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Erschienen in: Polymer Science, Series D 2/2022

01.06.2022

Sorption Interactions in the Hydroxyapatite–CuSO4 Aqueous Solution System

verfasst von: T. V. Smotrina, O. V. Stoyanov

Erschienen in: Polymer Science, Series D | Ausgabe 2/2022

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Abstract

The adsorption of copper(II) ions by synthetic hydroxyapatite is considered. We show that the sorption of metal ions proceeds predominantly in the mixed-diffusion region, while the chemical interaction described by the pseudo-second-order kinetic equation has a significant influence on the rate of the process. The adsorption isotherm is described in the best way by the Langmuir monomolecular adsorption equation. The interaction between hydroxyapatite and water is studied with NMR relaxation spectroscopy.

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Literatur
1.
Zurück zum Zitat V. D. Doan, M. A. Trubitsyn, V. T. Le, F. C. Nguen, and E. A. Gudkova, “Investigation of sorption of lead ion from simulated body fluid solution by nanocrystalline Ca-deficient carbonated hydroxyapatite,” Sorbtsionnye Khromatogr. Protsessy 15 (2), 269–279 (2015). V. D. Doan, M. A. Trubitsyn, V. T. Le, F. C. Nguen, and E. A. Gudkova, “Investigation of sorption of lead ion from simulated body fluid solution by nanocrystalline Ca-deficient carbonated hydroxyapatite,” Sorbtsionnye Khromatogr. Protsessy 15 (2), 269–279 (2015).
2.
Zurück zum Zitat M. A. Orlova, A. L. Nikolaev, T. P. Trofimova, A. V. Severin, A. V. Gopin, N. S. Zolotova, V. K. Dolgova, and A. P. Orlov, “Specific properties of hydroxyapatite as a potential transporter of copper ions and its complexes,” Russ. Chem. Bull. 68, 1102–1108 (2019).CrossRef M. A. Orlova, A. L. Nikolaev, T. P. Trofimova, A. V. Severin, A. V. Gopin, N. S. Zolotova, V. K. Dolgova, and A. P. Orlov, “Specific properties of hydroxyapatite as a potential transporter of copper ions and its complexes,” Russ. Chem. Bull. 68, 1102–1108 (2019).CrossRef
3.
Zurück zum Zitat I. V. Melikhov, V. F. Komarov, A. V. Severin, V. E. Bozhevol’nov, and V. N. Rudin, Two-dimensional crystalline hydroxyapatite,” Dokl. Phys. Chem. 373, 125–128 (2000). I. V. Melikhov, V. F. Komarov, A. V. Severin, V. E. Bozhevol’nov, and V. N. Rudin, Two-dimensional crystalline hydroxyapatite,” Dokl. Phys. Chem. 373, 125–128 (2000).
4.
Zurück zum Zitat A. V. Vnuchkin, S. F. Grebennikov, and N. P. Novoselov, Sorption Processes (St. Petersburg State University of Industrial Technologies and Design, St. Petersburg, 2011) [in Russian]. A. V. Vnuchkin, S. F. Grebennikov, and N. P. Novoselov, Sorption Processes (St. Petersburg State University of Industrial Technologies and Design, St. Petersburg, 2011) [in Russian].
5.
Zurück zum Zitat S. Hafner, D. E. Demco, and R. Kimmich, “Magic echoes and NMR imaging of solids,” Solid State Nucl. Magn. Reson. 6, 275–293 (1995).CrossRef S. Hafner, D. E. Demco, and R. Kimmich, “Magic echoes and NMR imaging of solids,” Solid State Nucl. Magn. Reson. 6, 275–293 (1995).CrossRef
6.
Zurück zum Zitat L. Y. Grunin, Y. B. Grunin, N. N. Sheveleva, I. A. Nikolaev, and E. A. Nikolskaya, “An NMR relaxation and spin diffusion study of cellulose structure during water adsorption,” Biophysics (Moscow) 62, 198–206 (2017).CrossRef L. Y. Grunin, Y. B. Grunin, N. N. Sheveleva, I. A. Nikolaev, and E. A. Nikolskaya, “An NMR relaxation and spin diffusion study of cellulose structure during water adsorption,” Biophysics (Moscow) 62, 198–206 (2017).CrossRef
7.
8.
Zurück zum Zitat A. Corami, S. Mignardi, and V. Ferrini, “Cadmium removal from single- and multimetal (Cd + Pb + Zn + Cu) solutions by sorption on hydroxyapatite,” J. Colloid Interface Sci. 317, 402–408 (2008).CrossRef A. Corami, S. Mignardi, and V. Ferrini, “Cadmium removal from single- and multimetal (Cd + Pb + Zn + Cu) solutions by sorption on hydroxyapatite,” J. Colloid Interface Sci. 317, 402–408 (2008).CrossRef
