Platinum-Group Minerals of Pt-Placer Deposits Associated with the Svetloborsky Ural-Alaskan Type Massif, Middle Urals, Russia

The alteration of platinum group minerals (PGM) of eluval, proximal, and distal placers associated with the Ural-Alaskan type clinopyroxenite-dunite massifs were studied. The Isovsko-Turinskaya placer system is unique regarding its size, and was chosen as research object as it is PGM-bearing for mor...

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Main Authors: Sergey Yu. Stepanov, Roman S. Palamarchuk, Aleksandr V. Kozlov, Dmitry A. Khanin, Dmitry A. Varlamov, Daria V. Kiseleva
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Minerals
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Online Access:https://www.mdpi.com/2075-163X/9/2/77
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spelling doaj-37d487b6a86e45d39963546ff75f1cb92020-11-24T20:45:17ZengMDPI AGMinerals2075-163X2019-01-01927710.3390/min9020077min9020077Platinum-Group Minerals of Pt-Placer Deposits Associated with the Svetloborsky Ural-Alaskan Type Massif, Middle Urals, RussiaSergey Yu. Stepanov0Roman S. Palamarchuk1Aleksandr V. Kozlov2Dmitry A. Khanin3Dmitry A. Varlamov4Daria V. Kiseleva5The Zavaritsky Institute of Geology and Geochemistry UB RAS, 15 Akademika Vonsovskogo str., 620016 Ekaterinburg, RussiaDepartment of Geology and Exploration Deposit, St. Petersburg Mining University, 2 21st Line, 199106 St. Petersburg, RussiaDepartment of Geology and Exploration Deposit, St. Petersburg Mining University, 2 21st Line, 199106 St. Petersburg, RussiaInstitute of Experimental Mineralogy RAS, 4 Academika Osypyana str., 142432 Chernogolovka, RussiaInstitute of Experimental Mineralogy RAS, 4 Academika Osypyana str., 142432 Chernogolovka, RussiaThe Zavaritsky Institute of Geology and Geochemistry UB RAS, 15 Akademika Vonsovskogo str., 620016 Ekaterinburg, RussiaThe alteration of platinum group minerals (PGM) of eluval, proximal, and distal placers associated with the Ural-Alaskan type clinopyroxenite-dunite massifs were studied. The Isovsko-Turinskaya placer system is unique regarding its size, and was chosen as research object as it is PGM-bearing for more than 70 km from its lode source, the Ural-Alaskan type Svetloborsky massif, Middle Urals. Lode chromite-platinum ore zones located in the Southern part of the dunite “core„ of the Svetloborsky massif are considered as the PGM lode source. For the studies, PGM concentrates were prepared from the heavy concentrates which were sampled at different distances from the lode source. Eluvial placers are situated directly above the ore zones, and the PGM transport distance does not exceed 10 m. Travyanistyi proximal placer is considered as an example of alluvial ravine placer with the PGM transport distance from 0.5 to 2.5 km. The Glubokinskoe distal placer located in the vicinity of the Is settlement are chosen as the object with the longest PGM transport distance (30⁻35 km from the lode source). Pt-Fe alloys, and in particular, isoferroplatinum prevail in the lode ores and placers with different PGM transport distance. In some cases, isoferroplatinum is substituted by tetraferroplatinum and tulameenite in the grain marginal parts. Os-Ir-(Ru) alloys, erlichmanite, laurite, kashinite, bowieite, and Ir-Rh thiospinels are found as inclusions in Pt-Fe minerals. As a result of the study, it was found that the greatest contribution to the formation of the placer objects is made by the erosion of chromite-platinum mineralized zones in dunites. At a distance of more than 10 km, the degree of PGM mechanical attrition becomes significant, and the morphological features, characteristic of lode platinum, are practically not preserved. One of the signs of the significant PGM transport distance in the placers is the absence of rims composed of the tetraferroplatinum group minerals around primary Pt-Fez alloys. The sie of the nuggets decreases with the increasing transport distance. The composition of isoferroplatinum from the placers and lode chromite-platinum ore zones are geochemically similar.https://www.mdpi.com/2075-163X/9/2/77Ural Platinum beltUral-Alaskan massifSvetloborsky massifplacer systemplatinum group elementsplatinum group minerals
