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Oxide-coated titanium anode

Plate anodes were used for corrosion protection in order to avoid damage due to erosion and cavitation. These consisted of enamelled steel bodies in which a metal oxide-coated titanium anode 1 dm in surface area was fitted. The enamel... [Pg.470]

Cathodic Protection Systems. Metal anodes using either platinum [7440-06 ] metal or precious metal oxide coatings on titanium, niobium [7440-03-17, or tantalum [7440-25-7] substrates are extensively used for impressed current cathodic protection systems. A prime appHcation is the use of platinum-coated titanium anodes for protection of the hulls of marine vessels. The controUed feature of these systems has created an attractive alternative... [Pg.119]

Figure 19-1 shows the experimental setup with the position of the steel test pieces and the anodes. The anodes were oxide-coated titanium wires and polymer cable anodes (see Sections 7.2.3 and 7.2.4). The mixed-metal experimental details are given in Table 19-1. The experiments were carried out galvanostatically with reference electrodes equipped to measure the potential once a day. Thus, contamination of the concrete by the electrolytes of the reference electrodes was excluded. The potentials of the protected steel test pieces are shown in Table 19-1. The potentials of the anodes were between U(2u-cuso4 = -1-15 and -1.35 V. [Pg.429]

Canister anodes consist of a spirally wound galvanised steel outer casing containing a carbonaceous based extender which surrounds the primary anode element which may be graphite, silicon iron, magnetite, platinised titanium, mixed metal oxide-coated titanium or platinised niobium, etc. [Pg.163]

The oxide coatings are porous and therefore the limitations on operating voltage for platinised titanium anodes apply as well to the oxide-coated titanium electrodes. It has been reported that breakdown of mixed metal oxide anodes may occur at 50-60 V in low-chloride concentration water but at only 10 V in chloride-rich environments . [Pg.173]

The most recently developed anode for the cathodic protection of steel in concrete is mixed metal oxide coated titanium mesh The anode mesh is made from commercially pure titanium sheet approximately 0-5-2mm thick depending upon the manufacturer, expanded to provide a diamond shaped mesh in the range of 35 x 75 to 100 x 200 mm. The mesh size selected is dictated by the required cathode current density and the mesh manufacturer. The anode mesh is supplied in strips which may be joined on site using spot welded connections to a titanium strip or niobium crimps, whilst electrical connections to the d.c. power source are made at selected locations in a suitably encapsulated or crimped connection. The mesh is then fitted to the concrete using non-metallic fixings. [Pg.191]

Use Hardener for platinum and palladinum in jewelry, electrical contact alloys, catalyst, medical instruments, corrosion-resistant alloys, electrodeposited coatings, nitrogen-fixing agent (experimental), solar cells (experimental) the oxide is used to coat titanium anodes in electrolytic production of chloride the dioxide serves as an oxidizer in photolysis of hydrogen sulfide. [Pg.1100]

This anode consists of an expanded titanium mesh with a catalytic mixed metal oxide coating. The anode is fixed to the concrete surface and then overlaid with concrete. This is usually dry spray shotcrete on vertical and soffit surfaces or cast on top surfaces and decks. It is also available in a number of mesh sizes and as a ribbon (described separately). [Pg.162]

Figure 7. II (a) A mixed metal oxide coated titanium mesh anode being overlaid on a bridge in Baltimore MD. Courtesy Jack Bennett, (b) Extreme example of an overlay failure on a titanium mesh anode. Oregon Inlet N. Carolina USA.The whole bridge was swept away in a storm a few years after the author took this photograph. [Pg.164]

As stated in the anode descriptions earlier, there are also two NACE test methods for cathodic protection anodes. These are TM 0294 on embeddable anodes (mixed metal oxide coated titanium, mesh, ribbon, tnbes, rods and conductive ceramic tubes) and TMO1105-2005 on organic-based condnc-tive coating anodes. In addition there is a specification for applying thermal sprayed zinc anodes to concrete American Welding Society (2002). [Pg.182]

Radjenovic J et al (2011) Electrochemical oxidation of trace organic contaminants in reverse osmosis concentrate using Ru02/Ir02—coated titanium anodes. Water Res 45(4) 1579-1586... [Pg.651]


See other pages where Oxide-coated titanium anode is mentioned: [Pg.220]    [Pg.305]    [Pg.326]    [Pg.220]    [Pg.305]    [Pg.580]    [Pg.699]    [Pg.220]    [Pg.305]    [Pg.326]    [Pg.220]    [Pg.305]    [Pg.580]    [Pg.699]    [Pg.486]    [Pg.477]    [Pg.234]    [Pg.289]    [Pg.143]    [Pg.676]    [Pg.486]    [Pg.382]    [Pg.210]    [Pg.3]    [Pg.486]    [Pg.319]    [Pg.432]    [Pg.167]    [Pg.191]    [Pg.390]    [Pg.2844]    [Pg.146]    [Pg.572]    [Pg.579]    [Pg.79]    [Pg.227]   
See also in sourсe #XX -- [ Pg.326 ]




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Anode oxidation

Anodes coatings

Anodes oxides

Anodes titanium

Anodic oxidation

Anodic oxides

Anodized coatings

Coated anodes

Coatings anodic oxidation

Oxide coating

Oxide-coated anodes

Oxides titanium oxide

Oxidic coatings

Titanium Oxide Coatings

Titanium anodized

Titanium anodizing

Titanium oxidized

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