–26, 2016, Lviv, Ukraine / Lviv Polytechnic National University. – Lviv : Lviv Polytechnic Publishing House, 2016. – P. 426–427. – Bibliography: 5 titles.uk_UA
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/41041
dc.language.isoenuk_UA
dc.publisherLviv Polytechnic Publishing Houseuk_UA
dc.relation.referencesen[1] Z. О. Znak, Yu. V. Sukhatskii, R. V. Mnykh, "Rozroblennia kavitatsiino-flotatsiinoho protsesu ochysh-chennia stichnykh vod v aspekti realizatsii suchasnykh kontseptsii syntezu khimiko-tekhnolohichnykh system" [“Development of cavitation-flotation wastewater treatment process in terms of implementing modern concepts of the synthesis of chemical-technological systems”], Visnyk Natsionalnoho universitetu "Lvivska politekhnika" - Proceedings of the National University "Lviv Polytechnic", № 787, s. 75-79, 2014. [2] Z. О. Znak, Yu. V. Sukhatskii, R. V. Mnykh, "Doslidzhennia zalezhnosti efektyvnosti roboty hidrodynamichnoho strumenevoho kavitatora vid konstruktyvnykh parametriv kavituvalnoho elementa" [„Investigation of dependence of the efficiency of the hydrodynamic jet cavitator from design parameters of cavitation element”], Vibratsii v tekhnitsi ta tekhnolohiiakh - The vibrations in engineering and technology, № 2 (78), s. 18-26, 2015. [3] Z. Znak, Yu. Sukhatskiy, "The Brandon method in modelling the cavitation processing of aqueous media", Eastern-European Journal of Enterprise Technologies, № 3/8 (81), pp. 37-42, 2016. [4] Yu. V. Sukhatskii, "Doslidzhennia efektyvnosti kavitatsiino-flotatsiinoi tekhnolohii ochyshchennia ridkofaznykh seredovyshch vid dyspersnykh chastynok" [“Investigation of efficiency of cavitation-flotation technology purification of liquid phase environments from dispersed particles”], Naukovyi visnyk NLTU Ukrainy - Scientific Journal NLTU of Ukraine, Vyp. 26.4, s. 295-303, 2016. [5] Yu. N. Lunkova, N. V. Khaber, "Proyzvodstvo kontcentrirovannykh kaliinykh udobrenii iz polimineralnykh rud" [“Production of concentrated potash from multimineral ore”], 158 s., 1980.uk_UA
dc.subjectcavitationuk_UA
dc.subjectflotationuk_UA
dc.subjectseparationuk_UA
dc.subjectliquid-phase heterogeneous environmentuk_UA
dc.subjectsulphuric oreuk_UA
dc.subjectexhaust gasesuk_UA
dc.subjectsuspension of kaolinuk_UA
dc.subjectsodium oxalateuk_UA
dc.subjectinsoluble residueuk_UA
dc.titleApprobation of cavitation and flotation separation technology of heterogeneous liquid phase environmentsuk_UA
dc.typeConference Abstractuk_UA

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