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Titanium nitrogen compounds

A more recent patent describes the production of titanyl nitrate by electrolysis of titanium tetrachloride or titanyl chloride (37). Other titanium nitrogen compounds that have been described include titanous amide [15190-25-9] Ti(NH2)3, titanic amide [15792-80-0] Ti(NH)2, and various products in which amines have reacted with titanium tetrachloride (38). [Pg.119]

Nitrogen (N), 17 270-289. See also N2 oxidation N-donating ligands Nitrogen compounds Nitrogen fixation Titanium-nitrogen compounds... [Pg.625]

Almost all of titanium s compounds, as weU as the pure metal when in powder form, are extremely flammable and explosive. Titanium metal wiU ignite in air at 1200°C and wiU burn in an atmosphere of nitrogen. Titanium fires cannot be extinguished by using water or carbon dioxide extinguishers. Sand, dirt, or special foams must be used to extinguish burning titanium. [Pg.92]

Air contains molecular nitrogen and oxygen. They may be separated by liquefaction and fractional distillation along with inert gases, especially argon. Salt or brine can be used as sources of chlorine and sometimes bromine, sodium hydroxide, and sodium carbonate, whereas metals such as iron, aluminum, copper, or titanium as well as phosphors, potassium, calcium, and fluorine are obtained from mineral ores. Saltpeter was once an important source of nitrogen compounds, but today most ammonia and nitrates are produced synthetically from nitrogen gas in the air. [Pg.216]

Nitrogen compounds. Nitrogen compounds with N—H bonds appear to react with titanium halides to give initially an adduct, from which hydrogen halide is eliminated by base catalysis. Thus the action of diluted gaseous... [Pg.813]

Takeda K. and Fujiwara K. 1996. Characteristics on the determination of dissolved organic nitrogen compounds in natural waters using titanium dioxide and platinized titanium dioxide mediated photocatalytic degradation. Water Res. 30 323-330. [Pg.388]

Equations 3.207-3.210 give examples of heterocyclic organosilicon nitrogen compounds with boron [401], tin [402], aluminium [403] and titanium [404] in the... [Pg.82]

Laser isotope separation techniques have been demonstrated for many elements, including hydrogen, boron, carbon, nitrogen, oxygen, sHicon, sulfur, chlorine, titanium, selenium, bromine, molybdenum, barium, osmium, mercury, and some of the rare-earth elements. The most significant separation involves uranium, separating uranium-235 [15117-96-1], from uranium-238 [7440-61-1], (see Uranium and uranium compounds). The... [Pg.19]

Addition compounds form with those organics that contain a donor atom, eg, ketonic oxygen, nitrogen, and sulfur. Thus, adducts form with amides, amines, and A/-heterocycles, as well as acid chlorides and ethers. Addition compounds also form with a number of inorganic compounds, eg, POCl (6,120). In many cases, the addition compounds are dimeric, eg, with ethyl acetate, in titanium tetrachloride-rich systems. By using ammonia, a series of amidodichlorides, Ti(NH2) Cl4, is formed (133). [Pg.131]


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See also in sourсe #XX -- [ Pg.702 ]




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Titanium compounds

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