Skip to main content
Top
Published in: Glass and Ceramics 3-4/2019

01-08-2019

Mechanochemical Oxidation of Aluminum: Formation of the Porous Structure of Aluminum Hydroxides and Oxides

Authors: A. A. Il’in, R. N. Rumyantsev, K. K. Dao, A. A. Chuyasova, U. S. Uzhevskaya, D. S. Popov, A. P. Il’in

Published in: Glass and Ceramics | Issue 3-4/2019

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The main characteristics of aluminum oxides and hydroxides obtained by mechanochemical oxidation of aluminum powder, both in the initial state and after their heat-treatment in the interval 150 – 1100°C, are compared. The conditions for obtaining pseudoboehmite by thermal activation of mechanically oxidized product were established. The structure, morphology, and texture of the pseudoboehmite structure of aluminum hydroxide synthesized from mechanically oxidized product and aluminum oxides obtained on its basis in the temperature interval 450 – 1100°C are characterized.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Yu. A. Mazalov, A. V. Fedotov, A. V. Bersh, et al., “Outlook for applications of nanocrystalline aluminum oxides and hydroxides,” Tekhnol. Metallov, No. 1, 8 – 11 (2008). Yu. A. Mazalov, A. V. Fedotov, A. V. Bersh, et al., “Outlook for applications of nanocrystalline aluminum oxides and hydroxides,” Tekhnol. Metallov, No. 1, 8 – 11 (2008).
2.
go back to reference P. A. Vityaz, A. F. Ilyushenko, L. V. Sudnik, et al., Functional Materials Based on Nanostructured Aluminum Hydroxide Powders [in Russian], Belarus. Navuka, Minsk (2010). P. A. Vityaz, A. F. Ilyushenko, L. V. Sudnik, et al., Functional Materials Based on Nanostructured Aluminum Hydroxide Powders [in Russian], Belarus. Navuka, Minsk (2010).
3.
go back to reference A. S. Ivanova, “Aluminum oxide and systems based on it: properties, applications,” Kinetika i Kataliz, 53(4), 446 – 457 (2012). A. S. Ivanova, “Aluminum oxide and systems based on it: properties, applications,” Kinetika i Kataliz, 53(4), 446 – 457 (2012).
4.
go back to reference A. A. Ilyin, R. N. Rumyantsev, A. P. Ilyin, et al., “Mechanochemical oxidation of aluminum for obtaining its oxides, hydroxides, and hydrogen,” Zh. Fiz. Khim., 90(4), 1 – 7 (2016). A. A. Ilyin, R. N. Rumyantsev, A. P. Ilyin, et al., “Mechanochemical oxidation of aluminum for obtaining its oxides, hydroxides, and hydrogen,” Zh. Fiz. Khim., 90(4), 1 – 7 (2016).
5.
go back to reference Yu. Yu. Tanashev, E. M. Moroz, L. A. Isupova, et al., “Obtaining aluminum oxides based on the products of rapid thermal decomposition of hydrargillite in a centrifugal flash reactor. I. Physico-chemical properties of the products of centrifugal thermo-activation of hydrargillite,” Kinetika i Kataliz, 48(1), 161 – 170 (2007). Yu. Yu. Tanashev, E. M. Moroz, L. A. Isupova, et al., “Obtaining aluminum oxides based on the products of rapid thermal decomposition of hydrargillite in a centrifugal flash reactor. I. Physico-chemical properties of the products of centrifugal thermo-activation of hydrargillite,” Kinetika i Kataliz, 48(1), 161 – 170 (2007).
6.
