NACE CP2: Cathodic Protection 2

Corrosion is one of the most important problems encountered by the owners and operators of underground, offshore, submerged and other metallic structures exposed to an electrolyte.

About this Course

Corrosion is one of the most important problems encountered by the owners and operators of underground, offshore, submerged and other metallic structures exposed to an electrolyte. If corrosion is not controlled, it can lead to large costs in repairs or facility replacement. Even greater costs can be incurred from environmental damage, injuries and fatalities.

The Cathodic Protection Technician certification indicates intermediate-level knowledge of corrosion theory and CP concepts, types of CP systems, and advanced field measurement techniques. This certification is designed for individuals with a heavy engineering/scientific background and some working knowledge of cathodic protection, or who have extensive years of field experience with some technical background.

Course learning objectives

  • Test and troubleshoot rectifier component parts
  • Perform simulated CP related field tests (including interrupted structure-to-electrolyte potentials, current requirement, continuity, shorted road/railroad casing and, layer soil resistivity tests) and evaluate the results
  • Perform tests to verify the presence of stray current interference (primarily related to underground pipelines) and recommend method(s) to mitigate the interference
  • Conduct and interpret different current measurements
  • Interpret voltage (IR) free readings, polarization formation and decay tests
  • Maintain records, including data plotting and analysis
  • Summarize induced AC voltage on pipelines and the methods of mitigation
  • Purpose and uses of corrosion coupon test stations
  • Depending on the jurisdiction review code CP criteria requirements related to CP
  • Day One

     

    Pre test

     

    Chapter 1—Corrosion Theory

    1. The Corrosion Cell
    • Driving Force for Corrosion
    • Electrolyte
    1. Corrosion Rate
    • Faraday’s Law
    • Voltage Difference
    • Reference Electrodes (Half-Cells)
    • Polarization
    • Passivity
    1. Forms of Corrosion

     

    Chapter 2—Cathodic Protection Fundamentals

     

    1. Concept of Cathodic Protection
    2. Polarization of a Structure
    3. Current Requirement
    • Surface Area
    • Polarization
    • Effect of Environment pH on CP Current Requirement
    • Temperature Effect on CP Current Requirement
    • Effect of Oxidizers on CP Current Requirement
    • Effect of Relative Movement Between the Structure and
    • Applied Current vs. Corrosion Rate
    1. Criteria for Cathodic Protection
    • RP0169 Criteria
    • Basis of RP0169 Criteria
    • Polarized Potential
    • Application of Criteria
    • Other Criteria
    1. International Standard ISO 15589-1
    2. American Water Works Association
    3. Non-NACE International Criteria
    4. E log I

     

    Day Two

     

    Chapter 3—Cathodic Protection Systems

     

    1. Components of Galvanic Cathodic Protection
    • Anodes
    • Anode Backfill
    • Wiring and Connections
    1. Components of Impressed Current Cathodic Protection
    • Applications of Impressed Current Cathodic Protection
    • Anodes
    • Anode Backfill
    • Power Supply
    • Wiring and Connections
    1. Environmental Issues
    2. Anode Configurations
    • Galvanic Anodes
    • Impressed Current Anodes
    1. Experiment 3.1 Demonstrate the Use of a Sacrificial Anode to Mitigate Corrosion in a Local Action Cell
    2. Experiment 3.2 Demonstrate the Used of an Impressed Current System to Mitigate Local Action Cell Corrosion

     

    Chapter 4—DC Power Sources for Cathodic Protection

     

    1. Transformer-Rectifier
    • Circuit Breakers
    • Transformer
    • Rectifying Circuits
    1. Other Power Sources
    • Engine Generator Sets
    • Thermoelectric Generators
    • Solar Power Supplies
    • Wind-Driven Generators
    • Batteries
    • Fuel Cells
    1. Rectifier Testing
    • Output Problems
    • Circuit Diagrams
    • Electrical Damage
    • Efficiency Test
    • Filters
    • Detection of Cable Breaks
    • Testing Transformers

