Inhibition of Chloride Induced Crevice Corrosion in Alloy 22 by Fluoride Ions

Inhibition of Chloride Induced Crevice Corrosion in Alloy 22 by Fluoride Ions PDF Author: R. B. Rebak
Publisher:
ISBN:
Category :
Languages : en
Pages : 19

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Alloy 22 (N06022) is highly resistant to localized corrosion. Alloy 22 may be susceptible to crevice corrosion in pure chloride (Cl{sup -}) solutions under aggressive environmental conditions. The effect of the fluoride (F{sup -}) over the crevice corrosion induced by chloride ions is still not well established. The objective of the present work was to explore the crevice corrosion resistance of this alloy to different mixtures of fluorides and chlorides. Cyclic potentiodynamic polarization (CPP) tests were conducted in deaerated aqueous solutions of pure halide ions and also in different mixtures of chloride and fluoride at 90 C and pH 6. The range of chloride concentration [Cl{sup -}] was 0.001 M {le} [Cl{sup -}] {le} 1 M and the range of molar fluoride to chloride ratio [F{sup -}]/[Cl{sup -}] was 0.1 {le} [F{sup -}]/[Cl{sup -}] {le} 10. Results showed that Alloy 22 was susceptible to crevice corrosion in all the pure chloride solutions but not in the pure fluoride solutions. Fluoride ions showed an inhibitor behavior only in mixtures with a molar ratio [F{sup -}]/[Cl{sup -}]> 2. For mixtures with a molar ratio [F{sup -}]/[Cl{sup -}] of 7 and 10 the inhibition of crevice corrosion was complete.

Inhibition of Chloride Induced Crevice Corrosion in Alloy 22 by Fluoride Ions

Inhibition of Chloride Induced Crevice Corrosion in Alloy 22 by Fluoride Ions PDF Author: R. B. Rebak
Publisher:
ISBN:
Category :
Languages : en
Pages : 19

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Book Description
Alloy 22 (N06022) is highly resistant to localized corrosion. Alloy 22 may be susceptible to crevice corrosion in pure chloride (Cl{sup -}) solutions under aggressive environmental conditions. The effect of the fluoride (F{sup -}) over the crevice corrosion induced by chloride ions is still not well established. The objective of the present work was to explore the crevice corrosion resistance of this alloy to different mixtures of fluorides and chlorides. Cyclic potentiodynamic polarization (CPP) tests were conducted in deaerated aqueous solutions of pure halide ions and also in different mixtures of chloride and fluoride at 90 C and pH 6. The range of chloride concentration [Cl{sup -}] was 0.001 M {le} [Cl{sup -}] {le} 1 M and the range of molar fluoride to chloride ratio [F{sup -}]/[Cl{sup -}] was 0.1 {le} [F{sup -}]/[Cl{sup -}] {le} 10. Results showed that Alloy 22 was susceptible to crevice corrosion in all the pure chloride solutions but not in the pure fluoride solutions. Fluoride ions showed an inhibitor behavior only in mixtures with a molar ratio [F{sup -}]/[Cl{sup -}]> 2. For mixtures with a molar ratio [F{sup -}]/[Cl{sup -}] of 7 and 10 the inhibition of crevice corrosion was complete.

Crevice Corrosion Susceptibility of Alloy 22 in Fluoride and Chloride Containing Solutions

Crevice Corrosion Susceptibility of Alloy 22 in Fluoride and Chloride Containing Solutions PDF Author: S. D. Day
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Alloy 22 (N06022) is highly resistant to crevice corrosion in pure chloride (Cl{sup -}) solutions. Little research has been conducted to explore the resistance of this alloy to other halides such as fluoride (F{sup -}) and bromide (Br{sup -}). Even less information is available exploring the behavior of localized corrosion for Alloy 22 in mixtures of the halide ions. Standard electrochemical tests such as polarization resistance and cyclic potentiodynamic polarization (CPP), were conducted to explore the resistance to corrosion of Alloy 22 in deaerated aqueous solutions of 1 M NaCl, 1 M NaF and 0.5 M NaCl + 0.5 M NaF solutions at 60 C and 90 C. Results show that the general corrosion rate was the lowest in the mixed halide solution and the highest in the pure chloride solution. Alloy 22 was not susceptible to localized corrosion in the pure fluoride solution. In 1 M NaCl solution, Alloy 22 was susceptible to crevice corrosion at 90 C. In the mixed halide solution Alloy 22 was susceptible to crevice corrosion both at 60 C and 90 C.

Corrosion Issues in Nuclear Waste Storage: A Symposium in Honor of the 65th Birthday of David Shoesmith

Corrosion Issues in Nuclear Waste Storage: A Symposium in Honor of the 65th Birthday of David Shoesmith PDF Author: J. J. Noël
Publisher: The Electrochemical Society
ISBN: 1566778816
Category : Science
Languages : en
Pages : 43

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Book Description
The papers included in this issue of ECS Transactions were originally presented in the symposium ¿Corrosion Issues in Nuclear Waste Storage: A Symposium in Honor of the 65th Birthday of David Shoesmith¿, held during the 218th meeting of The Electrochemical Society, in Las Vegas, Nevada from October 10 to 15, 2010.