go back to reference E. V. Kul’ko, A. S. Ivanova, V. Yu. Kruglyakov, et al., “Production of aluminum oxides based on the products of rapid thermal decomposition of hydrargillite in a centrifugal flash-reactor. II. Structural and textural properties of hydroxide and aluminum oxide, obtained on the basis of the products of centrifugal-thermal activation of hydrargillite (CTA-product),” Kinetika i Kataliz, 48(2), 332 – 342 (2007). E. V. Kul’ko, A. S. Ivanova, V. Yu. Kruglyakov, et al., “Production of aluminum oxides based on the products of rapid thermal decomposition of hydrargillite in a centrifugal flash-reactor. II. Structural and textural properties of hydroxide and aluminum oxide, obtained on the basis of the products of centrifugal-thermal activation of hydrargillite (CTA-product),” Kinetika i Kataliz, 48(2), 332 – 342 (2007).
7.
go back to reference A. P. Lysenko, E. S. Kondratieva, and S. Yu. Shilovskii, “Electrochemical technology for the production of aluminum hydroxide, including the purification of aluminum chloride solution by removal of iron,” Tsvetn. Met., No. 5, 41 – 44 (2018). A. P. Lysenko, E. S. Kondratieva, and S. Yu. Shilovskii, “Electrochemical technology for the production of aluminum hydroxide, including the purification of aluminum chloride solution by removal of iron,” Tsvetn. Met., No. 5, 41 – 44 (2018).
8.
go back to reference V. Yu. Tregubenko, I. E. Udras, and A. S. Bely, “Obtaining mesoporous Y-Al2O3 from organic-acid peptized aluminum hydroxide,” Zh. Prikl. Khim., 90(12), 1632 – 1639 (2017). V. Yu. Tregubenko, I. E. Udras, and A. S. Bely, “Obtaining mesoporous Y-Al2O3 from organic-acid peptized aluminum hydroxide,” Zh. Prikl. Khim., 90(12), 1632 – 1639 (2017).
9.
go back to reference T. M. Karimov, A. D. Muhammadiev, I. I. Gilmutdinov, et al., “Experimental study of the process of producing aluminum hydroxide (boehmite) by hydrothermal synthesis,” Vest. Tekhnolog. Univer., 21(4), 95 – 97 (2018). T. M. Karimov, A. D. Muhammadiev, I. I. Gilmutdinov, et al., “Experimental study of the process of producing aluminum hydroxide (boehmite) by hydrothermal synthesis,” Vest. Tekhnolog. Univer., 21(4), 95 – 97 (2018).
10.
go back to reference I. A. Kuznetsov, V. S. Chernoskutov,M. A. Perestoronina, et al., “Ways to produce coarse-grained aluminum hydroxide at the Ural Aluminum Plant,” Tsvetn. Met., No. 1, 57 – 62 (2007). I. A. Kuznetsov, V. S. Chernoskutov,M. A. Perestoronina, et al., “Ways to produce coarse-grained aluminum hydroxide at the Ural Aluminum Plant,” Tsvetn. Met., No. 1, 57 – 62 (2007).
11.
go back to reference Yu. V. Sharikov, F. Yu. Sharikov, and O. V. Titov, “Optimal control of firing processes in the production of aluminum hydroxide and cement clinker in rotary tube furnaces,” Teor. Osnovy Khim. Tekhnolog., 51(4), 478 – 482 (2017). Yu. V. Sharikov, F. Yu. Sharikov, and O. V. Titov, “Optimal control of firing processes in the production of aluminum hydroxide and cement clinker in rotary tube furnaces,” Teor. Osnovy Khim. Tekhnolog., 51(4), 478 – 482 (2017).
12.
