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Thermal recrystallization

Figure 11. Variation of Tc as a function of dose rate for zircon and monazite, modified after Meldmm et al. (1999a). Reducing the dose rate effectively lowers the critical temper-ature since, for a given dose, a lower dose rate provides more time for thermal recrystallization. The calcula-ted critical temperatnre of natnral monazite is so low that amorphons specimens of pnre monazite are not expected to occnr in natnre. Figure 11. Variation of Tc as a function of dose rate for zircon and monazite, modified after Meldmm et al. (1999a). Reducing the dose rate effectively lowers the critical temper-ature since, for a given dose, a lower dose rate provides more time for thermal recrystallization. The calcula-ted critical temperatnre of natnral monazite is so low that amorphons specimens of pnre monazite are not expected to occnr in natnre.
The synthesis method has been designed to avoid phase segregation which generally gives materials which are poorly resistant to thermal recrystallization. Most supports are characterized by a high value of both the specific surface and the pore volume with a good thermal recrystallization stability. We analyzed the influence of the main experimental parameters on the properties of the supports. [Pg.783]

During the preparation of mixed ZnO/Al203 composites a highly X-ray amorphous binary Zn-Al phase is observed as the initial metastable coprecipitation product. Unfortunately, its structure could not be determined up to now as all attempts of thermal recrystallization result in the deeomposition of this phase into ZnO and Zn/Al-hydrotalcite. Nevertheless, the oeeurrence of this binaiy Zn/Al phase turns out to play a major role during the synthesis of the ternary Cu catalyst [2]. [Pg.218]

The relative effectiveness of nucleating agents in a polymer can be determined by measuring recrystallization exotherms of samples molded at different temperatures (105). The effect of catalyst concentration and filler content has been determined on unsaturated polyesters by using dynamic thermal techniques (124). Effects of formulation change on the heat of mbber vulcanization can be determined by dsc pressurized cells may be needed to reduce volatilization during the cure process (125). [Pg.150]

Extrusion Resins. Extmsion of VDC—VC copolymers is the main fabrication technique for filaments, films, rods, and tubing or pipe, and involves the same concerns for thermal degradation, streamlined flow, and noncatalytic materials of constmction as described for injection-molding resins (84,122). The plastic leaves the extmsion die in a completely amorphous condition and is maintained in this state by quenching in a water bath to about 10°C, thereby inhibiting recrystallization. In this state, the plastic is soft, weak, and pHable. If it is allowed to remain at room temperature, it hardens gradually and recrystallizes partially at a slow rate with a random crystal arrangement. Heat treatment can be used to recrystallize at controlled rates. [Pg.441]

Effect of Thermal History. Many of the impurities present in commercial copper are in concentrations above the soHd solubihty at low (eg, 300°C) temperatures. Other impurities oxidize in oxygen-bearing copper to form stable oxides at lower temperatures. Hence, because the recrystallization kinetics are influenced primarily by solute atoms in the crystal lattice, the recrystallization temperature is extremely dependent on the thermal treatment prior to cold deformation. [Pg.211]

The nitrites aie most conveniently prepared from the corresponding alcohols by treatment with nitrosyl chloride in pyridine. The crude nitrites can be precipitated by addition of water and recrystallized from appropriate solvents. However nitrites prepared from carbinols in which the adjacent carbon is substituted by halogen, free or esterified hydroxyl or a carbonyl function are very readily hydrolyzed and must be recrystallized with great care. In general the photolysis gives higher yields if purified and dried nitrites are used which do not contain acids or pyridine, although occasionally the addition of small amounts of pyridine is recommended in order to prevent hydrolysis of the nitrite. Traces of acids do in fact catalyze the thermal decomposition of secondary nitrites to equimolar amounts of alcohol and ketone. ... [Pg.255]

