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Synthesis and Stability Study of Iron(II) Ascorbatolizinate

Within the framework of this work, the synthesis and study of the stability of a triple chelate iron-containing complex, iron (II) ascorbatolizinate, was carried out. For the synthesis of iron (II) ascorbatolizinate, lysine monohydrochloride, ascorbic acid, iron sulfate, and barium hydroxide were us...

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Main Authors: Blinov, A. V., Блинов, А. В., Gvozdenko, A. A., Гвозденко, А. А., Golik, A. B., Голик, А. Б.
Format: Статья
Language:English
Published: 2024
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Online Access:https://dspace.ncfu.ru/handle/20.500.12258/26463
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spelling ir-20.500.12258-264632024-02-15T08:20:52Z Synthesis and Stability Study of Iron(II) Ascorbatolizinate Blinov, A. V. Блинов, А. В. Gvozdenko, A. A. Гвозденко, А. А. Golik, A. B. Голик, А. Б. Functional foods Quantum chemical modeling Stability Iron deficiency anemia Iron (II) ascorbatolizinate Within the framework of this work, the synthesis and study of the stability of a triple chelate iron-containing complex, iron (II) ascorbatolizinate, was carried out. For the synthesis of iron (II) ascorbatolizinate, lysine monohydrochloride, ascorbic acid, iron sulfate, and barium hydroxide were used. To study the stability of iron (II) ascorbatolizinate, a multifactorial experiment was carried out, which included three input parameters and three levels of variation. The active acidity of the medium, the mixing time, and the temperature of the solution were considered as input parameters. The output parameters were changes in the value of optical density and a change in the value of the redox potential. Within the framework of the study, the optimal configuration of iron (II) ascorbatolizinate was determined by the method of quantum chemical modeling. It has been established that the configuration in which the interaction occurs through the carboxyl group and α-amino group of lysine and through the C2 and C3 hydroxyl groups of ascorbic acid is optimal. It has been shown that iron (II) ascorbatolizinate is chemically stable at the following technological parameters: pH from 4 to 9, exposure time from 5 to 20 min, and temperature from 25 to 60 °C. 2024-02-15T08:19:58Z 2024-02-15T08:19:58Z 2023 Статья Blinov, A., Gvozdenko, A., Golik, A., Maslova, A., Verevkina, M. Synthesis and Stability Study of Iron(II) Ascorbatolizinate // AIP Conference Proceedings. - 2023. - 2931 (1). - статья № 060004. - DOI: 10.1063/5.0178814 http://hdl.handle.net/20.500.12258/26463 en AIP Conference Proceedings application/pdf
institution СКФУ
collection Репозиторий
language English
topic Functional foods
Quantum chemical modeling
Stability
Iron deficiency anemia
Iron (II) ascorbatolizinate
spellingShingle Functional foods
Quantum chemical modeling
Stability
Iron deficiency anemia
Iron (II) ascorbatolizinate
Blinov, A. V.
Блинов, А. В.
Gvozdenko, A. A.
Гвозденко, А. А.
Golik, A. B.
Голик, А. Б.
Synthesis and Stability Study of Iron(II) Ascorbatolizinate
description Within the framework of this work, the synthesis and study of the stability of a triple chelate iron-containing complex, iron (II) ascorbatolizinate, was carried out. For the synthesis of iron (II) ascorbatolizinate, lysine monohydrochloride, ascorbic acid, iron sulfate, and barium hydroxide were used. To study the stability of iron (II) ascorbatolizinate, a multifactorial experiment was carried out, which included three input parameters and three levels of variation. The active acidity of the medium, the mixing time, and the temperature of the solution were considered as input parameters. The output parameters were changes in the value of optical density and a change in the value of the redox potential. Within the framework of the study, the optimal configuration of iron (II) ascorbatolizinate was determined by the method of quantum chemical modeling. It has been established that the configuration in which the interaction occurs through the carboxyl group and α-amino group of lysine and through the C2 and C3 hydroxyl groups of ascorbic acid is optimal. It has been shown that iron (II) ascorbatolizinate is chemically stable at the following technological parameters: pH from 4 to 9, exposure time from 5 to 20 min, and temperature from 25 to 60 °C.
format Статья
author Blinov, A. V.
Блинов, А. В.
Gvozdenko, A. A.
Гвозденко, А. А.
Golik, A. B.
Голик, А. Б.
author_facet Blinov, A. V.
Блинов, А. В.
Gvozdenko, A. A.
Гвозденко, А. А.
Golik, A. B.
Голик, А. Б.
author_sort Blinov, A. V.
title Synthesis and Stability Study of Iron(II) Ascorbatolizinate
title_short Synthesis and Stability Study of Iron(II) Ascorbatolizinate
title_full Synthesis and Stability Study of Iron(II) Ascorbatolizinate
title_fullStr Synthesis and Stability Study of Iron(II) Ascorbatolizinate
title_full_unstemmed Synthesis and Stability Study of Iron(II) Ascorbatolizinate
title_sort synthesis and stability study of iron(ii) ascorbatolizinate
publishDate 2024
url https://dspace.ncfu.ru/handle/20.500.12258/26463
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