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Cathodic protection is one of the most effective methods of preventing corrosion on pipelines. It is applied to pipelines and minimizes the damage of corrosive attacks. The area to be protected, the required current, and soil resistivity are all factors to take into account when utilizing these products.
The average current density required for cathodic protection is 2 milliamperes per square foot of bare area.
Cathodic protection also is required for underground piping systems located within 10 feet of steel reinforced concrete because galvanic corrosion will occur between the steel rebar and the pipeline.
In theory, cathodic protection can be used to protect any metallic structure in contact with a bulk electrolyte. However, it is most commonly used to protect steel structures buried in soil or submerged in water in practice. Cathodic protection systems protect a variety of metallic structures in various situations.
Cathodic Protection (CP) is one of the most effective ways to prevent corrosion of natural gas pipes. Metals, especially galvanized steel, corrode in the presence of oxygen, water, and other impurities such as sulfur. This protective measure is used in many applications including pipelines and ships.
Cathodic protection is a common method used in various industries that uses a low electrical current to prevent corrosion of metal structures such as pipelines, tanks, steel-pier piles and offshore oil platforms. For protection of steel pipelines, cathodic protection has been used since the 1930s.
Vessels, pipelines and tanks (including ballast tanks) which are used to store or transport liquids can also be protected from corrosion on their internal surfaces by the use of cathodic protection. ICCP and galvanic systems can be used.