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INTRODUCTION Corrosion- It is the gradual destruction of materials (usually metals) by chemical or electrochemical reaction with their environment. Corrosion engineering is the field dedicated to controlling and stopping corrosion. There are three main components necessary for corrosion to occur: Metal (example: iron) Oxygen (usually from the atmosphere) An electrolyte (usually water) Prevention and Control of Corrosion Corrosion prevention techniques can be generally classified into 6 groups: •Environmental Modifications •Metal Selection and Surface Conditions •Cathodic Protection •Corrosion Inhibitors •Coating •Plating Environmental Modification- • Methods to reduce the sulfur, chloride or oxygen content in the surrounding environment can limit the speed of metal corrosion. • For example, feed water for water boilers can be treated with softeners or other chemical media to adjust the hardness, alkalinity or oxygen content in order to reduce corrosion on the interior of the unit. Metal Selection and Surface Conditions- • Proper monitoring and the elimination of unnecessarily vulnerable surface conditions, along with taking steps to ensure that systems are designed to avoid reactive metal combinations and that corrosive agents are not used in the cleaning or maintenance of metal parts are all also part of effective corrosion reduction program. • The development of new alloys, designed to protect against corrosion in specific environments are constantly under production. Nickel alloys and titanium alloys are all examples of alloys designed for corrosion prevention. • Cathodic Protection- This method, known as a sacrificial system, uses metal anodes, introduced to the electrolytic environment, to sacrifice themselves (corrode) in order to protect the cathode. • In a sacrificial system, metallic ions move from the anode to the cathode, which leads the anode to corrode more quickly than it otherwise would. As a result, the anode must regularly be replaced. Example: Using Mg blocks in ships
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