Skip to main content

Index Geophysics

InterServer Web Hosting and VPS
InterServer Web Hosting and VPS

Пеплы 2017 года с вулканов Ключевского и Камбального: сравнительный минералогогеохимический анализ

Item

Title (Dublin Core)

ru-RU Пеплы 2017 года с вулканов Ключевского и Камбального: сравнительный минералогогеохимический анализ
en-US The Ashes of 2017 from the Klyuchevskoy and Kambalnyy Volcanoes: A Comparative Mineralogical-Geochemical Analysis

Description (Dublin Core)

ru-RU Приведены результаты сравнительных минералого-геохимических исследований материала пеплов вулканов Ключевского и Камбального, практически одновременно извергавшихся на Камчатке в марте–апреле 2017 г. Определены химический, фазовый, нормативно-минеральный и микроэлементный составы вещества. Проанализирован состав водных вытяжек из пеплов. По комплексу данных сделан вывод о том, что в обоих случаях пеплы в значительной степени имеют изначальное расплавное происхождение и обнаруживают 75 %-ное  сродство с недифференцированным в коровых условиях, т. е. глубинным по источнику, магматогенным веществом. В пеплах Ключевского вулкана обнаружены нитевидные формы и частицы конденсированного абиогенного органополимерного вещества СNОсостава. В пеплах Камбального вулкана, вероятно, имеется примесь резургентного материала из древней постройки кратера, а также минералов гидротермального происхождения. Предложен вероятный сценарий образования преимущественно плагиоклазовых по минеральному составу вулканических пеплов.
en-US The results of the mineralogical and geochemical study of the ash of the Klyuchevskoy and Kambalnyy volcanoes located in different geological conditions (Klyuchevskoy – Central Kamchatskaya Depression, Kambalnyy - Southeast end Eastern Kamchatka Volcanic Ridge) were obtained in 2017, and allowed making following conclusions. The investigated ashes differ somewhat in chemical composition: the Klyuchevskoy volcano ash is close to andesibasalts, but that from Kambalnyy is close to andesites. According to the normative-mineral composition, they are composed of 65–87% basic plagioclases, 3–22% quartz, 6.5–14% Mg-Fe-Ca silicates (olivine, pyroxene, probably hornblende). In this case, the ashes from the volcano Kambalnyy are characterized by more acidic composition of plagioclase and higher content of quartz.  The accessory minerals found in the ashes are presented by spinels (Ulviya magnetite, magnetite, and chromite), ilmenite, rutile, apatite, zircon, pyrite and native metallic-phase (Al, Cu, Fe). Pelitic (silty) fractions are enriched in quartz, but impoverished in Mg-Fe-Ca silicates. As a small admixture in the ash of the Cumulus volcano, titanite, andradite, kaolinite and gypsum are inherently resurgent. The fact of detecting the filamentous forms of abiogenic condensed organopolymer substance of CNO composition in the investigated ashes is of particular importance. It should be noted that, according to the isotope composition of carbon, these formations are identical to similar threads and particles identified in products of modern volcanism in the Kamchatka-Philippine island arc megabelt. Moreover, the analysis showed the presence in the ashes of the Kliuchevskoy and Kambalnyy volcanoes of the carbon substance, which carbon isotopic composition practically coincides with that in the organic filaments. Ashes contain 50 microelements divided into five groups: alkaline and alkaline earth, hydrolyzed, lanthanides, chalcoceridophiles, semi- and non-metals. The analysis leads to the conclusion that the predominantly plagioclase containing ash from both volcanoes show a 75% geochemical similarity to the deep source matter. According to the shape of the curves of chondritotropic concentrations of lanthanides, the ashes from both volcanoes are close to the basaltic lavas of TTI-50. The insignificance of the Eu anomaly on the most curves and the apparent moderate differentiation of the lanthanides indicate that the fractionation of plagioclases in the primary melts and the significant realization of the fractionation of olivine and pyroxenes are weak. Based on the granulometric and morphological homogeneity of particles and the presence of a significant content of fresh volcanic glass in ash from both volcanoes, it can be assumed that in both cases the ashes were predominantly or largely melt-formed, and primarily associated with deep magmatic chambers. It is supposed that the process of slow rise of magmatic melts with their fractionation and gravitational stratification into the lower Mg-Fe-silicate and upper aluminosilicate parts took place. Last eruption of the aluminosilicate substrate occurred in the ash form. Because of the viscosity and tendency to quick solidification, aluminum silicate magmatic magma plugged the channel thus preventing the eruption of the lava Hawaiian type.

Creator (Dublin Core)

Silaev, V. I.
Karpov, G. A.
Kiseleva, D. V.
Vergasova, L. P.
Makeev, B. A.
Tarasov, K. V.
Khazov, A. F.

Subject (Dublin Core)

ru-RU Науки о Земле
ru-RU вулканы; Ключевской; Камбальный; пеплы; химический и минеральный состав; микроэлементы; абиогенные органополимеры
en-US Earth Science
en-US volcanoes; Klyuchevskoy; Kambalnyy; ash; chemical and mineral composition; impurity elements; abiogenic organopolymers

Publisher (Dublin Core)

ru-RU Perm State University

Date (Dublin Core)

2018-12-28

Type (Dublin Core)

info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion

Format (Dublin Core)

application/pdf

Identifier (Dublin Core)

http://geology-vestnik.psu.ru/index.php/geology/article/view/269
10.17072/psu.geol.17.4.326

Source (Dublin Core)

en-US Bulletin of Perm University. Geology; Том 17, № 4 (2018); 326-341
ru-RU Вестник Пермского университета. Геология; Том 17, № 4 (2018); 326-341
2313-4798
1994-3601

Language (Dublin Core)

rus

Relation (Dublin Core)

http://geology-vestnik.psu.ru/index.php/geology/article/view/269/213

Rights (Dublin Core)

ru-RU (c) 2018 V. I. Silaev, G. A. Karpov, D. V. Kiseleva, L. P. Vergasova, B. A. Makeev, K. V. Tarasov, A. F. Khazov
ru-RU http://creativecommons.org/licenses/by/3.0/
InterServer Web Hosting and VPS
InterServer Web Hosting and VPS