TY - JOUR
T1 - Investigation of steel corrosion near the air–liquid interface in NaCl solution and soil environment
AU - Yang, Muye
AU - Kainuma, Shigenobu
N1 - Publisher Copyright:
© 2021 Institute of Materials, Minerals and Mining Published by Taylor & Francis on behalf of the Institute.
PY - 2021
Y1 - 2021
N2 - To examine the macro-galvanic corrosion of carbon steel near the air–liquid interface, a test panel of array electrodes was developed for investigating the corrosion behaviour in NaCl solution and wet soil environment. The corrosion rates were evaluated by electrochemical approaches and verified by the corrosion exposure tests. The analysis focused on the interaction between the macrocell and microcell according to the ZRA, EIS, and OCP measurements. Test results reveal that the coexisting of macrocell and microcell corrosion would change the position of maximum corrosion, and it was inferred the relationship of actual current density and microcell current density. In addition, the wet soil environment shows both microcell and macrocell corrosion near the air–liquid interface should be more severe than that in an iso-concentrated NaCl aq environment, whereas its macro-galvanic interaction of steel at the deep region should be smaller due to the low-diffusion rate in the soil environment.
AB - To examine the macro-galvanic corrosion of carbon steel near the air–liquid interface, a test panel of array electrodes was developed for investigating the corrosion behaviour in NaCl solution and wet soil environment. The corrosion rates were evaluated by electrochemical approaches and verified by the corrosion exposure tests. The analysis focused on the interaction between the macrocell and microcell according to the ZRA, EIS, and OCP measurements. Test results reveal that the coexisting of macrocell and microcell corrosion would change the position of maximum corrosion, and it was inferred the relationship of actual current density and microcell current density. In addition, the wet soil environment shows both microcell and macrocell corrosion near the air–liquid interface should be more severe than that in an iso-concentrated NaCl aq environment, whereas its macro-galvanic interaction of steel at the deep region should be smaller due to the low-diffusion rate in the soil environment.
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U2 - 10.1080/1478422X.2021.1943818
DO - 10.1080/1478422X.2021.1943818
M3 - Article
AN - SCOPUS:85109098418
SN - 1478-422X
VL - 56
SP - 690
EP - 702
JO - Corrosion Engineering Science and Technology
JF - Corrosion Engineering Science and Technology
IS - 7
ER -