Тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plants

The authors present the results of a study on kinetics of hydrogen generation by heterogeneous compositions with aluminum exposed to γ-irradiation in air, in different aqueous solutions at room temperature and high temperature annealing. It has been found that hydrogen generation kinetics depends on...

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Main Authors: V.K. Milinchuk, E.R. Klinshpont, V.I. Belozerov, I.S. Khavroshina, E.I. Sadikov
Format: Article
Language:English
Published: National Research Nuclear University (MEPhI) 2016-09-01
Series:Nuclear Energy and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2452303816300759
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spelling doaj-43cad80d1e5d4618ba68d44f9dcb35a62020-11-25T01:58:27ZengNational Research Nuclear University (MEPhI)Nuclear Energy and Technology2452-30382016-09-012320921310.1016/j.nucet.2016.07.004Тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plantsV.K. MilinchukE.R. KlinshpontV.I. BelozerovI.S. KhavroshinaE.I. SadikovThe authors present the results of a study on kinetics of hydrogen generation by heterogeneous compositions with aluminum exposed to γ-irradiation in air, in different aqueous solutions at room temperature and high temperature annealing. It has been found that hydrogen generation kinetics depends on the γ-irradiation dose, temperature and aqueous medium chemistry. Changes in hydrogen generation kinetics are due to transformations of aluminum oxide coatings influenced by factors simulating the NPP conditions. The effect of metal oxide coating transformations should be considered in predicting the corrosion resistance of NPP structural materials.http://www.sciencedirect.com/science/article/pii/S2452303816300759AluminiumAluminium oxideWaterHydrogenIrradiation doseGeneration kineticsAnnealingOxide coating transformation
collection DOAJ
language English
format Article
sources DOAJ
author V.K. Milinchuk
E.R. Klinshpont
V.I. Belozerov
I.S. Khavroshina
E.I. Sadikov
spellingShingle V.K. Milinchuk
E.R. Klinshpont
V.I. Belozerov
I.S. Khavroshina
E.I. Sadikov
Тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plants
Nuclear Energy and Technology
Aluminium
Aluminium oxide
Water
Hydrogen
Irradiation dose
Generation kinetics
Annealing
Oxide coating transformation
author_facet V.K. Milinchuk
E.R. Klinshpont
V.I. Belozerov
I.S. Khavroshina
E.I. Sadikov
author_sort V.K. Milinchuk
title Тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plants
title_short Тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plants
title_full Тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plants
title_fullStr Тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plants
title_full_unstemmed Тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plants
title_sort тhe transformation of the oxide coatings of aluminum by imitation factors of nuclear power plants
publisher National Research Nuclear University (MEPhI)
series Nuclear Energy and Technology
issn 2452-3038
publishDate 2016-09-01
description The authors present the results of a study on kinetics of hydrogen generation by heterogeneous compositions with aluminum exposed to γ-irradiation in air, in different aqueous solutions at room temperature and high temperature annealing. It has been found that hydrogen generation kinetics depends on the γ-irradiation dose, temperature and aqueous medium chemistry. Changes in hydrogen generation kinetics are due to transformations of aluminum oxide coatings influenced by factors simulating the NPP conditions. The effect of metal oxide coating transformations should be considered in predicting the corrosion resistance of NPP structural materials.
topic Aluminium
Aluminium oxide
Water
Hydrogen
Irradiation dose
Generation kinetics
Annealing
Oxide coating transformation
url http://www.sciencedirect.com/science/article/pii/S2452303816300759
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AT iskhavroshina thetransformationoftheoxidecoatingsofaluminumbyimitationfactorsofnuclearpowerplants
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