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Tricalcium

Examples Ca3Mo7024, tricalcium 24-oxoheptamolybdate, may be shortened to tricalcium hep-tamolybdate the anion, MoyOjE, is hep tamo lybdate(6—) S20y , disulfate(2—) P207, diphos-phate(V)(4—). [Pg.219]

Silica and Alumina. The manufacture of Pordand cement is predicated on the reaction of lime with siUca and alumina to form tricalcium sihcate [12168-85-3] and aluminate. However, under certain ambient conditions of compaction with sustained optimum moisture content, lime reacts very slowly to form complex mono- and dicalcium siUcates, ie, cementitious compounds (9,10). If such a moist, compact mixture of lime and siUca is subjected to steam and pressure in an autoclave, the lime—silica reaction is greatiy accelerated, and when sand and aggregate is added, materials of concrete-like hardness are produced. Limestone does not react with siUca and alumina under any circumstances, unless it is first calcined to lime, as in the case of hydrauhc lime or cement manufacture. [Pg.168]

Portland Cement Manufacture. The second greatest use of limestone is as raw material in the manufacture of Pordand cement (10). The average limestone factor per ton of Pordand cement is 1.0—1.1 t of pulverized limestone. The limestone, calcined to lime in the cement rotary kiln, combines with siUca and alumina to form tricalcium siUcate and tricalcium aluminate and other lesser cementing compounds (see Cement). Most cement companies operate captive limestone quarries. [Pg.177]

Several compounds of the CaO—P2O3—H2O system are given in Table 8. The common names for the mono-, di-, and tricalcium phosphates arise from the traditional double-oxide formulas, CaO 2i5p T2O3, 2CaO H2O +205, and 3CaO +205, respectively. These terms are routinely used in industry. With the exception of the monocalcium salt, the calcium phosphates are all sparingly soluble. [Pg.333]

Tricalcium phosphate, Ca2(P0 2> is formed under high temperatures and is unstable toward reaction with moisture below 100°C. The high temperature mineral whidockite [64418-26-4] although often described as P-tricalcium phosphate, is not pure. Whidockite contains small amounts of iron and magnesium. Commercial tricalcium phosphate prepared by the reaction of phosphoric acid and a hydrated lime slurry consists of amorphous or poody crystalline basic calcium phosphates close to the hydroxyapatite composition and has a Ca/P ratio of approximately 3 2. Because this mole ratio can vary widely (1.3—2.0), free lime, calcium hydroxide, and dicalcium phosphate may be present in variable proportion. The highly insoluble basic calcium phosphates precipitate as fine particles, mosdy less than a few micrometers in diameter. The surface area of precipitated hydroxyapatite is approximately... [Pg.334]

Tricalcium Phosphate. Commercial tricalcium phosphate (TCP) is actually an amorphous basic calcium phosphate close to hydroxyapatite in composition. Because of its extremely low solubiUty in water, TCP is precipitated almost quantitatively from dilute phosphate solutions with a slurry of hydrated lime. TCP is separated by dmm-, spray-, or flash-drying the TCP slurry, with or without intermediate sedimentation or filtration steps. It is used as an industrial-grade flow conditioner and parting agent. [Pg.342]

For free-flow agents, water-insoluble, finely divided adsorbents such as sodium siUcoalurninate, tricalcium phosphate, calcium siUcate, magnesium carbonate, and siUcon dioxide are used. Concentrations between 0.5 and 2% are typically added to table salt and some industrial grades of salt for use in apphcations where caking may occur. [Pg.183]

Type V (High Sulfate Resistance). Type V Pordand cement is used in concrete exposed to severe sulfate attack of 1,500 to 10,000 ppm. Low concentrations of tricalcium aluminate [12042-78-3] give Type V its sulfate resistance. The sulfate resistance is improved with air entrainment and low water to cement ratios in the wet concrete. U.S. production of Type V Pordand cement in 1989 was 0.9% of the total Pordand cement production. [Pg.323]

The properties of cured Pordand cement are affected by these four constituents of the manufactured Pordand cement. Tricalcium siHcate hydrates and hardens rapidly, giving rise to the initial set and eady strength. Increased concentrations of tricalcium siHcate causes an increase in the eady strength of Pordand cement concretes. Dicalcium siHcate hydrates and hardens more slowly, giving the cured concrete its strength increases beyond one week. [Pg.323]

