Инд. авторы: Nechaev D.V., Khokhryakov A.F.
Заглавие: Formation of metastable graphite inclusions during diamond crystallization in model systems
Библ. ссылка: Nechaev D.V., Khokhryakov A.F. Formation of metastable graphite inclusions during diamond crystallization in model systems // Geology of Ore Deposits. - 2014. - Vol.56. - Iss. 2. - P.160-168. - ISSN 1075-7015. - EISSN 1555-6476.
Внешние системы: DOI: 10.1134/S1075701514020044; РИНЦ: 24041936; SCOPUS: 2-s2.0-84924422737; WoS: 000335753400005;
Реферат: eng: Metastable graphite inclusions have been studied in diamond, forsterite, and orthopyroxene synthesized in silicate–carbonate–fluid and aqueous chloride systems at 6.3–7.5 GPa and 1400–1600°C. The graphite inclusions were studied using optic microscopy and Raman spectroscopy. It has been established that graphite in diamond and liquidus silicate minerals is represented by a highly ordered variety. Depending on parameters of runs, the graphite inclusions are hexagonal, irregular polygonal, or rounded in shape. The morphology of graphite inclusions involving metastable graphite in run products is compared with previously established crystallization sequence of carbon phases. It has been revealed that the protogenetic graphite inclusions in diamond are rounded, and this shape was caused by dissolution of the newly formed graphite. Polygonal graphite inclusions are syngenetic and represented by metastable graphite that crystallized contemporaneously with diamond. © Pleiades Publishing, Ltd., 2014.
Ключевые слова: orthopyroxene; inclusion; graphite; forsterite; dissolution; diamond; crystallization; chloride; carbonate; Diamond deposits; Orthopyroxene; Model system; Liquidus; Graphite inclusions; Forsterites; Carbon phasis; Aqueous chloride; Silicates; Silicate minerals; Metastable phases; Graphite; Diamonds; Chlorine compounds; silicate mineral;
Издано: 2014
Физ. характеристика: с.160-168