Structures of sulfide melt crystallization as an indication of metamorphism of the ores in the Oleninskoe gold deposit

Multiphase fine aggregates of galena, pyrrhotite, freibergite, pyrargyrite, diaphorite, fizelyite, uchucchacuaite, ullmanite, and some other minerals are found in the ores of the Oleninskoe gold deposit in the Kolmozero-Voronya greenstone belt (Kola Peninsula, Russia). The aggregates are considered...

Full description

Bibliographic Details
Main Authors: Kalinin, A. A., Savchenko, Ye. E.
Format: Other Non-Article Part of Journal/Newspaper
Language:Russian
Published: 2020
Subjects:
Online Access:http://hdl.handle.net/1834/41527
id ftoceandocs:oai:aquadocs.org:1834/41527
record_format openpolar
spelling ftoceandocs:oai:aquadocs.org:1834/41527 2023-05-15T17:04:58+02:00 Structures of sulfide melt crystallization as an indication of metamorphism of the ores in the Oleninskoe gold deposit Структуры кристаллизации сульфидных расплавов как признак метаморфизма руд Оленинского месторождения золота Kalinin, A. A. Savchenko, Ye. E. Kolmozero-Voronya greenstone belt Oleninskoe deposit Kola Peninsula Зеленокаменный пояс Колмозеро-Воронья Оленинское месторождение Кольский полуостров 2020 pp.29-37 http://hdl.handle.net/1834/41527 ru rus http://vestnik.mstu.edu.ru/show-eng.shtml?art=2049 http://vestnik.mstu.edu.ru/show.shtml?art=2049 http://hdl.handle.net/1834/41527 Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/ Sulfide melt Galena Freibergite Cульфидный расплав Галенит Фрейбергит ASFA_2015::G::Geology ASFA_2015::G::Geophysics ASFA_2015::M::Metamorphism ASFA_2015::S::Silver Journal Contribution 2020 ftoceandocs 2023-04-06T17:06:58Z Multiphase fine aggregates of galena, pyrrhotite, freibergite, pyrargyrite, diaphorite, fizelyite, uchucchacuaite, ullmanite, and some other minerals are found in the ores of the Oleninskoe gold deposit in the Kolmozero-Voronya greenstone belt (Kola Peninsula, Russia). The aggregates are considered to be the product of crystallization of sulfide melt formed of the minerals of low-melting-point chalcophile elements (Zn, Ag, Cd, Tl, Pb, As, Sb, Bi, Se, Te, etc.) during heating to the temperature above 500 °C. This origin of the aggregates is affirmed by: 1) multiphase composition (up to 6 minerals) of the aggregates; 2) absence of signs of replacing early minerals by the late ones; 3) essential presence in the aggregates of the minerals of chalcophile elements Ag, Pb, Sb, i. e. elements with a low melting point of their compounds; 4) roundish droplet form of inclusions of minor minerals in the main sulfide, and 5) aggregates' position at the boundary sulfide – quartz or in fractures in vein minerals. Partial melting and crystallization of sulfide melts took place during Paleoproterozoic metamorphic event, when the Neoarchean sulfide-bearing rocks were mid-amphibolite metamorphosed under the temperature > 500 °C. Signs of the Paleoproterozoic metamorphism are found in the ores of the neighboring Cu-Mo porphyry Pellapahk deposit as well. В рудах месторождения золота Оленинское (северо-западная часть зеленокаменного пояса Колмозеро-Воронья, Кольский п-ов, Россия) в краевой части зерен галенита, пирротина, фрейбергита отмечены тонкие полиминеральные срастания, в состав которых кроме перечисленных сульфидов входят пираргирит, диафорит, физелиит, учукчакуаит, ульманит и некоторые другие минералы. Эти срастания рассматриваются нами как результат кристаллизации сульфидного расплава, получившегося при нагреве до температуры свыше 500 °C входящих в состав руды минералов халькофильных элементов, имеющих низкую температуру плавления (Zn, Ag, Cd, Tl, Pb, As, Sb, Bi, Se, Te и некоторые другие). О таком происхождении ... Other Non-Article Part of Journal/Newspaper kola peninsula IODE-UNESCO: OceanDocs - E-Repository of Ocean Publications Kola Peninsula
institution Open Polar
collection IODE-UNESCO: OceanDocs - E-Repository of Ocean Publications
op_collection_id ftoceandocs
language Russian
topic Sulfide melt
Galena
Freibergite
Cульфидный расплав
Галенит
Фрейбергит
ASFA_2015::G::Geology
ASFA_2015::G::Geophysics
ASFA_2015::M::Metamorphism