Fig. 5. The early hydration reactions of tricalcium aluminate in the presence of gypsum and calcium hydroxide. Initial molar proportions l-C A ... Fig. 5. The early hydration reactions of tricalcium aluminate in the presence of gypsum and calcium hydroxide. Initial molar proportions l-C A ...
Other Ceramic Calcium Phosphate Materials. Other ceramic calcium phosphate materials for repairing bony defect iaclude p-tricalcium phosphate (P-TCP) [7758-87-4], P-Ca2(PO, and biphasic calcium phosphate (BCP) ceramics which consist of both P-TCP and HA. Unlike ceramic HA, P-TCP resorbs ia the tissue (293). The in vivo dissolution of BCP ceramic implants was shown (296) to iacrease with increasing P-TCP/HA ratio ia the implants. Both P-TCP and BCP can lead to new bone growth to various extents depending on the appHcations and the type of materials used (293,296). [Pg.495]

The kinetic equation can vary with a number of factors. For the reaction between tricalcium phosphate and urea, relatively coarse material (-180-1-200 mesh) obeyed the law x = kt with E = 18 kcaP g mol (32,400 Btu/lb mol) and finer material (—300f320 mesh) obeyed a first-order equation with E = 28 kcaPg mol. [Pg.2124]

Chemical Designations - Synonyms Cucumber Dust Tricalcium Arsenate Tricalcium Orthoarsenate Chemical Formula ... [Pg.71]

By far the largest source of phosphorus is phosphate rock, with some use of phosphatic iron ore, from which phosphorus is obtained as a by-product from the slag. Phosphate rock consists of the insoluble tricalcium phosphate and other materials. For use as a fertilizer, phosphate must be converted to the water soluble form, phosphoric acid (H3PO4) which has three hydrogen atoms, all of which are replaceable by a metal. Tricalcium phosphate, is converted to soluble monocalcium phosphate and to superphosphate, A fertilizer factory, typically, a large installation, characterized by large silos produces year round, but peaks with the demands of the growing season. Phosphorus has many uses other than for fertilizer. [Pg.264]

This section considers a number of extremely important structure types in which A1 combines with one or more other metals to form a mixed oxide phase. The most significant of these from both a theoretical and an industrial viewpoint are spinel (MgAl204) and related compounds, Na- -alumina (NaAlnOi ) and related phases, and tricalcium aluminate (Ca3Al20g) which is a major constituent of Portland cement. Each of these compounds raises points of fundamental importance in solid-state chemistry and each possesses properties of crucial significance to... [Pg.247]

The important compounds in Portland cement are dicalcium silicate (CazSi04) 26%, tricalcium silicate (CasSiOj) 51%. tricalcium aluminate (Ca3Al206) 11% and the tetracalcium species Ca4Al2Fe2 Oio (1%). The principal constituent of moistened cement paste is a tobermorite gel which can be represented schematically by the following idealized equations ... [Pg.252]


See other pages where Tricalcium is mentioned: [Pg.380]    [Pg.1011]    [Pg.1011]    [Pg.1011]    [Pg.1011]    [Pg.1011]    [Pg.1011]    [Pg.48]    [Pg.222]    [Pg.436]    [Pg.366]    [Pg.333]    [Pg.333]    [Pg.334]    [Pg.341]    [Pg.296]    [Pg.470]    [Pg.323]    [Pg.323]    [Pg.323]    [Pg.282]    [Pg.282]    [Pg.284]    [Pg.284]    [Pg.287]    [Pg.287]    [Pg.293]    [Pg.299]    [Pg.152]    [Pg.39]    [Pg.180]    [Pg.251]    [Pg.251]   
See also in sourсe #XX -- [ Pg.73 , Pg.77 ]




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A-tricalcium phosphate

Amorphous tricalcium phosphate

Beta tricalcium phosphate

C Transformation of Hydroxyapatite into beta-Tricalcium Phosphate

Composite materials tricalcium phosphates

Hydration of tricalcium aluminate

Hydration of tricalcium silicate

Magnesium-substituted tricalcium phosphate

P-tricalcium

P-tricalcium phosphate

Plasma tricalcium phosphate coatings

Poly(caprolactone)Tricalcium Phosphate Scaffolds

Resorbable tricalcium phosphates

TRICALCIUM ALUMINATE-GYPSUM SYSTEM

Tricalcium Silicate and Alite Phase

Tricalcium Silicate-Lignosulfonate-Water

Tricalcium aluminate

Tricalcium arsenate

Tricalcium citrate

Tricalcium orthoarsenate

Tricalcium orthophosphate

Tricalcium phosphate

Tricalcium phosphate p-TCP

Tricalcium phosphate technologies

Tricalcium phosphate: Posture

Tricalcium phosphates materials

Tricalcium silicate

Tricalcium silicate hydrate

Tricalcium silicate hydraulic cements

Tricalcium silicate pastes

Tricalcium silicate phase

Tricalcium silicate polymorphs

Tricalcium silicate solid solutions

Tricalcium silicate, hydration

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