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Preventing Corrosion

Geiiings P J 1976 introduotion to Corrosion Prevention and Controi for Engineers Nijgh-Woiters-Noordhoff Universitaire Uitgevers Rotterdam... [Pg.2734]

Munger C G 1984 Corrosion Prevention by Protective Coatings (Houston, TX National Association of Corrosion Engineers)... [Pg.2739]

These fibers may find use in controUed release of dmgs, bactericides, and corrosion prevention chemicals (103). Fibers with different active groups have been made for sorption of chemicals. These fibers are designed to replace granular sorbents for air purification, for example, in air filtration masks (104). [Pg.285]

One of the first attempts to produce polyurethane was from the reaction of an intermediate polyol of 1,3- and l,4-bis(hydroxyhexa uoroisopropyl)benzene m- and -12F-diols) by reaction with epichlorohydrin. This polyol was subsequentiy allowed to react with a commercial triisocyanate, resulting in a tough, cross-linked polyurethane (129,135,139). ASTM and military specification tests on these polyurethanes for weather resistance, corrosion prevention, bUster resistance, and ease of cleaning showed them to compare quite favorably with standard resin formulations. [Pg.540]

Corrosion. Anticorrosion measures have become standard ia pipeline desiga, coastmctioa, and maintenance ia the oil and gas iadustries the principal measures are appHcation of corrosion-preventive coatings and cathodic protection for exterior protection and chemical additives for iaterior protectioa. Pipe for pipelines may be bought with a variety of coatiags, such as tar, fiber glass, felt and heavy paper, epoxy, polyethylene, etc, either pre-apphed or coated and wrapped on the job with special machines as the pipe is lowered iato the treach. An electric detector is used to determine if a coatiag gap (hoHday) exists bare spots are coated before the pipe is laid (see Corrosion and corrosion control). [Pg.50]

Replacing one carbon atom of naphthalene with an a2omethene linkage creates the isomeric heterocycles 1- and 2-a2anaphthalene. Better known by their trivial names quinoline [91-22-5] (1) and isoquinoline [119-65-3] (2), these compounds have been the subject of extensive investigation since their extraction from coal tar in the nineteenth century. The variety of studies cover fields as diverse as molecular orbital theory and corrosion prevention. There is also a vast patent Hterature. The best assurance of continuing interest is the frequency with which quinoline and isoquinoline stmctures occur in alkaloids (qv) and pharmaceuticals (qv), for example, quinine [130-95-0] and morphine [57-27-2] (see Alkaloids). [Pg.388]

Corrosion prevention (liners, coatings, cathodic protection)... [Pg.321]

In most cylindrical carbon—zinc cells, the zinc anode also serves as the container for the cell. The zinc can is made by drawing or extmsion. Mercury [7439-97-6J has traditionally been incorporated in the cell to improve the corrosion resistance of the anode, but the industry is in the process of removing this material because of environmental concerns. Corrosion prevention is especially important in cylindrical cells because of the tendency toward pitting of the zinc can which leads to perforation and electrolyte leakage. Other cell types, such as flat cells, do not suffer as much from this problem. [Pg.522]

Arnold, J.R., In Proc. Automotive and Corrosion Prevention Conference. Society of Automotive Engineers, Warrendale, PA, 1986, p. 21. [Pg.1006]

One of the reasons why it is important to remove suspended solids in water is that the particles can act as a source of food and housing for bacteria. Not only does this make microbiological control much harder but, high bacteria levels increase the fouling of distribution lines and especially heat transfer equipment that receive processed waters (for example, in one s household hot water heater). The removal of suspended contaminants enables chemical treatments to be at their primary jobs of scale and corrosion prevention and microbial control. [Pg.243]

In the above discussion only the drillstem was discussed. However, when designing other systems in drilling operation, such as drilling fluid systems and casing design to name a few, the engineer must also consider corrosion prevention. [Pg.1326]

Temporary corrosion preventives are products designed for the short-term protection of metal surfaces. They are easily removable, if necessary, by petroleum solvents or by other means such as wiping or alkaline stripping. Some products for use in internal machine parts are miscible and compatible with the eventual service lubricant, and do not, therefore, need to be removed. [Pg.880]

