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METAMORPHISM AND METASOMATISM OF RESTITIC ULTRAMAFIC ROCKS OF THE OLKHON TERRANE (Western Cisbaikalia). / Sklyarov, E. V.; Lavrenchuk, A. V.; Pushkarev, E. V. и др.

в: Russian Geology and Geophysics, Том 67, № 1, 01.01.2026, стр. 140-162.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Sklyarov, EV, Lavrenchuk, AV, Pushkarev, EV & Shcherbakov, YD 2026, 'METAMORPHISM AND METASOMATISM OF RESTITIC ULTRAMAFIC ROCKS OF THE OLKHON TERRANE (Western Cisbaikalia)', Russian Geology and Geophysics, Том. 67, № 1, стр. 140-162. https://doi.org/10.2113/RGG20254929

APA

Vancouver

Sklyarov EV, Lavrenchuk AV, Pushkarev EV, Shcherbakov YD. METAMORPHISM AND METASOMATISM OF RESTITIC ULTRAMAFIC ROCKS OF THE OLKHON TERRANE (Western Cisbaikalia). Russian Geology and Geophysics. 2026 янв. 1;67(1):140-162. doi: 10.2113/RGG20254929

Author

Sklyarov, E. V. ; Lavrenchuk, A. V. ; Pushkarev, E. V. и др. / METAMORPHISM AND METASOMATISM OF RESTITIC ULTRAMAFIC ROCKS OF THE OLKHON TERRANE (Western Cisbaikalia). в: Russian Geology and Geophysics. 2026 ; Том 67, № 1. стр. 140-162.

BibTeX

@article{1cce2cb0d091450ca2eb0f18afffd592,
title = "METAMORPHISM AND METASOMATISM OF RESTITIC ULTRAMAFIC ROCKS OF THE OLKHON TERRANE (Western Cisbaikalia)",
abstract = "Small bodies of restitic ultramafic rocks composed of dunite and harzburgite and enclosed in gneisses of the Olkhon composite terrane (West Baikal Area) are described. The estimates of the P-T conditions of metamorphism of the ultramafic rocks generally correspond to the metamorphic parameters of the host gneiss and amphibolite. The restitic rocks include unique aluminous ultramafic rocks composed of forsterite, enstatite, and chromium-free spinel. The latter are distinguished from restitic rocks by high contents of Al2O3(up to 23 wt.%) at “peridotite” concentrations of magnesium (25–37 wt.% MgO) and silicon (30–42 wt.% SiO2). It is assumed that these rocks are the products of high-temperature (Max T = 730–790 °C) metasomatism of dunite and harzburgite. As shown by comparing the compositions of restitic and aluminous ultramafic rocks, the metasomatic process involves many elements, including those considered to be weakly mobile. The input elements are Al, Ti, V, Zr, and rare earth elements; the output elements are Mg, Si, Cr, and Ni. At the same time, there are no possible magmatic sources of metasomatizing fluids. It is assumed that host felsic gneiss served as a source of fluid at high-temperature metamorphism. The impact of metasomatizing fluids on aluminosilicate rocks, occurring as small fragments in restitic ultramafic rocks, strongly enriched them with alumina (up to 50 wt.% Al2O3) and formed specific mineral associations with corundum and sapphirine.",
keywords = "Dunite, Olkhon terrane, Western Cisbaikalia, aluminous ultramafic rock, clinopyroxene-anorthite rock, corundum, harzburgite, sapphirine, Дунит, гарцбургит, глиноземистая ультраосновная порода, клинопироксен-анортитовая порода, сапфирин, корунд, Ольхонский террейн, Западное Прибайкалье",
author = "Sklyarov, {E. V.} and Lavrenchuk, {A. V.} and Pushkarev, {E. V.} and Shcherbakov, {Yu D.}",
note = "Sklyarov E.V., Lavrenchuk A.V., Pushkarev E.V., Shcherbakov Yu.D. (2026). Metamorphism and metasomatism of restitic ulramafic rocks of the Olkhon terrane (Western Cisbaikalia) // Russian Geology and Geophysics, v. 67, No. 1, p. 140–162, DOI: 10.2113/RGG20254929. - EDN: CAYRIG. This work was financially supported by state budget projects of the IEC SB RAS, IGM SB RAS (No. 122041400044-2), IGG UB RAS (No. 123011800009-9), and IG SB RAS.",
year = "2026",
month = jan,
day = "1",
doi = "10.2113/RGG20254929",
language = "English",
volume = "67",
pages = "140--162",
journal = "Russian Geology and Geophysics",
issn = "1068-7971",
publisher = "Фонд {"}Центр поддержки науки и культуры{"}",
number = "1",

}

RIS

TY - JOUR

T1 - METAMORPHISM AND METASOMATISM OF RESTITIC ULTRAMAFIC ROCKS OF THE OLKHON TERRANE (Western Cisbaikalia)

AU - Sklyarov, E. V.

