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Water piped

Health and Safety Aspects. The U.S. EPA has significantly reduced the aHowed levels of antimony compounds in drinking water causing a toxicity cloud over the viabHity of this class of stabilizers. Presently, antimony products are no longer aHowed for use as potable water pipe stabilizers pending completion of NSE International s review (28). Eor these reasons, the future of this stabilizer technology appears limited. [Pg.552]

Chlorinated PVC (CPVC) is used in higher temperature apphcations such as hot-water piping. Because of its superior creep resistance, CPVC is also used in automated fire-safety sprinkler systems. [Pg.507]

Saline Water for Municipal Distribution. Only a very small amount of potable water is actually taken by people or animals internally, and it is quite uneconomical to desalinate all municipally piped water, although all distributed water must be clear and free of harmful bacteria. Most of the water piped to cities and industry is used for Htfle more than to carry off small amounts of waste materials or waste heat. In many locations, seawater can be used for most of this service. If chlorination is requited, it can be accompHshed by direct electrolysis of the dissolved salt (21). Arrayed against the obvious advantage of economy, there are several disadvantages use of seawater requites different detergents sewage treatment plants must be modified the usual metal pipes, pumps, condensers, coolers, meters, and other equipment corrode more readily chlorination could cause environmental poUution and dual water systems must be built and maintained. [Pg.237]

Generally, the concentration of antimony in the air varies from 1 x 10 mg/m to 170 x 10 mg/m and can be as high as 1000 x 10 mg/m neat antimony processing faciHties (33). Because of the stabiHty of antimony in aqueous systems, the concentration of dissolved antimony in fivers is very small (about 5 ppb antimony). Also, despite the fact that antimony is in the solder used in water pipes, it does not appear to dissolve in the drinking water. [Pg.199]

Polyethylene water piping is not damaged by freezing. Pipe and tubing 2 in and smaller are shipped in coils several hundred feet in length. [Pg.979]

Changing the ambient temperature around the pipe to a temperature that 1 avoid low-temperature problems. Burying water pipes below the frost line or running them through a heated building are the two most common examples of this method. [Pg.1011]

Specimen Location Emergency service water pipe... [Pg.64]

An emergency system water pipe section was removed because of reduced flow. In places, as much as 40% of the internal cross-sectional area was blocked by tubercular growth (Fig. 3.1). [Pg.64]

Figure 6.7 A small-diameter carbon steel service water pipe perforated by sulfate-reducer corrosion. Figure 6.7 A small-diameter carbon steel service water pipe perforated by sulfate-reducer corrosion.
Figure 6.X7A A corrosion-product and deposit mound on a mild steel service water pipe honeycombed by small tubelike organisms. Each hole is approximately 0.01 in. (0.025 cml in diameter. Figure 6.X7A A corrosion-product and deposit mound on a mild steel service water pipe honeycombed by small tubelike organisms. Each hole is approximately 0.01 in. (0.025 cml in diameter.
Figure 6.20/4 A 1 in. (2.5 cm) diameter mild steel service water pipe containing many small cone-shaped organisms. Figure 6.20/4 A 1 in. (2.5 cm) diameter mild steel service water pipe containing many small cone-shaped organisms.
A weeping leak developed in a carbon steel emergency service water pipe at a circumferential weld emplo3nng a weld-backing ring. A rubberized saddle clamp was used to plug the leak temporarily. After several weeks the section was cut out of the system and the failure was examined. [Pg.147]

Figure 6.21 A longitudinally split carbon steel emergency service water pipe, as in Fig. 6.10. Note the circumferential weld-backing ring, which is consumed on one side. Figure 6.21 A longitudinally split carbon steel emergency service water pipe, as in Fig. 6.10. Note the circumferential weld-backing ring, which is consumed on one side.
Groundwater is vulnerable to pollution by chemicals carried by rainwater, leaching from waste sites or from waste water carrying industrial or agricultural effluent. Treatment of drinking water may remove some, but not all, of these contaminants. Some polycarbonate or metal water pipes that are lined with epoxy resin lacquers may release bisphenol A. [Pg.15]

Capper 100 Cu Ductile, carrasian resistant and a gaad electrical canductar water pipes, electrical wiring. [Pg.7]

Copper capillary fittings are to be used to solder copper water pipes together as shown below ... [Pg.157]

Fig. 1-3 Oak water pipe over 200 years old laid above ground in the Wadgassen Abbey (Saarland) with cast iron clamps (photo Mannes-mann Archives). Fig. 1-3 Oak water pipe over 200 years old laid above ground in the Wadgassen Abbey (Saarland) with cast iron clamps (photo Mannes-mann Archives).
After 1860 in the United States, water mains were only occasionally given coatings of tar. About 18% the activities of Engii.sh undertakings were extended to America, where chiefly bare metal pipelines had previously been laid. Water supply pipes were coated internally with bitumen in America after 1912. Vical (1837) in France and J. Bull (1843) in America introduced the widely known cement mortar as a protective material for water pipes 16]. [Pg.6]

Cement coatings are usually applied as linings for water pipes and water tanks, but occasionally also for external protection of pipelines [7]. Cement is not impervious to water, so electrochemical reactions can take place on the surface of the object to be protected. Because of the similar processes occurring at the interface of cement and object and reinforcing steel and concrete, data on the system iron/ cement mortar are dealt with in this chapter taking into account the action of electrolytes with and without electrochemical polarization. To ensure corrosion protection, certain requirements must be met (see Section 5.3 and Chapter 19). [Pg.154]

Water pipe length 2 to 4 m, 1.3 m deep soil pipe length 12 m, 1 m covering. The disbonding is clearly time dependent. [Pg.159]

Cooling water pipes are essential for the operation of power stations and must not cease to function. Pipelines for fire fighting are also important for safety reasons. Such steel pipelines are usually well coated. At areas of unavoidable damage to the pipe coating, there is an increased danger due to cell formation between steel and concrete where local corrosion rates of >1 mm a are to be expected [4], Damage to pipelines for fire fighting has frequently been observed after only a few years in service. [Pg.312]

As mentioned earlier, heavy fuels need to be kept at a temperature where the viseosity of the fuel is limited to 20 eentistokes at the fuel nozzles. Heat traeing is used to maintain pipes and the material that pipes eontain at temperatures above the ambient temperature. Two eommon uses of heat traeing are preventing water pipes from freezing and maintaining fuel oil pipes at high enough... [Pg.459]

Sizing Cooling Water Piping in New Plants Maximum Allowable Flow, Velocity and Pressure Drop... [Pg.5]

In agriculture and horticulture plastics are most widely known in film form but they also find use for water piping containers, automatic watering equipment and potato chitting trays to name but a few uses. [Pg.14]


See other pages where Water piped is mentioned: [Pg.545]    [Pg.549]    [Pg.552]    [Pg.31]    [Pg.220]    [Pg.432]    [Pg.98]    [Pg.316]    [Pg.5]    [Pg.347]    [Pg.73]    [Pg.336]    [Pg.319]    [Pg.367]    [Pg.283]    [Pg.1011]    [Pg.116]    [Pg.127]    [Pg.5]    [Pg.7]    [Pg.22]    [Pg.173]    [Pg.296]    [Pg.446]    [Pg.492]    [Pg.73]   
See also in sourсe #XX -- [ Pg.241 ]




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