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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/55687
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dc.contributor.authorPetrushka, Ihor
dc.contributor.authorPetrushka, Kateryna
dc.contributor.authorBliatnyk, Bohdanna
dc.date.accessioned2020-12-13T13:44:05Z-
dc.date.available2020-12-13T13:44:05Z-
dc.date.created2020-02-10
dc.date.issued2020-02-10
dc.identifier.citationPetrushka I. Improvement of adsorption processes of wastewater treatment from nickel ions / Ihor Petrushka, Kateryna Petrushka, Bohdanna Bliatnyk // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2020. — Vol 5. — No 2. — P. 83–87.
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/55687-
dc.description.abstractThe sorption properties of natural and complex sorbents for neutralization of Ni2+ ions from the water environment were studied. The isotherm of the adsorption of Ni2+ ions on complex sorbents (activated bentonite to shungite is 1:1) according to the Langmuir and Freundlich’s models was drawn; the type of adsorption isotherms according to the S. Brunauer’s classification was established. The values of the maximum sorption capacity of Гmax sorbents relative to Ni2+ ions were calculated. Based on the calculated coefficients of the Langmuir and Freundlich's equations, the specificity of the process of sorption of Nickel ions with the formation of a monomolecular layer was determined. The dependences of the degree of absorption of Ni2+ ions by complex sorbents on the duration of the sorption process were obtained. The ratio of solid state of matter (comprehensive sorbent) to liquid was experimentally determined.
dc.format.extent83-87
dc.language.isoen
dc.publisherВидавництво Львівської політехніки
dc.publisherLviv Politechnic Publishing House
dc.relation.ispartofEnvironmental Problems, 2 (5), 2020
dc.relation.urihttps://doi.org/10.15330/pcss.19.2.191–196
dc.relation.urihttps://doi.org/10.15421/
dc.subjectenvironmental security
dc.subjectnatural sorbents
dc.subjectsorption isotherm
dc.subjectwastewater adsorption
dc.titleImprovement of adsorption processes of wastewater treatment from nickel ions
dc.typeArticle
dc.rights.holder© Національний університет “Львівська політехніка”, 2029
dc.rights.holder© Petrushka I., Petrushka K., Bliatnyk B., 2020
dc.contributor.affiliationLviv Polytechnic National University
dc.format.pages5
dc.identifier.citationenPetrushka I. Improvement of adsorption processes of wastewater treatment from nickel ions / Ihor Petrushka, Kateryna Petrushka, Bohdanna Bliatnyk // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2020. — Vol 5. — No 2. — P. 83–87.
dc.identifier.doidoi.org/10.23939/ep2020.02.083
dc.relation.references[1] Malovanyy M., Vronska N., Koval I., Sakalova G.: Bull. Lviv Polytechnic National Univ.: Chem., technol. of substan. and their appl., 2013, 761, 280 (in Ukrainian).
dc.relation.references[2] Kontsur A., Sysa L., Shevchuk L.: Physics and chemistry of solid state, 2018, 19 (2), 191. https://doi.org/10.15330/pcss.19.2.191–196
dc.relation.references[3] Riabchevskyi O., Matvieieva O.: Ecolog. Safety and Balanc. Use of Res., 2015, 2, 106.
dc.relation.references[4] Gaouar- Yadi M., Tizaoui K., Gaouar-Benyelles N., Benguella B.: Indian J. Chem. Technol., 2016, 23, 204.
dc.relation.references[5] Sabino De Gisi, Giusy Lofrano, Grassi M., Notarnicola M.: Sustainable Mater.Technol., 2016, 9, 10.
dc.relation.references[6] Zhao X., Song L., Zhang Z., Wang R. J. Fu: J. Molec. Struct., 2011, 986, 68.
dc.relation.references[7] Repo E., Petrus R., Sillanpaa M., Warchoł J. K.: Chem. Eng. J., 2011, 172(1), 376.
dc.relation.references[8] Shpylevskyi M., Shpylevskyi Yе., Stelmakh V.: J. Eng. Physics, 2001, 76 (6), 25.
dc.relation.references[9] Berezkin V.: Uhlerod. Zamknuti nanochastyny, makrostruktury, materialy. “AtrЕrho”, 2013.
dc.relation.references[10] Sydorchuk O., Humnytskyi Ya.: Eastern-European J. Enterprise Technol., 2013, 4/10 (64), 19.
dc.relation.references[11] Petrushka I., Malovanyy M., Petrushka K.: Visn. KrNU im. M. Ostrohradskoho 2013, 2, 129.
dc.relation.references[12] Petrushka I., Ruda M., Hyvliud A., Koval N.: Sci. Bull. UNFU, 2019, 29 (3), 64. https://doi.org/10.15421/ 40290314
dc.relation.referencesen[1] Malovanyy M., Vronska N., Koval I., Sakalova G., Bull. Lviv Polytechnic National Univ., Chem., technol. of substan. and their appl., 2013, 761, 280 (in Ukrainian).
dc.relation.referencesen[2] Kontsur A., Sysa L., Shevchuk L., Physics and chemistry of solid state, 2018, 19 (2), 191. https://doi.org/10.15330/pcss.19.2.191–196
dc.relation.referencesen[3] Riabchevskyi O., Matvieieva O., Ecolog. Safety and Balanc. Use of Res., 2015, 2, 106.
dc.relation.referencesen[4] Gaouar- Yadi M., Tizaoui K., Gaouar-Benyelles N., Benguella B., Indian J. Chem. Technol., 2016, 23, 204.
dc.relation.referencesen[5] Sabino De Gisi, Giusy Lofrano, Grassi M., Notarnicola M., Sustainable Mater.Technol., 2016, 9, 10.
dc.relation.referencesen[6] Zhao X., Song L., Zhang Z., Wang R. J. Fu: J. Molec. Struct., 2011, 986, 68.
dc.relation.referencesen[7] Repo E., Petrus R., Sillanpaa M., Warchoł J. K., Chem. Eng. J., 2011, 172(1), 376.
dc.relation.referencesen[8] Shpylevskyi M., Shpylevskyi Ye., Stelmakh V., J. Eng. Physics, 2001, 76 (6), 25.
dc.relation.referencesen[9] Berezkin V., Uhlerod. Zamknuti nanochastyny, makrostruktury, materialy. "AtrErho", 2013.
dc.relation.referencesen[10] Sydorchuk O., Humnytskyi Ya., Eastern-European J. Enterprise Technol., 2013, 4/10 (64), 19.
dc.relation.referencesen[11] Petrushka I., Malovanyy M., Petrushka K., Visn. KrNU im. M. Ostrohradskoho 2013, 2, 129.
dc.relation.referencesen[12] Petrushka I., Ruda M., Hyvliud A., Koval N., Sci. Bull. UNFU, 2019, 29 (3), 64. https://doi.org/10.15421/ 40290314
dc.citation.issue2
dc.citation.spage83
dc.citation.epage87
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
Appears in Collections:Environmental Problems. – 2020. – Vol. 5, No. 2

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