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Electrochemistry and corrosion science

Author: Nestor Perez
Publisher: Boston : Kluwer Academic, ©2004.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Electrochemistry and Corrosion Science is a graduate level text/professional reference that describes the types of corrosion on metallic materials. The focus will be on modeling and engineering approximation schemes that describe the thermodynamics and kinetics of electrochemical systems. The principles of corrosion behavior and metal recovery are succinctly described with the aid of pictures, figures, graphs and  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Perez, Nestor, 1950-
Electrochemistry and corrosion science.
Boston : Kluwer Academic, ©2004
(DLC) 2004044215
(OCoLC)54530003
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Nestor Perez
ISBN: 1402078609 9781402078606 6610148228 9786610148226
OCLC Number: 55516635
Notes: Includes index.
Description: 1 online resource (xi, 362 pages) : illustrations
Contents: Cover --
Table of Contents --
Preface --
Dedication --
1 FORMS OF CORROSION --
1.1 INTRODUCTION --
1.2 CLASSIFICATION OF CORROSION --
1.3 ATMOSPHERIC CORROSION --
1.4 GALVANIC CORROSION --
1.5 PITTING CORROSION --
1.6 CREVICE CORROSION --
1.7 CORROSION-INDUCED SPALLING --
1.8 STRESS CORROSION CRACKING --
1.9 NONMETALLIC MATERIALS --
1.10 SUMMARY --
1.11 REFERENCES --
2 ELECTROCHEMISTRY --
2.1 INTRODUCTION --
2.2 ELECTRICAL POLES --
2.3 ELECTROCHEMICAL CELLS --
2.4 THERMODYNAMICS --
2.5 STANDARD ELECTRIC POTENTIAL --
2.6 POURBAIX DIAGRAMS --
2.7 ELECTRICAL DOUBLE LAYER --
2.8 DEGREE OF DISSOCIATION --
2.9 SUMMARY --
2.10 PROBLEMS/QUESTIONS --
2.11 REFERENCES --
3 KINETICS OF ACTIVATION POLARIZATION --
3.1 INTRODUCTION --
3.2 ENERGY DISTRIBUTION --
3.3 POLARIZATION --
3.4 ACTIVATION POLARIZATION --
3.5 POLARIZATION METHODS --
3.6 CORROSION RATE --
3.7 IMPEDANCE SPECTROSCOPY --
3.8 CHARACTERIZATION OF ELECTROLYTES --
3.9 ELECTROLYTE CONDUCTIVITY --
3.10 SUMMARY --
3.11 PROBLEMS/QUESTIONS --
3.12 REFERENCES --
4 KINETICS OF CONCENTRATION POLARIZATION --
4.1 INTRODUCTION --
4.2 MASS TRANSFER MODES --
4.3 MIGRATION MOLAR FLUX --
4.4 FICK'S LAWS OF DIFFUSION --
4.5 DIFFUSION AND MIGRATION --
4.6 REVERSIBLE CONCENTRATION CELL --
4.7 LIMITING CURRENT DENSITY --
4.8 GALVANOSTATIC POLARIZATION --
4.9 A.C. POLARIZATION --
4.10 SUMMARY --
4.11 PROBLEMS/QUESTIONS --
4.12 REFERENCES --
5 MIXED POTENTIAL THEORY --
5.1 INTRODUCTION --
5.2 MIXED-ELECTRODE POTENTIAL --
5.3 INTERPRETATION OF POLARIZATION --
5.4 PREDETERMINED CORROSION RATE --
5.5 POLARIZATION OF A GALVANIC CELL --
5.6 EFFECT OF SURFACE AREA --
5.7 SUMMARY --
5.8 REFERENCES --
6 CORROSIVITY AND PASSIVITY --
6.1 INTRODUCTION --
6.2 INSTRUMENTATION --
6.3 POLARIZATION CURVES --
6.4 CYCLIC POLARIZATION CURVES --
6.5 PASSIVE OXIDE FILM --
6.6 KINETICS OF PASSIVATION --
6.7 MECHANISM OF PASSIVATION --
6.8 SUMMARY --
6.9 PROBLEMS --
6.10 REFERENCES --
7 ELECTROMETALLURGY --
7.1 INTRODUCTION --
7.2 ELECTROWINNING --
7.3 MATHEMATICS OF ELECTROWINNING --
7.4 ELECTROREFINING --
7.5 ELECTROPLATING --
7.6 MOLTEN SALT ELECTROLYSIS --
7.7 MOVING BOUNDARY DIFFUSION --
7.8 DIFFUSION AND MIGRATION --
7.9 MASS TRANSFER BY CONVECTION --
7.10 LIMITING CURRENT DENSITY --
7.11 SUMMARY --
7.12 PROBLEMS --
7.13 REFERENCES --
8 CATHODIC PROTECTION --
8.1 INTRODUCTION --
8.2 ELECTROCHEMICAL PRINCIPLES --
8.3 CATHODIC PROTECTION CRITERIA --
8.4 IMPRESSED CURRENT TECHNIQUE --
8.5 STRAY CURRENT TECHNIQUE --
8.6 POTENTIAL ATTENUATION --
8.7 EQUIVALENT CIRCUIT --
8.8 MASS TRANSFER IN A CREVICE --
8.9 CREVICE GROWTH RATE --
8.10 DESIGN FORMULAE --
8.11 DESIGNING PRESSURE VESSELS --
8.12 SUMMARY --
8.13 PROBLEMS/QUESTIONS --
8.14 REFERENCES --
9 ANODIC PROTECTION --
9.1 INTRODUCTION --
9.2 DESIGN CRITERIA --
9.3 RELEVANT DATA --
9.4 SUMMARY --
t
Responsibility: by Nestor Perez.

Abstract:

A graduate level text/professional reference, this work describes the types of corrosion on metallic materials. It focuses on modeling and engineering approximation schemes that describe the  Read more...

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