Electrochemical corrosion behavior and assessment method of anchor bolts in high-salinity mine water

Corrosion of anchor bolts in deep high-salinity mine water threatens the durability of underground support systems. This study investigated the hydrochemistry of mine water from the −1590 m level of Xiling Mine and the corrosion behavior of HRB400 anchor-bolt steel. The water contained 4245.75 mg·L −1 Cl − , with an E h of −458.01 mV and conductivity of 19.05 mS·cm −1 . Larson Ratio values of 106.87–223.67 indicated high hydrochemical corrosion susceptibility. Triplicate polarization tests showed active corrosion without distinct passivation, yielding a mean corrosion current density of (1.83 ± 0.18) × 10 −5 A·cm −2 . EIS spectra were fitted using an R s –( R ct ||CPE) circuit, with a mean charge-transfer resistance of 3645.73 ± 202.78 Ω·cm 2 . Faraday-law conversion and Arrhenius correction gave a static estimate of 0.506 mm·a −1 at 42 °C, while mass-transfer scaling gave 0.634 mm·a −1 under representative seepage conditions. Static immersion tests yielded 0.478 ± 0.016 and 0.477 ± 0.008 mm·a −1 after 14 and 28 days, respectively, differing from the static estimate by 5.54% and 5.81%. SEM–EDS indicated increasingly heterogeneous oxygen-containing deposits and chloride-associated surface products. These results support corrosion assessment of anchor bolts in deep high-salinity mines.

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Journal
Corrosion Engineering Science and Technology The International Journal of Corrosion Processes and Corrosion Control
Published
2026-09-28
DOI
https://doi.org/10.1177/1478422x261490209
Primary Topic
Corrosion Behavior and Inhibition
Type
article
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Electrochemical corrosion behavior and assessment method of anchor bolts in high-salinity mine water

Shuang You, Junda Wang, Qiancheng Geng, Qixing Feng et al.
Corrosion Engineering Science and Technology The International Journal of Corrosion Processes and Corrosion Control
Corrosion Behavior and Inhibition
article

Electrochemical corrosion behavior and assessment method of anchor bolts in high-salinity mine water

Shuang You, Junda Wang, Qiancheng Geng, Qixing Feng, Juntao Wang
article en

Abstract

Corrosion of anchor bolts in deep high-salinity mine water threatens the durability of underground support systems. This study investigated the hydrochemistry of mine water from the −1590 m level of Xiling Mine and the corrosion behavior of HRB400 anchor-bolt steel. The water contained 4245.75 mg·L −1 Cl − , with an E h of −458.01 mV and conductivity of 19.05 mS·cm −1 . Larson Ratio values of 106.87–223.67 indicated high hydrochemical corrosion susceptibility. Triplicate polarization tests showed active corrosion without distinct passivation, yielding a mean corrosion current density of (1.83 ± 0.18) × 10 −5 A·cm −2 . EIS spectra were fitted using an R s –( R ct ||CPE) circuit, with a mean charge-transfer resistance of 3645.73 ± 202.78 Ω·cm 2 . Faraday-law conversion and Arrhenius correction gave a static estimate of 0.506 mm·a −1 at 42 °C, while mass-transfer scaling gave 0.634 mm·a −1 under representative seepage conditions. Static immersion tests yielded 0.478 ± 0.016 and 0.477 ± 0.008 mm·a −1 after 14 and 28 days, respectively, differing from the static estimate by 5.54% and 5.81%. SEM–EDS indicated increasingly heterogeneous oxygen-containing deposits and chloride-associated surface products. These results support corrosion assessment of anchor bolts in deep high-salinity mines.

Corrosion Engineering Science and Technology The International Journal of Corrosion Processes and Corrosion Control
University of Science and Technology Beijing (CN)
Clean water and sanitation
Openalex Percentile: Top 25%
Corrosion Behavior and Inhibition
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Electrochemical corrosion behavior and assessment method of anchor bolts in high-salinity mine water — Shuang You, Junda Wang, et al. · Corrosion Engineering Science and Technology The International Journal of Corrosion Processes and Corrosion Control (2026) | TGRS Research Map | TGRS