The increased solubility of substituted phthalocyanines (vide infra) enables more common purifications as used for other organic compounds. Usually the purification is done by chromatography either on alumina or silica gel, but recrystallization and extraction procedures can also be used. In some cases, the methods used for unsubstituted phthalocyanines can also be practiced, although the increased molecular weight accompanied by a reduced thermal stability makes sublimation more difficult.97 98 However, for substituted phthalocyanines, the stability towards acid may be reduced97 and, therefore, purification by treatment with sulfuric acid cannot generally be recommended. [Pg.723]

The thermal decomposition of a solid, which necessarily (on the above definition) incorporates a chemical step, is sometimes associated with the physical transformations to which passing reference was made above melting, sublimation, and recrystallization. Aspects of the relationships between physical transitions and decomposition reactions of solids are discussed in a book by Budnikov and Ginstling [1]. Since, in general, phase changes exert significant influence upon concurrent or subsequent chemical processes, it is appropriate to preface the main survey of the latter phenomena with a brief account of those features of melting, sublimation, and recrystallization which are relevant to the consideration of thermal decomposition reactions. [Pg.1]

M-Aminophthalimide is available from Fluka AG or may be prepared from phthalimide and hydrazine.2 The quality is important the m.p. should be 199-202° with subsequent resolidification of the melt due to thermal reaction. Reerystallization, if necessary, can be carried out in ethanol. The checkers observed that with one batch of recrystallized material, the solid never really did melt, but seemed to sinter at 200°. [Pg.118]

Recrystallization from boiling methanol should be avoided owing to the thermal instability of the product. [Pg.50]

Chlorinated dibenzo-ip-dioxins were prepared on the gram scale for use as toxicological standards, 2,7-Dichlorodi-henzo-p-dioxin was prepared by catalytic condensation of potassium 2-bromo-4-chlorophenate in 70% yield. Thermal condensation of the potassium salt of 2,4,4 -trichloro-2 -hydroxy diphenyl ether gave a mixture of the 2,8- and 2,7-dichlorodibenzo-p-dioxins which were separated by fractional recrystallization. 2,3,7,8-T etrachlorodibenzo-p-dioxin of 99.9- -% purity was prepared by catalytic condensation of potassium 2,4,5-trichlorophenate. An isomeric mixture of hexachlorodibenzo-p-dioxins was prepared by pyrolytic condensation of sodium 2,3,4,6-tetrachlorophenate. Chlorination of pentachlorophenol (containing < 0.07% tetrachlorophenol) in trichlorobenzene gave octachlorodi-benzo-p-dioxin in 80% yield contaminated by 5-15% heptachlorodibenzo-p-dioxin. Oxidative methods were used to produce octachlorodibenzo-p-dioxin at 99.9% purity. [Pg.126]

Bricks of silicon carbide, either recrystallized or clay-bonded, have a high thermal conductivity and find use in muffle walls and as a slag-resisting material. [Pg.51]


See other pages where Thermal recrystallization is mentioned: [Pg.823]    [Pg.285]    [Pg.332]    [Pg.350]    [Pg.351]    [Pg.213]    [Pg.792]    [Pg.823]    [Pg.285]    [Pg.332]    [Pg.350]    [Pg.351]    [Pg.213]    [Pg.792]    [Pg.346]    [Pg.350]    [Pg.350]    [Pg.237]    [Pg.334]    [Pg.150]    [Pg.119]    [Pg.432]    [Pg.350]    [Pg.350]    [Pg.184]    [Pg.213]    [Pg.243]    [Pg.244]    [Pg.603]    [Pg.298]    [Pg.464]    [Pg.1]    [Pg.28]    [Pg.444]    [Pg.449]    [Pg.169]    [Pg.221]    [Pg.413]    [Pg.126]    [Pg.143]    [Pg.180]    [Pg.43]    [Pg.952]    [Pg.1258]   
See also in sourсe #XX -- [ Pg.823 ]




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Recrystallization

Recrystallizations

Recrystallized

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