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Characterization of Microbially-Influenced Corrosion (MIC) Under Cathodic Protection Conditions
The corrosion of carbon steel due to the metabolic activity of bacteria, specifically sulfate-reducing bacteria (SRB), is known as Microbially-Influenced Corrosion (MIC). This type of corrosion usually results in a form of localized corrosion, e.g., crevice corrosion. The present research is intended to explore the effectiveness of cathodic protection in eliminating or limiting the destructive effects of MIC.
Characterization of Microbially-Influenced Corrosion (MIC) Under Cathodic Protection Conditions
The corrosion of carbon steel due to the metabolic activity of bacteria, specifically sulfate-reducing bacteria (SRB), is known as Microbially-Influenced Corrosion (MIC). This type of corrosion usually results in a form of localized corrosion, e.g., crevice corrosion. The present research is intended to explore the effectiveness of cathodic protection in eliminating or limiting the destructive effects of MIC.
Characterization of Microbially-Influenced Corrosion (MIC) Under Cathodic Protection Conditions
D. D. Macdonald (author) / R. Unz (author)
1994
17 pages
Report
No indication
English
Corrosion & Corrosion Inhibition , Iron & Iron Alloys , Corrosion , Cathodic protection , Carbon steels , Solutions(Mixtures) , Acid base equilibrium , Biochemistry , Electrochemistry , Voltage , Substrates , Metabolism , Hydrogen , Electrodes , Electrolytes , Sulfates , Electrical impedance , Concentration(Chemistry) , Microbiology , Biodeterioration , Anaerobic bacteria , Reduction(Chemistry) , Mic(Microbiologically influenced corrosion) , Srb(Sulfate reducing bacteria)
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