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 Найдено в других БД:Каталог книг и продолжающихся изданий (1)Труды Института высокотемпературной электрохимии УрО РАН (6)Труды сотрудников Института горного дела УрО РАН (1)Труды сотрудников Института органического синтеза УрО РАН (3)Расплавы (1)Публикации Чарушина В.Н. (2)
Формат представления найденных документов:
полныйинформационныйкраткий
Отсортировать найденные документы по:
авторузаглавиюгоду изданиятипу документа
Поисковый запрос: (<.>K=METHANE<.>)
Общее количество найденных документов : 34
Показаны документы с 1 по 10
 1-10    11-20   21-30   31-34 
1.
Инвентарный номер: нет.
   
   Б 18


    Байдаков, В. Г.
    Кинетика флуктуационного вскипания перегретого жидкого метана [] = Kinetics of the Fluctuation Ebullition of Superheated Liquid Methane / В. Г. Байдаков, А. М. Каверин, В. П. Скрипов // Коллоидный журнал. - 1980. - Т. 42, N 2. - С. 314-317
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
МЕТАН ПЕРЕГРЕТЫЙ -- ПЕРЕГРЕТЫЙ МЕТАН -- ВСКИПАНИЕ ФЛУКТУАЦИОННОЕ -- ФЛУКТУАЦИОННОЕ ВСКИПАНИЕ -- КИНЕТИКА ВСКИПАНИЯ -- МЕТАН ЖИДКИЙ -- ЖИДКИЙ МЕТАН

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2.
Инвентарный номер: нет.
   
   Б 18


    Байдаков, В. Г.
    Кинетика флуктуационного вскипания перегретого жидкого метана [] = Kinetics of the Fluctuation Ebullition of Superheated Liquid Methane / В. Г. Байдаков, А. М. Каверин, В. П. Скрипов // Коллоидный журнал. - 1980. - Т. 42, N 2. - С. 314-317
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
МЕТАН ПЕРЕГРЕТЫЙ -- ПЕРЕГРЕТЫЙ МЕТАН -- ВСКИПАНИЕ ФЛУКТУАЦИОННОЕ -- ФЛУКТУАЦИОННОЕ ВСКИПАНИЕ -- КИНЕТИКА ВСКИПАНИЯ -- МЕТАН ЖИДКИЙ -- ЖИДКИЙ МЕТАН

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3.
Инвентарный номер: нет.
   
   G 15


    Galashev, A. E.
    Computer study of methane adsorption by water clusters [Electronic resource] / A. E. Galashev, O. R. Rakhmanova // High Temperature. - 2013. - Vol.51, №3. - P369-376. - Bibliogr. : p. 375-376 (36 ref.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
DIELECTRIC PERMITTIVITIES -- FREQUENCY DEPENDENCE -- HIGH-FREQUENCY MODE
Аннотация: Methane adsorption by water clusters including 50 molecules was studied by the molecular dynamics (MD) technique. The calculated frequency dependence of the real and imaginary parts of the dielectric permittivity points to the prevalence of a high-frequency mode in the spectra of these parameters after methane is adsorbed by water clusters. Such changes are also observed in the spectrum of the IR radiation absorption coefficient; however, the average value of this coefficient remains nearly the same. Methane adsorption causes a considerable increase in the reflection coefficient of the disperse water medium and the integrated power of IR radiation emission

\\\\expert2\\NBO\\High Temperature\\2013, v. 51, N 3, p.369-376.pdf
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4.
Инвентарный номер: нет.
   
   G 15


    Galashev, A. E.
    Computer study of methane adsorption by water clusters [Electronic resource] / A. E. Galashev, O. R. Rakhmanova // High Temperature. - 2013. - Vol.51, №3. - P369-376. - Bibliogr. : p. 375-376 (36 ref.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
DIELECTRIC PERMITTIVITIES -- FREQUENCY DEPENDENCE -- HIGH-FREQUENCY MODE
Аннотация: Methane adsorption by water clusters including 50 molecules was studied by the molecular dynamics (MD) technique. The calculated frequency dependence of the real and imaginary parts of the dielectric permittivity points to the prevalence of a high-frequency mode in the spectra of these parameters after methane is adsorbed by water clusters. Such changes are also observed in the spectrum of the IR radiation absorption coefficient; however, the average value of this coefficient remains nearly the same. Methane adsorption causes a considerable increase in the reflection coefficient of the disperse water medium and the integrated power of IR radiation emission

\\\\expert2\\NBO\\High Temperature\\2013, v. 51, N 3, p.369-376.pdf
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5.
Инвентарный номер: нет.
   
   F 17


    Faizullin, M. Z.
    Vitrification and crystallization of low-temperature amorphous condensates of water and methane-water mixture / M. Z. Faizullin, V. P. Koverda // Russian Journal of Physical Chemistry A. - 2012. - Vol.86, №2. - С. 229-234
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
VITRIFICATION -- CRYSTALLIZATION -- GAS HYDRATES
Аннотация: Low-temperature condensates of water and water-methane mixture are studied in the temperature range of 65-200 K. Amorphous samples are obtained by molecular beam deposition under vacuum conditions on the substrate cooled with liquid nitrogen. The vitrification and crystallization temperatures are determined from the changes in the dielectric properties of the condensates upon heating. The kinetics of crystallization of amorphous water layers is studied by differential thermal analysis. The temperature conditions for the growth of thick methane crystalline hydrate layers during the low-temperature condensation of molecular water-gas mixture beams are found

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6.
Инвентарный номер: нет.
   