collection DOAJ
language English
format Article
sources DOAJ
author Sergey Yu. Stepanov
Roman S. Palamarchuk
Aleksandr V. Kozlov
Dmitry A. Khanin
Dmitry A. Varlamov
Daria V. Kiseleva
spellingShingle Sergey Yu. Stepanov
Roman S. Palamarchuk
Aleksandr V. Kozlov
Dmitry A. Khanin
Dmitry A. Varlamov
Daria V. Kiseleva
Platinum-Group Minerals of Pt-Placer Deposits Associated with the Svetloborsky Ural-Alaskan Type Massif, Middle Urals, Russia
Minerals
Ural Platinum belt
Ural-Alaskan massif
Svetloborsky massif
placer system
platinum group elements
platinum group minerals
author_facet Sergey Yu. Stepanov
Roman S. Palamarchuk
Aleksandr V. Kozlov
Dmitry A. Khanin
Dmitry A. Varlamov
Daria V. Kiseleva
author_sort Sergey Yu. Stepanov
title Platinum-Group Minerals of Pt-Placer Deposits Associated with the Svetloborsky Ural-Alaskan Type Massif, Middle Urals, Russia
title_short Platinum-Group Minerals of Pt-Placer Deposits Associated with the Svetloborsky Ural-Alaskan Type Massif, Middle Urals, Russia
title_full Platinum-Group Minerals of Pt-Placer Deposits Associated with the Svetloborsky Ural-Alaskan Type Massif, Middle Urals, Russia
title_fullStr Platinum-Group Minerals of Pt-Placer Deposits Associated with the Svetloborsky Ural-Alaskan Type Massif, Middle Urals, Russia
title_full_unstemmed Platinum-Group Minerals of Pt-Placer Deposits Associated with the Svetloborsky Ural-Alaskan Type Massif, Middle Urals, Russia
title_sort platinum-group minerals of pt-placer deposits associated with the svetloborsky ural-alaskan type massif, middle urals, russia
publisher MDPI AG
series Minerals
issn 2075-163X
publishDate 2019-01-01
description The alteration of platinum group minerals (PGM) of eluval, proximal, and distal placers associated with the Ural-Alaskan type clinopyroxenite-dunite massifs were studied. The Isovsko-Turinskaya placer system is unique regarding its size, and was chosen as research object as it is PGM-bearing for more than 70 km from its lode source, the Ural-Alaskan type Svetloborsky massif, Middle Urals. Lode chromite-platinum ore zones located in the Southern part of the dunite “core„ of the Svetloborsky massif are considered as the PGM lode source. For the studies, PGM concentrates were prepared from the heavy concentrates which were sampled at different distances from the lode source. Eluvial placers are situated directly above the ore zones, and the PGM transport distance does not exceed 10 m. Travyanistyi proximal placer is considered as an example of alluvial ravine placer with the PGM transport distance from 0.5 to 2.5 km. The Glubokinskoe distal placer located in the vicinity of the Is settlement are chosen as the object with the longest PGM transport distance (30⁻35 km from the lode source). Pt-Fe alloys, and in particular, isoferroplatinum prevail in the lode ores and placers with different PGM transport distance. In some cases, isoferroplatinum is substituted by tetraferroplatinum and tulameenite in the grain marginal parts. Os-Ir-(Ru) alloys, erlichmanite, laurite, kashinite, bowieite, and Ir-Rh thiospinels are found as inclusions in Pt-Fe minerals. As a result of the study, it was found that the greatest contribution to the formation of the placer objects is made by the erosion of chromite-platinum mineralized zones in dunites. At a distance of more than 10 km, the degree of PGM mechanical attrition becomes significant, and the morphological features, characteristic of lode platinum, are practically not preserved. One of the signs of the significant PGM transport distance in the placers is the absence of rims composed of the tetraferroplatinum group minerals around primary Pt-Fez alloys. The sie of the nuggets decreases with the increasing transport distance. The composition of isoferroplatinum from the placers and lode chromite-platinum ore zones are geochemically similar.
topic Ural Platinum belt
Ural-Alaskan massif
Svetloborsky massif
placer system
platinum group elements
platinum group minerals
url https://www.mdpi.com/2075-163X/9/2/77
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