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Cathodic and Anodic Protection

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AbstractThe sections in this article areHistorical BackgroundBasic ConceptsPrinciples of Cathodic ProtectionCurrent and Potential DistributionPotential MeasurementReference ElectrodesCathodic Protection CriteriaPotential CriteriaKinetic CriteriaContemporary Trends in Cathodic Protection CriteriaDetermination of the Corrosion Current Under Cathodic Protection ConditionsDirect Current MethodsAlternating Current MethodsImpressed Current Cathodic ProtectionElectrical SystemCathodic Protection StationsAnodesPlatinized TitaniumPlatinized Niobium and TantalumMixed Metal OxidesConducting PolymersCarbon BackfillsAnodes InstallationCathodic Protection and CoatingsCathodic DisbondingField Testing of InsulationCase StudySacrificial AnodesZinc AnodesMagnesium AnodesAluminum AnodesBackfillsShape and Dimensions of AnodesInstalling AnodesProtection from Stray CurrentsGeneral Characteristics of Stray CurrentsSources of Stray CurrentsElectric TractionsHigh Voltage Direct Current (HVDC) Transmission LinesCathodic Protection SystemsIndustrial EquipmentCorrosion Caused by Stray CurrentsHazard DeterminationLimiting Hazardous InteractionPreventive ActivitiesElectrochemical ProtectionCathodic Protection of Reinforced Concrete StructuresTheoretical PrinciplesProtection CriteriaReference ElectrodesAnodesExtraction of ChloridesRealkalization of Carbonized ConcreteCathodic PreventionOther Applications of Cathodic ProtectionAlloy SteelsShips and VesselsOffshore StructuresProcess PlantsStorage TanksPower and Telecommunication CablesElectrochemical Protection of Water InstallationsDesigning Cathodic Protection SystemsCurrent and Potential Distribution in a Stationary Electric FieldTransfer Resistance of a Spherical AnodeObjects of Linear SymmetryFinite Difference Method of Electric Field Potential DeterminationAnodic ProtectionTheoretical PrinciplesScope of ApplicationCharacteristics of the MethodFunctioning and EquipmentOperating ParametersElectric SystemsPotentiostatsCathodesReference ElectrodesPolarization MethodProtection RangeCase StudyFurther Development of Electrochemical ProtectionRecent DevelopmentsFuture Prospects
Title: Cathodic and Anodic Protection
Description:
AbstractThe sections in this article areHistorical BackgroundBasic ConceptsPrinciples of Cathodic ProtectionCurrent and Potential DistributionPotential MeasurementReference ElectrodesCathodic Protection CriteriaPotential CriteriaKinetic CriteriaContemporary Trends in Cathodic Protection CriteriaDetermination of the Corrosion Current Under Cathodic Protection ConditionsDirect Current MethodsAlternating Current MethodsImpressed Current Cathodic ProtectionElectrical SystemCathodic Protection StationsAnodesPlatinized TitaniumPlatinized Niobium and TantalumMixed Metal OxidesConducting PolymersCarbon BackfillsAnodes InstallationCathodic Protection and CoatingsCathodic DisbondingField Testing of InsulationCase StudySacrificial AnodesZinc AnodesMagnesium AnodesAluminum AnodesBackfillsShape and Dimensions of AnodesInstalling AnodesProtection from Stray CurrentsGeneral Characteristics of Stray CurrentsSources of Stray CurrentsElectric TractionsHigh Voltage Direct Current (HVDC) Transmission LinesCathodic Protection SystemsIndustrial EquipmentCorrosion Caused by Stray CurrentsHazard DeterminationLimiting Hazardous InteractionPreventive ActivitiesElectrochemical ProtectionCathodic Protection of Reinforced Concrete StructuresTheoretical PrinciplesProtection CriteriaReference ElectrodesAnodesExtraction of ChloridesRealkalization of Carbonized ConcreteCathodic PreventionOther Applications of Cathodic ProtectionAlloy SteelsShips and VesselsOffshore StructuresProcess PlantsStorage TanksPower and Telecommunication CablesElectrochemical Protection of Water InstallationsDesigning Cathodic Protection SystemsCurrent and Potential Distribution in a Stationary Electric FieldTransfer Resistance of a Spherical AnodeObjects of Linear SymmetryFinite Difference Method of Electric Field Potential DeterminationAnodic ProtectionTheoretical PrinciplesScope of ApplicationCharacteristics of the MethodFunctioning and EquipmentOperating ParametersElectric SystemsPotentiostatsCathodesReference ElectrodesPolarization MethodProtection RangeCase StudyFurther Development of Electrochemical ProtectionRecent DevelopmentsFuture Prospects.

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