Document Type
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BL
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Record Number
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874437
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Main Entry
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Videla, HectorA.
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Title & Author
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Manual of Biocorrosion.
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Publication Statement
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Boca Raton :: Routledge,, 2018.
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Page. NO
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1 online resource (294 pages)
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ISBN
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0203748190
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: 9780203748190
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1351433873
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9781351433877
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Notes
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Chapter 6: DETECTION, IDENTIFICATION. AND MONITORING.
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Contents
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Cover; Half Title; ABOUT THE COVER; Title Page; Copyright Page; DEDICATION; ACKNOWLEDGEMENTS; AUTHOR; PREFACE; Table of Contents; Chapter 1: INTRODUCTION; 1.1. Definitions; 1.2. A Brief Historical Retrospective; 1.3. The Microorganisms; 1.4. The Metal; 1.5. The Aqueous Medium; 1.6. A Present Perspective on Biocorrosion; 1.7. Biodeterioration and Biodegradation; 1.8. Key Features; References; Chapter 2: MICROBIOLOGICAL ASPECTS; 2.1. Introduction; 2.2. Classification of Microorganisms; 2.3. Cellular Structure; 2.3.1. Cellular Size; 2.3.2. Cellular Shape; 2.3.3. Chemical Composition.
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2.3.4. Prokaryotic Cell Structure2.4. Microbial Metabolism and Nutrition; 2.5. Microbial Growth; 2.6. Microorganisms Related to Corrosion Processes; 2.6.1. Prokaryotic Microorganisms; 2.6.2. Eukaryotic Microorganisms; 2.6.2.1. Fungi; 2.6.2.2. Microalgae; 2.7. The Role of Microorganisms in Corrosion; 2.8. Key Features; References; Chapter 3: BIOFILMS AND BIOFOULING; 3.1. Introduction; 3.2. Biofouling Formation in Seawater; 3.3. The Biofilm and Its Effects; 3.4. The Interface and Its Effects; 3.5. Classic and New Concepts on the Biofilm; 3.5.1. Biofilm Structure.
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3.5.2. Innovative Techniques for Biofilm Observation3.6. Biofilm-Corrosion Products Interactions; 3.6.1. Corrosion-Resistant Alloys; 3.6.2. Intermediate Corrosion-Resistant Alloys; 3.6.3. Low Corrosion-Resistant Alloys; 3.7. Two Practical Cases of Biofilm/Corrosion Product Interactions; 3. 7 .1. Practical Case l: South Atlantic Offshore OiI Production; 3.7.2. Practical Case 2: Coastal Power Plant Cooling Water Systems; 3.8. Key Features; References; Chapter 4: FUNDAMENTALS OF ELECTROCHEMISTRY; 4.1. Introduction; 4.2. Basic Electrochemical Corrosion; 4.2.1. Localized Corrosion.
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4.2.2. Passivation4.2.3. Pitting and Crevice Corrosion; 4.2.4. Selective Dissolution and lntergranular Corrosion; 4.2.5. Stress Corrosion Cracking and Corrosion Fatigue; 4.2.6. Hydrogen Damage; 4.3. Classical Mechanisms for Biocorrosion; 4.4. Electrochemical Methods to Evaluate Biocorrosion: Pros and Cons; 4.4.1. General Recommendations; 4.4.2. Electrochemical Parameters and Techniques Used in Biocorrosion Studies; 4.4.2.1. Open-Circuit Potential or Corrosion Potential; 4.4.2.2. Reduction-Oxidation (Redox) Potential; 4.4.2.3. Direct Current Polarization Methods.
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4.4.2.4. Electrical Resistance Probes4.4.2.5. Split-Cell Measurements; 4.4.2.6. Alternating Current Methods; 4.4.2.7. Electrochemical Noise Analysis (ENA); 4.5 Key Features; References; Chapter 5: CORROSION INHIBITION BY BACTERIA; 5.1. Introduction; 5.2. Microbial Inhibition of Corrosion: Mechanisms; 5.2.1. Microbial Inhibition by Neutralizing the Effects of Corrosive Substances; 5.2.2. Microbial Inhibition by Forming or Stabilizing Protective Films on a Metal Surface; 5.2.3. Microbial Inhibition by Decreasing the Medium Corrosiveness; 5.3. Key Features; References.
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Subject
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Corrosion and anti-corrosives.
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Subject
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Materials-- Biodegradation.
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Subject
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Materials-- Microbiology.
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Subject
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Anticorrosion.
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Subject
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Corrosion.
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Subject
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Matériaux-- Biodégradation.
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Subject
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Matériaux-- Microbiologie.
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Subject
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Corrosao (engenharia quimica)
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Subject
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Corrosion and anti-corrosives.
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Subject
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Materials-- Biodegradation.
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Subject
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Materials-- Microbiology.
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Subject
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TECHNOLOGY ENGINEERING-- Engineering (General)
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Subject
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TECHNOLOGY ENGINEERING-- Reference.
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Dewey Classification
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620.1/1223
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LC Classification
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TA418.74.V53 1996
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