ASFA_2015::S::Silver
spellingShingle Sulfide melt
Galena
Freibergite
Cульфидный расплав
Галенит
Фрейбергит
ASFA_2015::G::Geology
ASFA_2015::G::Geophysics
ASFA_2015::M::Metamorphism
ASFA_2015::S::Silver
Kalinin, A. A.
Savchenko, Ye. E.
Structures of sulfide melt crystallization as an indication of metamorphism of the ores in the Oleninskoe gold deposit
topic_facet Sulfide melt
Galena
Freibergite
Cульфидный расплав
Галенит
Фрейбергит
ASFA_2015::G::Geology
ASFA_2015::G::Geophysics
ASFA_2015::M::Metamorphism
ASFA_2015::S::Silver
description Multiphase fine aggregates of galena, pyrrhotite, freibergite, pyrargyrite, diaphorite, fizelyite, uchucchacuaite, ullmanite, and some other minerals are found in the ores of the Oleninskoe gold deposit in the Kolmozero-Voronya greenstone belt (Kola Peninsula, Russia). The aggregates are considered to be the product of crystallization of sulfide melt formed of the minerals of low-melting-point chalcophile elements (Zn, Ag, Cd, Tl, Pb, As, Sb, Bi, Se, Te, etc.) during heating to the temperature above 500 °C. This origin of the aggregates is affirmed by: 1) multiphase composition (up to 6 minerals) of the aggregates; 2) absence of signs of replacing early minerals by the late ones; 3) essential presence in the aggregates of the minerals of chalcophile elements Ag, Pb, Sb, i. e. elements with a low melting point of their compounds; 4) roundish droplet form of inclusions of minor minerals in the main sulfide, and 5) aggregates' position at the boundary sulfide – quartz or in fractures in vein minerals. Partial melting and crystallization of sulfide melts took place during Paleoproterozoic metamorphic event, when the Neoarchean sulfide-bearing rocks were mid-amphibolite metamorphosed under the temperature > 500 °C. Signs of the Paleoproterozoic metamorphism are found in the ores of the neighboring Cu-Mo porphyry Pellapahk deposit as well. В рудах месторождения золота Оленинское (северо-западная часть зеленокаменного пояса Колмозеро-Воронья, Кольский п-ов, Россия) в краевой части зерен галенита, пирротина, фрейбергита отмечены тонкие полиминеральные срастания, в состав которых кроме перечисленных сульфидов входят пираргирит, диафорит, физелиит, учукчакуаит, ульманит и некоторые другие минералы. Эти срастания рассматриваются нами как результат кристаллизации сульфидного расплава, получившегося при нагреве до температуры свыше 500 °C входящих в состав руды минералов халькофильных элементов, имеющих низкую температуру плавления (Zn, Ag, Cd, Tl, Pb, As, Sb, Bi, Se, Te и некоторые другие). О таком происхождении ...
format Other Non-Article Part of Journal/Newspaper
author Kalinin, A. A.
Savchenko, Ye. E.
author_facet Kalinin, A. A.
Savchenko, Ye. E.
author_sort Kalinin, A. A.
title Structures of sulfide melt crystallization as an indication of metamorphism of the ores in the Oleninskoe gold deposit
title_short Structures of sulfide melt crystallization as an indication of metamorphism of the ores in the Oleninskoe gold deposit
title_full Structures of sulfide melt crystallization as an indication of metamorphism of the ores in the Oleninskoe gold deposit
title_fullStr Structures of sulfide melt crystallization as an indication of metamorphism of the ores in the Oleninskoe gold deposit
title_full_unstemmed Structures of sulfide melt crystallization as an indication of metamorphism of the ores in the Oleninskoe gold deposit
title_sort structures of sulfide melt crystallization as an indication of metamorphism of the ores in the oleninskoe gold deposit
publishDate 2020
url http://hdl.handle.net/1834/41527
op_coverage Kolmozero-Voronya greenstone belt
Oleninskoe deposit
Kola Peninsula
Зеленокаменный пояс Колмозеро-Воронья
Оленинское месторождение
Кольский полуостров
geographic Kola Peninsula
geographic_facet Kola Peninsula
genre kola peninsula
genre_facet kola peninsula
op_relation http://vestnik.mstu.edu.ru/show-eng.shtml?art=2049
http://vestnik.mstu.edu.ru/show.shtml?art=2049
http://hdl.handle.net/1834/41527
op_rights Attribution-NonCommercial-NoDerivatives 4.0 International
http://creativecommons.org/licenses/by-nc-nd/4.0/
_version_ 1766059331332079616