New effective sorbents for purification of aqueous media from technogenic contaminants

Created are the sorbents based on silica gel non-covalently modified with partially hydrogenated heterocyclic compounds (PHHC), containing nitrogen as donor atoms for purification of aqueous media from technogenic contaminants. The investigations show that the modified silica gel is characterized by...

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Бібліографічні деталі
Дата:2017
Автори: Blank, T.A., Belikov, K.N., Bryleva, K.Yu., Shcherbakov, I. B.-Kh., Chebanov, V.A., Muravyova, E.A., Saraev, V.E., Zviagin, I.M., Komykhov, S.A., Ostras, K.S., Chernenko, V.N.
Формат: Стаття
Мова:English
Опубліковано: НТК «Інститут монокристалів» НАН України 2017
Назва видання:Functional Materials
Теми:
Онлайн доступ:http://dspace.nbuv.gov.ua/handle/123456789/136882
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:New effective sorbents for purification of aqueous media from technogenic contaminants / T.A. Blank, K.N. Belikov, K.Yu. Bryleva, I. B. -Kh.Shcherbakov, V.A. Chebanov, E.A. Muravyova, V.E. Saraev, I.M. Zviagin, S.A. Komykhov, K.S. Ostras, V.N. Chernenko // Functional Materials. — 2017. — Т. 24, № 4. — С. 706-714. — Бібліогр.: 23 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
id irk-123456789-136882
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spelling irk-123456789-1368822018-06-17T03:11:39Z New effective sorbents for purification of aqueous media from technogenic contaminants Blank, T.A. Belikov, K.N. Bryleva, K.Yu. Shcherbakov, I. B.-Kh. Chebanov, V.A. Muravyova, E.A. Saraev, V.E. Zviagin, I.M. Komykhov, S.A. Ostras, K.S. Chernenko, V.N. Green chemistry Created are the sorbents based on silica gel non-covalently modified with partially hydrogenated heterocyclic compounds (PHHC), containing nitrogen as donor atoms for purification of aqueous media from technogenic contaminants. The investigations show that the modified silica gel is characterized by a sorption capacity relatively higher than that of unmodified one. The sorption degree of metal ions is studied depending on their concentrations, total mineralization and pH value of the solutions. Conditions for selective sorption of microquantities of Eu³⁺ which has been used as chemically identical to ²⁴¹Am are described. Moreover it was shown that PHHC modified silica gel was potential to use as the sorbent to concentrate the Eu³⁺ and Sr²⁺ metal ions with initial concentrations near 1 mg∙L⁻¹ for the quantitative analysis. Also the possible mechanism of metal ion sorption on the developed sorbents was proposed. Remove selected 2017 Article New effective sorbents for purification of aqueous media from technogenic contaminants / T.A. Blank, K.N. Belikov, K.Yu. Bryleva, I. B. -Kh.Shcherbakov, V.A. Chebanov, E.A. Muravyova, V.E. Saraev, I.M. Zviagin, S.A. Komykhov, K.S. Ostras, V.N. Chernenko // Functional Materials. — 2017. — Т. 24, № 4. — С. 706-714. — Бібліогр.: 23 назв. — англ. 1027-5495 DOI: https://doi.org/10.15407/fm24.04.706 http://dspace.nbuv.gov.ua/handle/123456789/136882 en Functional Materials НТК «Інститут монокристалів» НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
topic Green chemistry
Green chemistry
spellingShingle Green chemistry
Green chemistry
Blank, T.A.
Belikov, K.N.
Bryleva, K.Yu.
Shcherbakov, I. B.-Kh.
Chebanov, V.A.
Muravyova, E.A.
Saraev, V.E.
Zviagin, I.M.
Komykhov, S.A.
Ostras, K.S.
Chernenko, V.N.
New effective sorbents for purification of aqueous media from technogenic contaminants
Functional Materials
description Created are the sorbents based on silica gel non-covalently modified with partially hydrogenated heterocyclic compounds (PHHC), containing nitrogen as donor atoms for purification of aqueous media from technogenic contaminants. The investigations show that the modified silica gel is characterized by a sorption capacity relatively higher than that of unmodified one. The sorption degree of metal ions is studied depending on their concentrations, total mineralization and pH value of the solutions. Conditions for selective sorption of microquantities of Eu³⁺ which has been used as chemically identical to ²⁴¹Am are described. Moreover it was shown that PHHC modified silica gel was potential to use as the sorbent to concentrate the Eu³⁺ and Sr²⁺ metal ions with initial concentrations near 1 mg∙L⁻¹ for the quantitative analysis. Also the possible mechanism of metal ion sorption on the developed sorbents was proposed. Remove selected
format Article
author Blank, T.A.
Belikov, K.N.
Bryleva, K.Yu.
Shcherbakov, I. B.-Kh.
Chebanov, V.A.
Muravyova, E.A.
Saraev, V.E.
Zviagin, I.M.
Komykhov, S.A.
Ostras, K.S.
Chernenko, V.N.
author_facet Blank, T.A.
Belikov, K.N.
Bryleva, K.Yu.
Shcherbakov, I. B.-Kh.
Chebanov, V.A.
Muravyova, E.A.
Saraev, V.E.
Zviagin, I.M.
Komykhov, S.A.
Ostras, K.S.
Chernenko, V.N.
author_sort Blank, T.A.
title New effective sorbents for purification of aqueous media from technogenic contaminants
title_short New effective sorbents for purification of aqueous media from technogenic contaminants
title_full New effective sorbents for purification of aqueous media from technogenic contaminants
title_fullStr New effective sorbents for purification of aqueous media from technogenic contaminants
title_full_unstemmed New effective sorbents for purification of aqueous media from technogenic contaminants
title_sort new effective sorbents for purification of aqueous media from technogenic contaminants
publisher НТК «Інститут монокристалів» НАН України
publishDate 2017
topic_facet Green chemistry
url http://dspace.nbuv.gov.ua/handle/123456789/136882
citation_txt New effective sorbents for purification of aqueous media from technogenic contaminants / T.A. Blank, K.N. Belikov, K.Yu. Bryleva, I. B. -Kh.Shcherbakov, V.A. Chebanov, E.A. Muravyova, V.E. Saraev, I.M. Zviagin, S.A. Komykhov, K.S. Ostras, V.N. Chernenko // Functional Materials. — 2017. — Т. 24, № 4. — С. 706-714. — Бібліогр.: 23 назв. — англ.
series Functional Materials
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first_indexed 2023-10-18T21:14:55Z
last_indexed 2023-10-18T21:14:55Z
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