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https://elar.usfeu.ru/handle/123456789/9051
Полная запись метаданных
Поле DC | Значение | Язык |
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dc.contributor.author | Ordinartsev, D. P. | en |
dc.contributor.author | Sviridov, A. V. | en |
dc.contributor.author | Naboichenko, S. S. | en |
dc.contributor.author | Yurchenko, V. V. | en |
dc.date.accessioned | 2019-09-20T15:19:38Z | - |
dc.date.available | 2019-09-20T15:19:38Z | - |
dc.date.issued | 2018 | - |
dc.identifier.citation | Ordinartsev, D. P. Sorption Extraction of Vanadium Compounds from Acid Solutions with Finely Divided Modified Aluminosilicate / D. P. Ordinartsev, A. V. Sviridov, S. S. Naboichenko // Metallurgist. – 2018. – Vol. 61. – Iss. 9-10. – P. 912-916. | en |
dc.identifier.issn | 2608-0094 | - |
dc.identifier.uri | https://elar.usfeu.ru/handle/123456789/9051 | - |
dc.description.abstract | The possibility is demonstrated of adsorption extraction of vanadium compounds from acid media with modified aluminum silicate. Very fine layered aluminum silicate modified with surfactant cations (didecyldimethyl ammonium chloride) were used for extracting vanadium compounds. Sorbent modification proceeds as a result of fastening didecyldimethyl ammonium chloride molecules in the space between sorbent layers. As a result of modification, the sorbent acquires the property of selective absorption of vanadium compounds from solution. In order that the sorbent is not compacted and passes solution without hindrance, it is applied to quartz sand with a particle size of 1–3 mm treated with polyacrylamide. Vanadium compound adsorption proceeds most completely at pH 2.8–3.4, which is connected with the existence in the solution of various polyoxo compounds. The possibility is established of repeated sorbent use in adsorption and desorption cycles. The constant volume content of sorbent is 0.64 mmole/g, the dynamic exchange capacity is 0.38 mmole/g, and the static exchange capacity is 0.26 mmole/g. The solution after the desorption cycle is used for preparing pure vanadium pentoxide by hydrolytic precipitation under conditions of achieving the required concentration. Results of extracting vanadium compounds from model solutions correspond to vanadium adsorption on colloidal modified aluminum silicate from Chusovskoi Metallurgical Plant (ChMZ) washing solutions. © 2017, Springer Science+Business Media, LLC, part of Springer Nature. | en |
dc.language.iso | en | en |
dc.publisher | Springer New York LLC | en |
dc.rights | info:eu-repo/semantics/restrictedAccess | en |
dc.source | Metallurgist | en |
dc.subject | ADSORPTION EXTRACTION | en |
dc.subject | ADSORPTION OF CHARGE VANADIUM COMPOUNDS | en |
dc.subject | DYNAMIC ADSORPTION CAPACITY | en |
dc.subject | MODIFIED MONTMORILLONITE | en |
dc.subject | VANADIUM EXTRACTION | en |
dc.subject | ADSORPTION | en |
dc.subject | ALUMINOSILICATES | en |
dc.subject | ALUMINUM | en |
dc.subject | ALUMINUM CHLORIDE | en |
dc.subject | CHLORINE COMPOUNDS | en |
dc.subject | DESORPTION | en |
dc.subject | EXTRACTION | en |
dc.subject | MULLITE | en |
dc.subject | PARTICLE SIZE | en |
dc.subject | SILICATES | en |
dc.subject | SORBENTS | en |
dc.subject | SORPTION | en |
dc.subject | VANADIUM COMPOUNDS | en |
dc.subject | ADSORPTION AND DESORPTIONS | en |
dc.subject | DIDECYLDIMETHYL AMMONIUM CHLORIDE | en |
dc.subject | DYNAMIC ADSORPTION | en |
dc.subject | DYNAMIC EXCHANGE CAPACITY | en |
dc.subject | HYDROLYTIC PRECIPITATION | en |
dc.subject | METALLURGICAL PLANTS | en |
dc.subject | MODIFIED MONTMORILLONITE | en |
dc.subject | VANADIUM EXTRACTIONS | en |
dc.subject | ALUMINUM COMPOUNDS | en |
dc.title | Sorption Extraction of Vanadium Compounds from Acid Solutions with Finely Divided Modified Aluminosilicate | en |
dc.type | Article | en |
dc.type | info:eu-repo/semantics/article | en |
dc.type | info:eu-repo/semantics/publishedVersion | en |
local.description.firstpage | 912 | - |
local.description.lastpage | 916 | - |
local.issue | 9 | - |
local.issue | 10 | - |
local.volume | 61 | - |
local.identifier.wos | WOS:000424029500030 | - |
local.identifier.doi | 10.1007/s11015-018-0586-1 | - |
local.affiliation | Ural State Forest Engineering University, Ekaterinburg, Russian Federation | en |
local.affiliation | Ural Federal University, Ekaterinburg, Russian Federation | en |
local.contributor.employee | Ordinartsev, D.P., Ural State Forest Engineering University, Ekaterinburg, Russian Federation | |
local.contributor.employee | Sviridov, A.V., Ural State Forest Engineering University, Ekaterinburg, Russian Federation | |
local.contributor.employee | Naboichenko, S.S., Ural Federal University, Ekaterinburg, Russian Federation | |
local.contributor.employee | Yurchenko, V.V., Ural State Forest Engineering University, Ekaterinburg, Russian Federation | |
local.identifier.rsi | 35539263 | - |
local.identifier.eid | 2-s2.0-85041121884 | - |
local.identifier.edn | UYKGDC | - |
Располагается в коллекциях: | Научные публикации, проиндексированные в SCOPUS и WoS CC |
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