МОДЕЛИРОВАНИЕ ПРОЦЕССА ГИПЕРГЕНЕЗА НА ВУЛКАНАХ С ИСПОЛЬЗОВАНИЕМ ВАКУУМА [НА ПРИМЕРЕ ЛЕСЮКИТА Аl2(ОН)5Сl · 2Н2О

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dc.contributor.author Филатов С.К.
dc.contributor.author Пауфлер П.
dc.contributor.author Вергасова Л.П.
dc.contributor.author Левин А.А.
dc.contributor.author Янсон О.М.
dc.contributor.author Майер Д.К.
dc.date.accessioned 2022-12-02T04:36:08Z
dc.date.available 2022-12-02T04:36:08Z
dc.date.issued 2005
dc.identifier https://www.elibrary.ru/item.asp?id=9136363
dc.identifier.citation Записки Российского минералогического общества, 2005, 134, 2, 104-109
dc.identifier.issn 0869-6055
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/40583
dc.description.abstract The new bauxite mineral - lesukite Al2(OH)5C1 2H2O - was investigated in vacuum (down to 10-7 bar), experiment 1, and forevacuum (down to 10-5 bar), experiment 2, at room temperature. It is shown, that in case of atmosphere conditions lesukite dehydrates and becomes decomposed at +140 °C, but in vacuum conditions (10-6-10-7 bar) its dehydration and amorphisation occur even at room temperature; dehydration is accompanied by decrease of the cubic cell parameter (a = 19.82 Å) by 1 Å (5 %). So vacuum treatment may be used for «pum-ping out» the weak-bonded water from the matter, like heating. Dehydration in vacuum may be proceeded at lo-wer temperatures than in atmosphere conditions. This fact may be of interest in geology and technology.
dc.title МОДЕЛИРОВАНИЕ ПРОЦЕССА ГИПЕРГЕНЕЗА НА ВУЛКАНАХ С ИСПОЛЬЗОВАНИЕМ ВАКУУМА [НА ПРИМЕРЕ ЛЕСЮКИТА Аl2(ОН)5Сl · 2Н2О
dc.type Статья
dc.subject.udc 551.215:511.311:549.01.057:62/982


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