Inhibitive Effect of Fluoride on the Crevice Corrosion of Alloy C-22 Induced by Chloride (Efecto Inhibidor Del Fluoruro Sobre la Corrosi?n en Rendijas de la Aleaci?n C-22 Inducida Por Cloruros).

Inhibitive Effect of Fluoride on the Crevice Corrosion of Alloy C-22 Induced by Chloride (Efecto Inhibidor Del Fluoruro Sobre la Corrosi?n en Rendijas de la Aleaci?n C-22 Inducida Por Cloruros). PDF Author: R. B. Rebak
Publisher:
ISBN:
Category :
Languages : en
Pages : 8

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Scientific Basis for Nuclear Waste Management XXXII: Volume 1124

Scientific Basis for Nuclear Waste Management XXXII: Volume 1124 PDF Author: Neil C. Hyatt
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 624

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Book Description
The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Crevice Repassivation Potential of Alloy 22 in High-Nitrate Dust Deliquescence Type Environments

Crevice Repassivation Potential of Alloy 22 in High-Nitrate Dust Deliquescence Type Environments PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 13

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Book Description
The nitrate ion (NO3−) is an inhibitor for crevice corrosion of Alloy 22 (N06022) in chloride (Cl−) aqueous solutions. Naturally formed electrolytes may contain both chloride and nitrate ions. The higher the ratio R = [NO3−]/[Cl−] in the solution the stronger the inhibition of crevice corrosion. Atmospheric desert dust contains both chloride and nitrate salts, generally based on sodium (Na) and potassium (K). Some of these salts may deliquescence at relatively low humidity at temperatures on the order of 150 C and higher. The resulting deliquescent brines are highly concentrated and especially rich in nitrate. Electrochemical tests have been performed to explore the anodic behavior of Alloy 22 in high chloride high nitrate electrolytes at temperatures as high as 150 C at ambient atmospheres. Naturally formed brines at temperatures higher than 120 C do not induce crevice corrosion in Alloy 22 because they contain high levels of nitrate. The inhibitive effect of nitrate on crevice corrosion is still active for temperatures higher than 100 C.

Scientific Basis for Nuclear Waste Management

Scientific Basis for Nuclear Waste Management PDF Author:
Publisher:
ISBN:
Category : Radioactive waste disposal
Languages : en
Pages : 672

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Effect of Organic Acid Additions on the General and Localized Corrosion Susceptibility of Alloy 22 in Chloride Solutions

Effect of Organic Acid Additions on the General and Localized Corrosion Susceptibility of Alloy 22 in Chloride Solutions PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 10

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Electrochemical studies such as cyclic potentiodynamic polarization (CPP) and electrochemical impedance spectroscopy (EIS) were performed to determine the corrosion behavior of Alloy 22 (N06022) in 1M NaCl solutions at various pH values from acidic to neutral at 90 C. All the tested material was wrought Mill Annealed (MA). Tests were also performed in NaCl solutions containing weak organic acids such as oxalic, acetic, citric and picric. Results show that the corrosion rate of Alloy 22 was significantly higher in solutions containing oxalic acid than in solutions of pure NaCl at the same pH. Citric and picric acids showed a slightly higher corrosion rate, and acetic acid maintained the corrosion rate of pure chloride solutions at the same pH. Organic acids revealed to be weak inhibitors for crevice corrosion. Higher concentration ratios, compared to nitrate ions, were needed to completely inhibit crevice corrosion in chloride solutions. Results are discussed considering acid dissociation constants, buffer capacity and complex formation constants of the different weak acids.

Mechanisms of Inhibition of Crevice Corrosion in Alloy 22

Mechanisms of Inhibition of Crevice Corrosion in Alloy 22 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 9

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Factors Affecting the Crevice Corrosion Susceptibility of Alloy 22

Factors Affecting the Crevice Corrosion Susceptibility of Alloy 22 PDF Author: R. B. Rebak
Publisher:
ISBN:
Category :
Languages : en
Pages : 18

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Book Description
The susceptibility or Alloy 22 (N06022) to crevice corrosion may depend on environmental or external factors and metallurgical or internal factors. Some of the most important environmental factors are chloride concentration, inhibitors, temperature and potential. The presence of a weld seam or second phase precipitation in the alloy are classified as internal factors. The localized corrosion resistance of Alloy 22 has been extensively investigated in the last five years, however not all affecting factors were considered in the studies. This paper discusses the current findings regarding the effect of many of these variables on the susceptibility (or resistance) of Alloy 22 to crevice corrosion. The effect of variables such as temperature, chloride concentration and nitrate are rather well understood. However there are only limited or no data regarding effect of other factors such as pH, other inhibitive or deleterious species and type of crevicing material and crevice geometry. There are contradictory results regarding the effect of metallurgical factors such as solution heat treatment.