Фазовые равновесия в бинарных и тройных системах на основе нитрата аммония и мочевины (1105449), страница 24
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The polymorphic transition of NH4NO3 // Proc. R. Soc. London, Ser. A. 1909.V. 80. P. 444 – 457.[2]Bridgman. Effects of pressure on nitrates // Proc. Am. Acad. Arts Sci. 1916. V. 51.P. 581 – 618.[3]База данных PDF-2. International center for diffraction data, Newton Square, USA. 1998.[4]Stephenson C.C., Bentz D.R., Stevenson D.A. The heat capacity of ammonium nitratefrom 15 to 315°C // J. Am. Chem. Soc.
1955. V. 77. P. 2191 – 2164.[5]Early R.G., Lowry T.M. The properties of ammonium nitrate. Part III // J. Chem. Soc.1919. V. 115. P. 963 – 969.[6]Hendricks S.B., Posnjak E., Kracek F.C. Molecular rotation in the solid state. The variationof the crystal structure of ammonium nitrate with temperature // J. Am. Chem. Soc. 1932.V. 54. P. 2766 – 2786.[7]Cohen E., Helderman W.D. Metastability of the elements and chemical compounds in consequence of enantiotropy or monotropy // J. Phys. Chem. 1924. V. 113. P. 145 – 156.[8]Griffith E.J. Phase transition of the ammonium nitrate-magnesium nitrate system //J.
Chem. Eng. Data. 1963. V. 8. P. 22 – 25.[9]Watson E.S., O’Neill M.G., Justin J., Brenner N. A differential scanning calorimeter forquantitative differential thermal analysis // Anal. Chem. 1964. V. 36. P. 1233 – 1238.[10] Sowell R.R., Karnowsky M.M., Walters L.C. The transitions in phases II-III-IV in highpurity ammonium nitrate // J. Therm. Anal. 1971. V. 3. P. 119 – 129.[11] Juopperi O.A. The two-step character of the II-IV transition in ND4NO3 // Thermochim.Acta. 1974. V. 9. P.
353 – 357.[12] Mauras H. Kinetic study of the direct and inverse allotropic transformations of ammoniumnitrate // C. R. Seances Acad. Sci., Ser. C. 1973. V. 276. № 3. P. 285 – 288.[13] Tang H.C., Torrie B.H. Raman study of the NH4NO3 and ND4NO3 250 – 420 K // J. Phys.Chem. Solids. 1977. V. 38. P. 125 – 138.[14] Жаваронков Н.М., Оленевский В.М. Справочник азотчика. Производство азотнойкислоты.Производствоазотныхудобрений.Материалы,компрессорыигазгольдеры.
М.: Химия. 1987. C. 142 – 143.[15] Theoret A., Sandorfy C. Infrared spectra and crystalline phase transitions of ammoniumnitrate // Can. J. Chem. 1964. V. 42. P. 57 – 62.134[16]Nagatani M., Seiyama T. Heat capacities and thermodynamic properties of ammoniumnitrate crystal: phase transition between stable and metastable phases // Bull. Chem. Soc. Jpn.1967. V. 40. P. 1833 – 1844.[17] Дубинский Я. Автоматизация химических производств. М.: НИИТЕХИМ. 1971. С.34 – 38.[18] Jona E., Sramko T., Nagy D. Thermal properties of ammonium nitrate I. Study of the reproducibility of DTA curves in relation to modification transformation // J. Therm. Anal.1983.
V. 27. P. 37 – 42.[19] Rausulic G., Milanovic Lj., Jovanovic S. Influence of the frequent rhombic-monocliniccrystal transformation and of the moisture content on ammonium nitrate crystal transformation energies // J. Therm. Anal. 1988. V. 34. P. 1195 – 1205.[20] Kestila E., Valkonen J. Effect of the crystallization on the phase transitions IV-III and IVII of ammonium nitrate // Thermochim.
Acta. 1993. V. 214. P. 305 – 314.[21] Dellen I.A DSC study of the phase transitions of ammonium nitrate // Thermochim. Acta.1982. V. 55. P. 181 – 191.[22] Vargeese A.A., Satyawati S.J., Krishnamurthy V.N. Effect of method of crystallization onthe IV–III and IV–II polymorphic transitions of ammonium nitrate // Journal of HazardousMaterials. 2009. V.
161. P. 373 – 379.[23] Erdey L., Gal S., Liptay G. Thermoanalytical properties of analytical-grade reagents. Ammonium salts // Talanta. 1964. V. 11. P. 913 – 940.[24] Scott W.D. Vapor pressure of ammonium sulfates // Atmos. Environ. 1978. V. 13. P. 307 –317.[25] Thege I.K. DSC investigations of the thermal behavior of (NH4)2SO4, NH4HSO4,NH4SO3NH2 // Thermochim. Acta. 1983. V. 60. P. 149 – 159.[26] Kiyoura R. Mechanism, Kinetics, and Equilibrium of Thermal Decomposition of Ammonium Sulfate // Ind. Eng.
Chem. Process Des. Develop. 1970. V. 9. № 4. P. 489 – 494.[27] Олевский В.М. Технология аммиачной селитры. М.: Химия. 1978. C. 10 – 16.[28] Соколов В.А. Равновесие и комплексообразование в системе H2O – NH4NO3 –(NH4)2SO4 // Изв. АН СССР. Отд. естеств. и матем. наук. 1938. С. 124 – 135.[29] Smith J.P., Lehr J.R., and Frazier A.W. Characterization of fertilizer materials, crystallographic properties of the ammonium nitrate-sulfates 3NH4NO3·(NH4)2SO4 and2NH4NO3·(NH4)2SO4 // J. Agric. Food Chem.