Hence, the hot-dip compounds, or greases smeared cold, are better for assemblies with non-metallic parts masked if necessary. Solvent-containing protectives therefore find greater application in the protection of simple parts or components. The available means of application, the nature of any additional packaging and the economics and scale of the protective treatment are further factors that influence the choice of type of temporary corrosion preventive. [Pg.881]


See other pages where Preventing Corrosion is mentioned: [Pg.922]    [Pg.524]    [Pg.10]    [Pg.308]    [Pg.316]    [Pg.320]    [Pg.320]    [Pg.536]    [Pg.283]    [Pg.44]    [Pg.440]    [Pg.440]    [Pg.55]    [Pg.950]    [Pg.360]    [Pg.4]    [Pg.843]    [Pg.843]    [Pg.843]    [Pg.880]    [Pg.880]    [Pg.880]    [Pg.880]    [Pg.881]    [Pg.881]    [Pg.887]    [Pg.305]    [Pg.447]    [Pg.448]    [Pg.448]    [Pg.449]    [Pg.450]    [Pg.451]    [Pg.452]    [Pg.453]    [Pg.454]   
See also in sourсe #XX -- [ Pg.900 ]




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Additives corrosion prevention

Aqueous solutions corrosion prevention with

Atmospheric corrosion prevention

Coatings to prevent corrosion

Coatings, for corrosion prevention

Concrete Technology for Corrosion Prevention

Condensate corrosion prevention methods

Corrosion Prevention Barriers

Corrosion Prevention Measures

Corrosion and Its Prevention

Corrosion and its Prevention in the Mining Industry

Corrosion control prevention measures

Corrosion fatigue prevention

Corrosion preventing compounds

Corrosion preventing compounds CPCs)

Corrosion prevention

Corrosion prevention

Corrosion prevention and control

Corrosion prevention anodic

Corrosion prevention cathodic

Corrosion prevention caustic system

Corrosion prevention chemistry

Corrosion prevention chlorine system

Corrosion prevention chromates

Corrosion prevention coating effectiveness

Corrosion prevention coatings

Corrosion prevention design

Corrosion prevention electrochemical polarization

Corrosion prevention electrolyzer

Corrosion prevention inhibitors

Corrosion prevention material selection

Corrosion prevention microstructure

Corrosion prevention of by dehydrating gas

Corrosion prevention organic coatings

Corrosion prevention performance testing

Corrosion prevention pitting potential

Corrosion prevention processes

Corrosion prevention surface films

Corrosion prevention systems

Corrosion prevention, polyanilines

Corrosion preventive properties

Corrosion preventive properties lubricating greases

Corrosive condition, prevention

Crevice corrosion prevention

Electrochemistry corrosion prevention

Erosion-corrosion prevention

External Corrosion Prevention

Fretting corrosion prevention

Galvanic corrosion preventing

Galvanic corrosion prevention

Hinton, Corrosion prevention and control

How do we prevent the corrosion of an oil rig

Importance of Corrosion and Prevention Efforts

Intergranular corrosion prevention

Localized corrosion prevention

Lubricating greases, corrosion preventive

Microbial corrosion prevention

Microbiologically influenced corrosion prevention

Nanomaterials in corrosion prevention

Operational considerations corrosion prevention

Organic monolayers corrosion prevention

Paint, for corrosion prevention

Pitting corrosion prevention

Polymers in Corrosion Prevention and Control

Preventing Corrosion of Iron

Prevention of Corrosion Damage

Prevention of Corrosion Fatigue

Prevention of Galvanic Corrosion

Prevention of corrosion

Prevention of corrosion protective oxide layers

Prevention of crevice corrosion

Problem of corrosion and its prevention

Rubber corrosion prevention

Rubber lining corrosion prevention

Sacrificial anode, corrosion prevention

Steel corrosion prevention

Stress corrosion cracking prevention

Surfactants corrosion prevention with

The use of coatings to prevent corrosion in process vessels operating at elevated temperatures and pressures

Uniform corrosion prevention

Weldments corrosion prevention

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