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Характеристика химического состава и эволюция клинопироксенов комплекса эвдиалитовых луявритов Ловозерского щелочного массива. / Седова, Анна Михайловна; Евдокимов, Михаил.

в: Вестник Санкт-Петербургского университета. Науки о Земле, Том 63, № 1, 03.2018, стр. 69-102.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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Седова, АМ & Евдокимов, М 2018, 'Характеристика химического состава и эволюция клинопироксенов комплекса эвдиалитовых луявритов Ловозерского щелочного массива', Вестник Санкт-Петербургского университета. Науки о Земле, Том. 63, № 1, стр. 69-102. https://doi.org/10.21638/11701/spbu07.2018.105

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Author

Седова, Анна Михайловна ; Евдокимов, Михаил. / Характеристика химического состава и эволюция клинопироксенов комплекса эвдиалитовых луявритов Ловозерского щелочного массива. в: Вестник Санкт-Петербургского университета. Науки о Земле. 2018 ; Том 63, № 1. стр. 69-102.

BibTeX

@article{dd06de7115c04c4884068954bbba730c,
title = "Характеристика химического состава и эволюция клинопироксенов комплекса эвдиалитовых луявритов Ловозерского щелочного массива",
abstract = "The Lovozero alkaline massif is the largest known alkaline layered intrusion (Semenov E. V. et al., 1974). For the first time this paper examines the evolution compositions of clinopyroxenes from the third intrusive phase introduced into the main magmatic stage (the complex of eudialyte Lujavrites). A gap has been filled in for a detailed study of pyroxene, as the main melanocratic rock-forming mineral of the massif. Petrographic features of clinopyroxenes in various associations among the main rocks of the complex (eudialyte lujavrites, foyaites and porphyry lujavrites) have been studied. The first approach that takes into account the variational diversity of zonal crystals of clinopyroxenes and their morphology. Zonality and morphology of crystals were studied in detail. The possible presence of Zr-johansenite and Ti-Zr-aegirine minals is shown. The general and particular trends in the evolution of the chemical composition corresponding to zonality are outlined. It was established that there is no direct connection between the chemical composition of clinopyroxenes (in terms of the content Ti-Zr-egirin and Zr-johansenite minals in them) with the stratigraphic rock level. It has been established that rocks of similar clinopyroxenes are grouped in the same location at different depths. For the first time, the highest content of ZrO 2 (3.09 wt. %) was detected in the rocks of the eudialyte lujavrita complex, despite the fact that in these rocks is present eudialyte as widely distributed the zirconium phase and a possible scheme for the enrichment of rocks by this element is proposed. ",
keywords = "пироксены, Ловозерский массив, Eudialyte lujavrites, Lovozero massif, Pyroxenes, Zirconium",
author = "Седова, {Анна Михайловна} and Михаил Евдокимов",
year = "2018",
month = mar,
doi = "10.21638/11701/spbu07.2018.105",
language = "русский",
volume = "63",
pages = "69--102",
journal = "Вестник Санкт-Петербургского университета. Науки о Земле",
issn = "2541-9668",
publisher = "Издательство Санкт-Петербургского университета",
number = "1",

}

RIS

TY - JOUR

T1 - Характеристика химического состава и эволюция клинопироксенов комплекса эвдиалитовых луявритов Ловозерского щелочного массива

AU - Седова, Анна Михайловна

AU - Евдокимов, Михаил

PY - 2018/3

Y1 - 2018/3

N2 - The Lovozero alkaline massif is the largest known alkaline layered intrusion (Semenov E. V. et al., 1974). For the first time this paper examines the evolution compositions of clinopyroxenes from the third intrusive phase introduced into the main magmatic stage (the complex of eudialyte Lujavrites). A gap has been filled in for a detailed study of pyroxene, as the main melanocratic rock-forming mineral of the massif. Petrographic features of clinopyroxenes in various associations among the main rocks of the complex (eudialyte lujavrites, foyaites and porphyry lujavrites) have been studied. The first approach that takes into account the variational diversity of zonal crystals of clinopyroxenes and their morphology. Zonality and morphology of crystals were studied in detail. The possible presence of Zr-johansenite and Ti-Zr-aegirine minals is shown. The general and particular trends in the evolution of the chemical composition corresponding to zonality are outlined. It was established that there is no direct connection between the chemical composition of clinopyroxenes (in terms of the content Ti-Zr-egirin and Zr-johansenite minals in them) with the stratigraphic rock level. It has been established that rocks of similar clinopyroxenes are grouped in the same location at different depths. For the first time, the highest content of ZrO 2 (3.09 wt. %) was detected in the rocks of the eudialyte lujavrita complex, despite the fact that in these rocks is present eudialyte as widely distributed the zirconium phase and a possible scheme for the enrichment of rocks by this element is proposed.

AB - The Lovozero alkaline massif is the largest known alkaline layered intrusion (Semenov E. V. et al., 1974). For the first time this paper examines the evolution compositions of clinopyroxenes from the third intrusive phase introduced into the main magmatic stage (the complex of eudialyte Lujavrites). A gap has been filled in for a detailed study of pyroxene, as the main melanocratic rock-forming mineral of the massif. Petrographic features of clinopyroxenes in various associations among the main rocks of the complex (eudialyte lujavrites, foyaites and porphyry lujavrites) have been studied. The first approach that takes into account the variational diversity of zonal crystals of clinopyroxenes and their morphology. Zonality and morphology of crystals were studied in detail. The possible presence of Zr-johansenite and Ti-Zr-aegirine minals is shown. The general and particular trends in the evolution of the chemical composition corresponding to zonality are outlined. It was established that there is no direct connection between the chemical composition of clinopyroxenes (in terms of the content Ti-Zr-egirin and Zr-johansenite minals in them) with the stratigraphic rock level. It has been established that rocks of similar clinopyroxenes are grouped in the same location at different depths. For the first time, the highest content of ZrO 2 (3.09 wt. %) was detected in the rocks of the eudialyte lujavrita complex, despite the fact that in these rocks is present eudialyte as widely distributed the zirconium phase and a possible scheme for the enrichment of rocks by this element is proposed.

KW - пироксены

KW - Ловозерский массив

KW - Eudialyte lujavrites

KW - Lovozero massif

KW - Pyroxenes

KW - Zirconium

UR - http://vestnik.spbu.ru/html18/s07/s07v1/05.pdf

UR - http://www.scopus.com/inward/record.url?scp=85054127583&partnerID=8YFLogxK

U2 - 10.21638/11701/spbu07.2018.105

DO - 10.21638/11701/spbu07.2018.105

M3 - статья

VL - 63

SP - 69

EP - 102

JO - Вестник Санкт-Петербургского университета. Науки о Земле

JF - Вестник Санкт-Петербургского университета. Науки о Земле

SN - 2541-9668

IS - 1

ER -

ID: 33174157