     

    Day Three

     

    Chapter 5—Safety

     

    1. Introduction
    2. Electrical
    3. Electrical Equipment (Rectifiers)
    • Electrical Equipment (Rectifier) Case
    • Cathodic Protection Rectifiers
    1. Lock Out / Tag Out
    2. Electrical Hazardous Areas
    3. Explosions or Ignitions
    4. Cathodic Protection Surveys
    5. Induced AC Voltages
    6. Excavations
    7. Hazardous Material
    8. Material Safety Data Sheets (MSDS)
    9. Reaction Products
    10. Other General Precautions

     

    Chapter 6—Field Measurements

     

    1. General
    2. Measurement of Cathodic Protection Effectiveness
    3. Structure-to-Electrolyte Potentials
      • The Potential Measurement Circuit and Measurement Error
      • Voltage Drop Errors in the Potential Measurement Due to
      • Current in the Pipeline
    4. IR Drop Error Determination and Correction
      • Current Interruption
      • Reference Electrode Near the Structure
      • External CP Coupons
      • Reference Electrode at Remote Earth
      • Stepwise Current Reduction Method
    5. Surface Potential Surveys
      • Close Interval Potential Survey
      • Analysis of Surface Potential Surveys

     

    Day Four

     

    1. Current Measurement
      • Using an Ammeter to Measure Current
      • Using a Shunt to Determine Current Magnitude
    • Zero Resistance Ammeter
    • Clamp-On Ammeter
    • Pipeline Current Measurements
      • Earth Current Measurements
      • Non-Cathodically Protected Structures
    1. Surface Coating Evaluation Techniques on Buried Pipelines
    • Pearson Survey
    • Direct Current Voltage Gradient (DCVG) Survey
    • Pipeline Current Mapping
    • Coating Resistance Calculations
    1. Current Requirement Tests
    2. Electrical Isolation
    • Indication of Problems
    • Locating the Problem
    • Testing Above Grade Isolating Flange/Unions
    • Structure-to-Electrolyte Potential for Isolation Testing
    • Interrupted Structure-to-Electrolyte Potential to Test Isolation
    • DC Line Current to Test Isolation
    • Fixed Cell to Moving Ground for Continuity Test
    • Current Response
    1. Casings
    • Indication of Problems
    • Locating the Problem
    1. Soil Resistivity Testing
    • Purposes
    • Measurement Techniques
    1. Measuring pH
    2. Concrete Structures
    3. Direct Inspection
    4. Leak Frequency
    5. In-Line Inspection

     

    Day Five

     

    Chapter 7—Stray Current and CP Interference

     

    1. Stray Current
    2. Dynamic Currents
    • Sources of Dynamic Stray Currents
    • Detecting Dynamic Stray Currents
    1. Static (Steady State) Currents
    2. Cathodic Interference
    • Anodic Interference
    • Detection of Static Interference Currents
    1. Sample Field Data
    • Structure-to-Electrolyte Potentials
    • Current Measurements
    1. Resolving Interference Problems
    • Installation of Metallic Bonds to Control Interference
    1. Controlling Stray Current Through Cathodic Protection
    2. Coating
    3. AC Testing and Mitigation
    • Introduction
    • Electrostatic or Capacitive Coupling
    • Electromagnetic Induction
    • Resistance or Conductive Coupling
    • AC Voltage on Pipelines
    • Measurement of AC Voltage to Ground
    • Mitigation of AC Interference

     

    Chapter 8—Monitoring and Records

     

    1. Major Objectives of a Cathodic Protection System
    2. Monitoring
    3. Detailed Field Survey
    • Pre-Survey Planning
    • Survey Methods
    • Routine Reading
    • Inspection Intervals
    • Records
    Useful Information

 5850 USD

About this course:
Venues

London

Duration:

5 Days

Date

13th July 2025

Course Details Files:

Click to Check PDF

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