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CHAPTER 51
1949 Guide
be red lead paint tinted to a black or brown color, black paint made according to Federal Specification TT-P-61, red iron oxide paint con forming to Federal Specification TT-P-31, or white or light tinted paint made according to Federal Specification TT-P-40.
Another paint which has had some use for priming iron and steel is zinc chromate paint.
Under some conditions, a chlorinated rubber base paint made according to Federal Specification TT-P-91 may be used for the finishing coat, particularly where the presence of highly corrosive gases or contact with strong alkaline water would injure the standard paints. Rubber base paints should be used only for the finishing coat over regular priming and second coats.
BURIED PIPE LINES
Lines that 'are cold 'and in intimate contact with the earth are corroded from the same-causes as in mineral waters, but pitting is usually more intense due to variations in concentration of salts and oxygen in solution and presence of solid materials, such as cinder in contact with metal pipe. Galvanic currents, induced by contact of certain dissolved constituents in the soil, often act over a large area, and accelerate corrosion where they
leave the pipe line.
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Certain bacteria that thrive in the absence of oxygen have the power to obtain hydrogen and dissociate sulphates in the soil with a resultant pro duction of hydrogen sulfide which attacks the iron to form iron sulphide. Other bacteria have preference for cathodic hydrogen and by removing it keep natural corrosion going on at a rapid rate.
Stray electric currents from electric power generating stations some times find their way. into buried steel structures and do damage in pro portion to the current , density where the current leaves the metal to enter the ground.
Pipe Materials
Under many conditions where steel would be corroded, the use of corrosion-resistant metals other than steel may be desirable even if greater in first' cost. Stainless steel, copper, red brass, and bronze will resist corrosion and may, at times, be used to advantage. Sheet lead linings are excellent to prevent corrosion, and lead pipe will resist corrosion both on the exterior and interior when used for buried pipe lines as well as for pipe for general purposes; Galvanized iron pipe will resist corrosion, for various periods of time depending on the soil and how long the galvanized coating lasts. The zinc used for the galvanized coating is on the electro chemical protective side of the iron and the zinc is corroded and changed to zinc compounds before the iron is attacked. This accounts for the pro tection afforded by galvanized iron. Even if some protection is obtained, eventually the galvanized coatings are destroyed by chemical action and the corrosion of the steel begins.
Protective Coating
Protective coatings for buried pipe lines are in a class by themselves because of the unusual service conditions, and because it it not possible to maintain them by recoating when necessary. Buried steel pipe lines have been protected against corrosion with considerable success by the use of very thick bituminous coatings applied in molten condition. The best
Corrosion and Water Formed Deposits, Causes and Prevention
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results are obtained by applying the bituminous coatings over a standard priming coat such as red lead or a bituminous paint, and for long service
it has been found that after the bituminous coatings are applied, a wrap ping of asbestos fabric saturated with bitumens will prevent movement and displacement of the bituminous coatings and add greatly to the length of time satisfactory protection will be maintained.
Cathodic Protection
Protection is obtained by rendering the structure cathodic to the sur rounding water or soil by means of a controlled difference of potential. This method, which has proved satisfactory and economical on a number of gas and oil pipe lines underground, has also been applied with some success to the protection of the inside of water storage tanks and other structures that are in contact continuously with water. Protective coatings that insulate a large portion of the metal surface will reduce very materially the total amount of protective current that it is necessary to impress on bare anodic areas to arrest corrosion.'
For each structure, it is necessary to determine or estimate the mini mum current density required and design the anode or anodes so that the necessary protection can be obtained most economically. In water having relatively high electrical conductivity such as in sea water, this is com paratively easy compared with fresh water. In .the latter, the composition of the water is.a niajor factor. It is therefore desirable to obtain an accur ate estimate of the minimum, current density required. The current is then controlled by the potential between the anode and the structure to be protected.'
Rectifiers have generally proved to be the most practical means, for supplying the necessary current for protection of surfaces in contact with neutral waters34.
HANDLING WATER TREATING CHEMICALS
. Virtually all the chemicals used in water conditioning are injurious if
taken internally , in large doses. Many also cause-severe skin irritation;
Thus, they should be handled with caution.
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Caustic soda, lime, and concentrated sulphuric acid will bum the flesh. In addition, if mixed with small amount's of water, sufficient heat may be generated so that spattering occurs or the container becomes too hot to
handle.
The chlorophenol compounds, even in the low concentrations used in water conditioning, have been reported36 to produce dermatitis. Chromitch is not uncommon among workers handling chromates. The amines are said to be absorbed through the skin36. Morpholine is said to cause kidney and lung trouble when so absorbed.
Chlorine gas irritates the skin, eyes, and mucous membranes. Concen trations as low as 0.004 per cent by volume in air cause dangerous illness in 0.5 to 1 hour.
When relatively large amounts of the non-gaseous chemicals are to be handled, protective clothing, including goggles, should always be pro vided, and a shower head or its equivalent provided at or very hear the point, where the chemicals are mixed. Chemicals should always be washed from the skin with large volumes of water.