   F 17


    Faizullin, M. Z.
    Vitrification and crystallization of low-temperature amorphous condensates of water and methane-water mixture / M. Z. Faizullin, V. P. Koverda // Russian Journal of Physical Chemistry A. - 2012. - Vol.86, №2. - С. 229-234
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
VITRIFICATION -- CRYSTALLIZATION -- GAS HYDRATES
Аннотация: Low-temperature condensates of water and water-methane mixture are studied in the temperature range of 65-200 K. Amorphous samples are obtained by molecular beam deposition under vacuum conditions on the substrate cooled with liquid nitrogen. The vitrification and crystallization temperatures are determined from the changes in the dielectric properties of the condensates upon heating. The kinetics of crystallization of amorphous water layers is studied by differential thermal analysis. The temperature conditions for the growth of thick methane crystalline hydrate layers during the low-temperature condensation of molecular water-gas mixture beams are found

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7.
Инвентарный номер: нет.
   
   F 17


    Faizullin, M. Z.
    Synthesis of methane hydrate at low-temperature condensation of molecular beams [Electronic resource] / M. Z. Faizullin, A. V. Reshetnikov, V. P. Koverda // Doklady Physics. - 2010. - Vol.55, №8. - P388-390
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
AMORPHOUS SOLID WATER -- ICE

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8.
Инвентарный номер: нет.
   
   F 17


    Faizullin, M. Z.
    Synthesis of methane hydrate at low-temperature condensation of molecular beams [Electronic resource] / M. Z. Faizullin, A. V. Reshetnikov, V. P. Koverda // Doklady Physics. - 2010. - Vol.55, №8. - P388-390
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
AMORPHOUS SOLID WATER -- ICE

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9.
Инвентарный номер: нет.
   
   F 17


    Faizullin, M. Z.
    Hydrate formation in layers of gas-saturated amorphous ice [Electronic resource] / M. Z. Faizullin, A. V. Vinogradov, V. P. Koverda // Chemical Engineering Science. - 2015. - Vol. 130. - С. 135-143. - Bibliogr. : p. 142-143 (44 ref.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
AMORPHOUS ICE -- GAS HYDRATES -- CARBON DIOXIDE
Аннотация: Layers of amorphous ice saturated with methane, ethane, propane and carbon dioxide were obtained by condensation of molecular beams of rarefied vapor and gas on a substrate cooled with liquid nitrogen. The amorphous state of such objects at low temperatures is stabilized by the high viscosity and the small value of the stationary nucleation rate of the crystal phase. Their heating in condition of high metastability is accompanied by spontaneous explosive crystallization, which leads to the formation of gas hydrates. Glass-transition and crystallization temperatures were determined by changes in their dielectric properties under heating. An increase in the gas content in layers of amorphous ice causes an increase in the crystallization temperature without any significant changes in the glass transition temperature. At atmospheric pressure in a liquid n-pentane medium the retention of gas hydrates was observed up to temperatures close to 273. K. Self-preservation ensured the retention of hydrates in a metastable state at temperatures exceeding considerably their equilibrium dissociation temperatures. Samples of gas hydrates obtained at a maximum gas flow rate during the deposition contained up to 15 mass % of methane, 12 mass % of ethane, 13 mass % of propane, and 23 mass % of carbon dioxide

\\\\expert2\\nbo\\Chemical Engineering Science\\2015, v.130, p.135-143.pdf
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10.
Инвентарный номер: нет.
   
   F 17


    Faizullin, M. Z.
    Hydrate formation in layers of gas-saturated amorphous ice [Electronic resource] / M. Z. Faizullin, A. V. Vinogradov, V. P. Koverda // Chemical Engineering Science. - 2015. - Vol. 130. - С. 135-143. - Bibliogr. : p. 142-143 (44 ref.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
AMORPHOUS ICE -- GAS HYDRATES -- CARBON DIOXIDE
Аннотация: Layers of amorphous ice saturated with methane, ethane, propane and carbon dioxide were obtained by condensation of molecular beams of rarefied vapor and gas on a substrate cooled with liquid nitrogen. The amorphous state of such objects at low temperatures is stabilized by the high viscosity and the small value of the stationary nucleation rate of the crystal phase. Their heating in condition of high metastability is accompanied by spontaneous explosive crystallization, which leads to the formation of gas hydrates. Glass-transition and crystallization temperatures were determined by changes in their dielectric properties under heating. An increase in the gas content in layers of amorphous ice causes an increase in the crystallization temperature without any significant changes in the glass transition temperature. At atmospheric pressure in a liquid n-pentane medium the retention of gas hydrates was observed up to temperatures close to 273. K. Self-preservation ensured the retention of hydrates in a metastable state at temperatures exceeding considerably their equilibrium dissociation temperatures. Samples of gas hydrates obtained at a maximum gas flow rate during the deposition contained up to 15 mass % of methane, 12 mass % of ethane, 13 mass % of propane, and 23 mass % of carbon dioxide

\\\\expert2\\nbo\\Chemical Engineering Science\\2015, v.130, p.135-143.pdf
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