9.
Zurück zum Zitat F. von Helfferich, Ionenaustauscher, Vol. 1: Grundlagen Struktur-Herstellung-Theorie (Verlag Chemie, Weinheim, 1959; Izd. Inostrannoi Literatury, Moscow, 1962). F. von Helfferich, Ionenaustauscher, Vol. 1: Grundlagen Struktur-Herstellung-Theorie (Verlag Chemie, Weinheim, 1959; Izd. Inostrannoi Literatury, Moscow, 1962).
10.
Zurück zum Zitat S. Azizian, “Kinetic models of sorption: a theoretical analysis,” J. Colloid Interface Sci. 276, 47–62 (2004).CrossRef S. Azizian, “Kinetic models of sorption: a theoretical analysis,” J. Colloid Interface Sci. 276, 47–62 (2004).CrossRef
11.
Zurück zum Zitat A. S. Berlyand, A. P. Snyakin, and A. A. Prokopov, “Adsorption capacity of hydroxyapatite for several amino acids and heavy metal ions,” Pharm. Chem. J. 46, 292–294 (2012).CrossRef A. S. Berlyand, A. P. Snyakin, and A. A. Prokopov, “Adsorption capacity of hydroxyapatite for several amino acids and heavy metal ions,” Pharm. Chem. J. 46, 292–294 (2012).CrossRef
12.
Zurück zum Zitat R. Akkaya, “Separation of uranium and thorium in aqueous solution using polyhydroxyethylmethacrylate-hydroxyapatite novel composite,” Desalin. Water Treat. 50, 180–188 (2012).CrossRef R. Akkaya, “Separation of uranium and thorium in aqueous solution using polyhydroxyethylmethacrylate-hydroxyapatite novel composite,” Desalin. Water Treat. 50, 180–188 (2012).CrossRef
13.
Zurück zum Zitat R. Akkaya, “Terbium adsorption onto polyhydroxyethylmethacrylate-hydroxyapatite composite and its modified composition by phytic acid,” Desalin. Water Treat. 52, 1440–1447 (2013).CrossRef R. Akkaya, “Terbium adsorption onto polyhydroxyethylmethacrylate-hydroxyapatite composite and its modified composition by phytic acid,” Desalin. Water Treat. 52, 1440–1447 (2013).CrossRef
14.
Zurück zum Zitat I. G. Shaikhiev, “Sorption of iron(III) ions from model solutions using acid-modified sugar beet pulp,” Vestn. Tekhnol. Univ. 20 (4), 143–148 (2017). I. G. Shaikhiev, “Sorption of iron(III) ions from model solutions using acid-modified sugar beet pulp,” Vestn. Tekhnol. Univ. 20 (4), 143–148 (2017).
15.
Zurück zum Zitat T. V. Smotrina, A. V. Severin, and N. V. Shcheglova, “Sorption interaction with water of hydroxyapatite, hyaluronic acid, and β-casein, individual components of synthetic biomineral compositions,” Polym. Sci., Ser. B 61, 442–450 (2019).CrossRef T. V. Smotrina, A. V. Severin, and N. V. Shcheglova, “Sorption interaction with water of hydroxyapatite, hyaluronic acid, and β-casein, individual components of synthetic biomineral compositions,” Polym. Sci., Ser. B 61, 442–450 (2019).CrossRef
16.
Zurück zum Zitat T. P. Vavilova, Biochemistry of Tissues and Liquids of Oral Cavity (GEOTAR-Media, Moscow, 2008) [in Russian]. T. P. Vavilova, Biochemistry of Tissues and Liquids of Oral Cavity (GEOTAR-Media, Moscow, 2008) [in Russian].
17.
Zurück zum Zitat E. I. Suvorova, V. V. Klechkovskaya, V. F. Komarov, A. V. Severin, I. V. Melikhov, and P. A. Buffat, “Electron microscopy of biomaterials based on hydroxyapatite,” Crystallogr. Rep. 51 (5), 881–887 (2006).CrossRef E. I. Suvorova, V. V. Klechkovskaya, V. F. Komarov, A. V. Severin, I. V. Melikhov, and P. A. Buffat, “Electron microscopy of biomaterials based on hydroxyapatite,” Crystallogr. Rep. 51 (5), 881–887 (2006).CrossRef
Metadaten
Titel
Sorption Interactions in the Hydroxyapatite–CuSO4 Aqueous Solution System
verfasst von
T. V. Smotrina
O. V. Stoyanov
Publikationsdatum
01.06.2022
Verlag
Pleiades Publishing
Erschienen in
Polymer Science, Series D / Ausgabe 2/2022
Print ISSN: 1995-4212
Elektronische ISSN: 1995-4220
DOI
https://doi.org/10.1134/S1995421222020241

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