1962. V. 10. № 1. P. 77 – 78.[30] Coates R.V., Woodard G.D. X-ray powder diffraction data for solid solutions and doublesalts occurring in granular compound fertilisers // J. Sci. Food Agric. 1963 V. 14. P. 398 –404.135[31] Никонова И.Н., Бергман А.Г. Политерма обратимовзаимной системы из сульфатов инитратов калия и аммония // Журн. прикл.
химии. 1942. Т. 15. № 6. C. 437 – 446.[32] Freeth F.A. The deduction of the type of a two-component system by means of the additions of a third component // J. Phys. Chem. 1925. V. 29. № 5. P. 497-507.[33] Janecke E., Eisskee W., Brigl R. Uber das System NH4NO3 – (NH4)2SO4 – H2O // J. Inorg.Gen. Chem. 1927. V. 160. № 1. P.
171 – 186.[34] Dzuempey A. Systems salts of fertilizer ammonium nitrate // J. Ind. Chem. 1970. V. 73.№ 12. P. 2614 – 2618.[35] Kweeder J.A., Iwamoto N. E. // Composition comprising ammonium nitrate double salts.Patent US 0199357 Al. 2007.[36] BeyerK.D,BotheJ.R.,BurrmannL.ExperimentalDeterminationoftheNH4NO3/(NH4)2SO4/H2O Phase Diagram // J. Phys.
Chem. A. 2007. V. 111. P. 479 – 494.[37] Clegg S.L., Ho S.S., Chan C.K., Brimblecombe P. Thermodynamic properties of aqueous(NH4)2SO4 to high supersaturation as a function of temperature // J. Chem. Eng. Data.1995. V. 40. P. 1079 – 1090.[38] Clegg S.L., Pitzer K.S., Brimblecombe P. Thermodynamics of milticomponent, miscible,ionic solutions: generalized equations for symmetrical electrolytes // J. Phys.
Chem. 1992.V.96. P. 3513 – 3520.[39] Clegg S.L., Pitzer K.S., Brimblecombe P. Thermodynamics of milticomponent, miscible,ionic solutions. 2. Mixtures including unsymmetrical electrolytes // J. Phys. Chem. 1992.V. 96. P. 9470 – 9479.[40] Pitzer K.S, Simonson J.M. Thermodynamics of multicomponent, miscible, ionic systems:theory and equations // J. Phys. Chem. 1986. V. 90. P. 3005 – 3009.[41] Linke W.F.
Solubilities of inorganic and metal-organic compounds // J. Am. Chem. Soc.1965. V. 2. P. 755.[42] Fellner P., Horsak I., Kostenska. I. Thermodynamic analysis and calculation of the ternaryphase diagram of the system water-urea-ammonium nitrate // Chem. Pap. 1988. V. 42.№ 6. P. 721 – 730.[43] Clegg S.L., Brimblecombe P. Thermodynamic model of the system H+ – NH4+ – SO42- –NO3- – H2O at tropospheric temperatures // J.
Phys. Chem. A. 1998. V. 102. P. 2137 – 2154.[44] Bothe J.R., Beyer K. D. Experimental Determination of the NH4NO3/(NH4)2SO4/H2OPhase Diagram // J. Phys. Chem. A. 2007. V. 111. P. 12106 – 12117.[45] Коган В.Б., Огородников С.К., Кафаров В.В. Справочник по растворимости: тройныеи многокомпонентные системы, образованные неорганическими веществами.
1969.Л.: Наука. Т. 3. № 2. С. 156 – 158.136[46] Ruehrwein R.A., Huffman H.M. Thermal data. The Heat Capacity, Entropy and Free Energy of Urea // J. Am. Chem. Soc. 1946. V. 68. № 9. P. 1759 – 1761.[47] Козыро А.А., Далидович С.В., Красулин А.П. Теплоемкость, энтальпия плавления итермодинамические свойства мочевины // Журн. прикл. химии. 1986. Т. 59. № 7. С.1456 – 1459.[48] Gambino M., Bros J.-P.
Capacite calorifique de l'uree et de quelques melanges eutectiquesa base d'uree entre 30 et 140°C // Thermochim. Acta. 1988. V. 127. P. 223 – 236.[49] Andersson O., Matsuo T., Suga H., Ferloni P. Low-Temperature Heat Capacity of Urea //Int. J. Thermophys. 1993. V. 14. № 1. P. 149 – 158.[50] Kabo G.J., Kozyro A.A, Diky V.V, Simirsky V.V. Additivity of thermodynamic propertiesof organic compounds in crystalline state. Heat capacities and enthalpies of phase transition of alkyl derivatives of urea in crystalline state // J.
Chem. Eng. Data. 1995. V. 40. P.371 – 393.[51] Ferloni P., Gatta D., G. Heat capacities of urea, N-methylurea, N-ethylurea, N(n)propylurea, and N-(n)butylurea in the range 200 to 360 K. // Thermochim. Acta. 1995.V. 266. P. 203 – 212.[52] Schmidt V.A., Becker F. Die Bildungswarme von Nitrocellulofen, Nitroglycerin und anderen widuigen Beltandteilen von Treibmitteln // Z. Gesamte Schiess- Sprengstoffwes. 1933.V. 33. P. 280 – 282.[53] Huffman H.M. Thermal Data.