Hybrid nanocomposite coating for biofouling prevention and corrosion resistance
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Abstract
Microorganisms adhered to the metal surface which are highly in
newlinecontact with water cause biofouling and microbially induced corrosion is
newlineknown as the marine corrosion. Microbial adhesion activities alter the
newlinemetal/solution interface significantly, causing changes in ion type and
newlineconcentrations, pH, oxygen levels, flow velocity, and buffering capacity of
newlinethe liquid microenvironment or interface. This characteristic fundamentally
newlinealters the traditional electrochemical interface paradigm employed in
newlinecorrosion research. At the metal/solution interface, two processes will
newlineinfluence metal dissolution: passivity, which is directed from the metal to the
newlinesolution, and biofouling settlement, which is directed towards the metal
newlinesubstratum and the marine corrosion is nothing but when the surrounding
newlineenvironment (e.g., ocean, lake, or sea) includes a naturally high salt moisture
newlinecontent, marine corrosion refers to the breakdown or deterioration of metallic
newlineobjects caused by an electrochemical reaction. Pitting, galvanic, stray current,
newlineand cavitation corrosion are examples of marine corrosion.
newlineThe high salt content in most marine habitats, along with the high
newlineelectrical conductivity, makes marine bodies an ideal environment for metal
newlinecorrosion causing extensive machinery to fail, resulting in significant
newlineeconomic and production losses. In their natural condition, metals have a
newlinedistinct electrical potential. When two metals with different potentials are
newlineelectrically mixed in an electrolytic solution such as salty sea water, electrons
newlinemove from the highly active metal to the less active metal, causing corrosion.
newlineMetal-based corrosion causes massive structural failures and losses in a
newlinevariety of industries. Nanomaterials offer a lot of promise in a variety of technological
newlineapplications because of their anticorrosive and antifouling qualities. The
newlinenanomaterial has a large specific surface area, is chemically resistant, and has
newlineexcellent thermal and electrical characteristics.
newline