AU - Lavrenchuk, A. V.

AU - Pushkarev, E. V.

AU - Shcherbakov, Yu D.

N1 - Sklyarov E.V., Lavrenchuk A.V., Pushkarev E.V., Shcherbakov Yu.D. (2026). Metamorphism and metasomatism of restitic ulramafic rocks of the Olkhon terrane (Western Cisbaikalia) // Russian Geology and Geophysics, v. 67, No. 1, p. 140–162, DOI: 10.2113/RGG20254929. - EDN: CAYRIG. This work was financially supported by state budget projects of the IEC SB RAS, IGM SB RAS (No. 122041400044-2), IGG UB RAS (No. 123011800009-9), and IG SB RAS.

PY - 2026/1/1

Y1 - 2026/1/1

N2 - Small bodies of restitic ultramafic rocks composed of dunite and harzburgite and enclosed in gneisses of the Olkhon composite terrane (West Baikal Area) are described. The estimates of the P-T conditions of metamorphism of the ultramafic rocks generally correspond to the metamorphic parameters of the host gneiss and amphibolite. The restitic rocks include unique aluminous ultramafic rocks composed of forsterite, enstatite, and chromium-free spinel. The latter are distinguished from restitic rocks by high contents of Al2O3(up to 23 wt.%) at “peridotite” concentrations of magnesium (25–37 wt.% MgO) and silicon (30–42 wt.% SiO2). It is assumed that these rocks are the products of high-temperature (Max T = 730–790 °C) metasomatism of dunite and harzburgite. As shown by comparing the compositions of restitic and aluminous ultramafic rocks, the metasomatic process involves many elements, including those considered to be weakly mobile. The input elements are Al, Ti, V, Zr, and rare earth elements; the output elements are Mg, Si, Cr, and Ni. At the same time, there are no possible magmatic sources of metasomatizing fluids. It is assumed that host felsic gneiss served as a source of fluid at high-temperature metamorphism. The impact of metasomatizing fluids on aluminosilicate rocks, occurring as small fragments in restitic ultramafic rocks, strongly enriched them with alumina (up to 50 wt.% Al2O3) and formed specific mineral associations with corundum and sapphirine.

AB - Small bodies of restitic ultramafic rocks composed of dunite and harzburgite and enclosed in gneisses of the Olkhon composite terrane (West Baikal Area) are described. The estimates of the P-T conditions of metamorphism of the ultramafic rocks generally correspond to the metamorphic parameters of the host gneiss and amphibolite. The restitic rocks include unique aluminous ultramafic rocks composed of forsterite, enstatite, and chromium-free spinel. The latter are distinguished from restitic rocks by high contents of Al2O3(up to 23 wt.%) at “peridotite” concentrations of magnesium (25–37 wt.% MgO) and silicon (30–42 wt.% SiO2). It is assumed that these rocks are the products of high-temperature (Max T = 730–790 °C) metasomatism of dunite and harzburgite. As shown by comparing the compositions of restitic and aluminous ultramafic rocks, the metasomatic process involves many elements, including those considered to be weakly mobile. The input elements are Al, Ti, V, Zr, and rare earth elements; the output elements are Mg, Si, Cr, and Ni. At the same time, there are no possible magmatic sources of metasomatizing fluids. It is assumed that host felsic gneiss served as a source of fluid at high-temperature metamorphism. The impact of metasomatizing fluids on aluminosilicate rocks, occurring as small fragments in restitic ultramafic rocks, strongly enriched them with alumina (up to 50 wt.% Al2O3) and formed specific mineral associations with corundum and sapphirine.

KW - Dunite

KW - Olkhon terrane

KW - Western Cisbaikalia

KW - aluminous ultramafic rock

KW - clinopyroxene-anorthite rock

KW - corundum

KW - harzburgite

KW - sapphirine

KW - Дунит

KW - гарцбургит

KW - глиноземистая ультраосновная порода

KW - клинопироксен-анортитовая порода

KW - сапфирин

KW - корунд

KW - Ольхонский террейн

KW - Западное Прибайкалье

UR - https://www.mendeley.com/catalogue/1ed836ce-a502-3e53-b2fb-18ebe724acf5/

UR - https://www.scopus.com/pages/publications/105029863738

UR - https://www.elibrary.ru/item.asp?id=86494376

U2 - 10.2113/RGG20254929

DO - 10.2113/RGG20254929

M3 - Article

VL - 67

SP - 140

EP - 162

JO - Russian Geology and Geophysics

JF - Russian Geology and Geophysics

SN - 1068-7971

IS - 1

ER -

ID: 83243212