go back to reference V. A. Loseva, A. M. Gavrilenkov, A. N. Barannikova, and S. B. Zueva, Method of Producing Aluminum Oxide, RF Pat. No. 2260563 [in Russian], pub. September 20, 2005. V. A. Loseva, A. M. Gavrilenkov, A. N. Barannikova, and S. B. Zueva, Method of Producing Aluminum Oxide, RF Pat. No. 2260563 [in Russian], pub. September 20, 2005.
13.
go back to reference V. K. Smirnov, A. B. Bodry, K. N. Irisova, et al., Method for Producing Aluminum Hydroxide Powder (Variants) and Method for Producing Aluminum Oxide, RF Pat. No. 2432318 [in Russian], pub. February 3, 2010. V. K. Smirnov, A. B. Bodry, K. N. Irisova, et al., Method for Producing Aluminum Hydroxide Powder (Variants) and Method for Producing Aluminum Oxide, RF Pat. No. 2432318 [in Russian], pub. February 3, 2010.
14.
go back to reference A. S. Ivanova, N. V. Karasyuk, V. Yu. Kruglyakov, et al., Method for Producing Aluminum Hydroxide with Pseudo-Boehmite Structure and Gamma-Alumina Based on It, RF Pat. No. 2234460 [in Russian], pub. May 15, 2003. A. S. Ivanova, N. V. Karasyuk, V. Yu. Kruglyakov, et al., Method for Producing Aluminum Hydroxide with Pseudo-Boehmite Structure and Gamma-Alumina Based on It, RF Pat. No. 2234460 [in Russian], pub. May 15, 2003.
15.
go back to reference A. S. Ivanova, “Real structure of metastable forms of aluminum oxide,” Kinetika i Kataliz, 41(1), 155 – 160 (2000). A. S. Ivanova, “Real structure of metastable forms of aluminum oxide,” Kinetika i Kataliz, 41(1), 155 – 160 (2000).
16.
go back to reference A. A. Il’in, N. N. Smirnov, R. N. Rumyantsev et al, “Mechanochemical synthesis of zinc oxides using liquid and gaseous media,” Zh. Prikl. Zpektrosk., 87(10), 1410 (2014). A. A. Il’in, N. N. Smirnov, R. N. Rumyantsev et al, “Mechanochemical synthesis of zinc oxides using liquid and gaseous media,” Zh. Prikl. Zpektrosk., 87(10), 1410 (2014).
17.
go back to reference R. N. Rumyantsev, A. A. Il’in, A. P. Il’in, et al., “Mechanochemical synthesis of iron oxide from iron scrap,” Izv. Vyssh. Uchebn. Zaved., Ser. Khim. Khimich. Tekhnol., 54(3), 50 – 53 (2011). R. N. Rumyantsev, A. A. Il’in, A. P. Il’in, et al., “Mechanochemical synthesis of iron oxide from iron scrap,” Izv. Vyssh. Uchebn. Zaved., Ser. Khim. Khimich. Tekhnol., 54(3), 50 – 53 (2011).
18.
go back to reference A. A. Il’in, R. N. Rumyantsev, A. P. Il’in, and N. N. Smirnov, Izv. Vyssh. Uchebn. Zaved., Ser. Khim. Khimich. Tekhnol., 54(1), 103 – 107 (2011). A. A. Il’in, R. N. Rumyantsev, A. P. Il’in, and N. N. Smirnov, Izv. Vyssh. Uchebn. Zaved., Ser. Khim. Khimich. Tekhnol., 54(1), 103 – 107 (2011).
19.
go back to reference K. Jost, Rontgenbeugung in Kristallen, Akad. Vlg, Berlin (1975). K. Jost, Rontgenbeugung in Kristallen, Akad. Vlg, Berlin (1975).
Metadata
Title
Mechanochemical Oxidation of Aluminum: Formation of the Porous Structure of Aluminum Hydroxides and Oxides
Authors
A. A. Il’in
R. N. Rumyantsev
K. K. Dao
A. A. Chuyasova
U. S. Uzhevskaya
D. S. Popov
A. P. Il’in
Publication date
01-08-2019
Publisher
Springer US
Published in
Glass and Ceramics / Issue 3-4/2019
Print ISSN: 0361-7610
Electronic ISSN: 1573-8515
DOI
https://doi.org/10.1007/s10717-019-00152-z

Other articles of this Issue 3-4/2019

Glass and Ceramics 3-4/2019 Go to the issue

Premium Partners