2020
DOI: 10.3390/ma13092158
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AC Corrosion of Carbon Steel under Cathodic Protection Condition: Assessment, Criteria and Mechanism. A Review

Abstract: Cathodic protection (CP), in combination with an insulating coating, is a preventative system to control corrosion of buried carbon steel pipes. The corrosion protection of coating defects is achieved by means of a cathodic polarization below the protection potential, namely −0.85 V vs. CSE (CSE, copper-copper sulfate reference electrode) for carbon steel in aerated soil. The presence of alternating current (AC) interference, induced by high-voltage power lines (HVPL) or AC-electrified railways, may represent … Show more

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Cited by 20 publications
(5 citation statements)
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“…However, AC voltage is rarely used in experiments to model AC interference because it is reported to be a less accurate parameter. [42][43][44] On the other hand, the measurement of AC current density is hard to perform, but it could be calculated using AC voltage together with the equation below [43] :…”
Section: Ac Current Densitymentioning
confidence: 99%
See 3 more Smart Citations
“…However, AC voltage is rarely used in experiments to model AC interference because it is reported to be a less accurate parameter. [42][43][44] On the other hand, the measurement of AC current density is hard to perform, but it could be calculated using AC voltage together with the equation below [43] :…”
Section: Ac Current Densitymentioning
confidence: 99%
“…[11,13,14,26,45] There is a general agreement that in the absence of cathodic protection, the DC potential of pipeline steel decreases and the corrosion of steel becomes more severe with increasing AC current density. [10,11,13,14,22,43] Usually, the negative change of the potential means that the steel is less corrosive. This conflict demonstrates the complexity of AC corrosion and how much cathodic protection should be applied becomes complicated when AC is involved.…”
Section: Ac Current Densitymentioning
confidence: 99%
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“…[1][2][3][4] New organic molecules can be used to mitigate corrosion damage of reinforced concrete forming a protective film that acts as barrier on chloride penetration. [5][6][7] DMEA, triethylenetetramine (TETA), and sodium benzoate have been proposed as promising inhibitors for their efficiency in concrete under long-term DOI: 10.1002/masy.202200165 exposure tests, with a reliable increase in the critical chloride content to initiate corrosion. [7] The formation of a passive film formed by different organic inhibitors that expose COOˉgroups or amine groups on carbon steel has been investigated experimentally and theoretically using molecular mechanics (MM) and molecular dynamics (MD) simulations.…”
Section: Introductionmentioning
confidence: 99%