Gold geochemistry and mineralogy of till fines: a new approach for data integration
A new method of heavy mineral (HM) separation and assessment of gold grade was compared with the results of conventional AAS analysis. Sixteen gold micronuggets and a number of particles of native metal and metal alloys (brass, tin, bismuth, lead) were extracted from 100 g of till fines (< 50 μm)...
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Geological Society of Finland
2000-12-01
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Online Access: | http://www.geologinenseura.fi/bulletin/Volume72/Knaufetal.pdf |
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doaj-22bc10c59c4f48e3b069f7792eb32aa32020-11-24T21:55:34ZengGeological Society of FinlandBulletin of the Geological Society of Finland0367-52111799-46322000-12-01721-2576910.17741/bgsf/72.1-2.004Gold geochemistry and mineralogy of till fines: a new approach for data integrationV. KnaufE. SandbergP. SokolovE. TabunsA new method of heavy mineral (HM) separation and assessment of gold grade was compared with the results of conventional AAS analysis. Sixteen gold micronuggets and a number of particles of native metal and metal alloys (brass, tin, bismuth, lead) were extracted from 100 g of till fines (< 50 μm). From the size, number, and composition of micronuggets, the total gold grade (58 ppb) of till fines was evaluated. The assessments agree well with the results of AAS analysis (57 ppb). A slightly lower value (44 ppb) was obtained by Flame Atomic Absorption Analysis with Fire Assay (FAAS FA) method of the extracted HM. Mineralogical investigations allow identification of two types of gold micronuggets thus revealing a complex origin for the geochemical anomaly. The association of brass-pyroxene (Mg# = 80–82) with complex gold-brass-lead-tin intergrowths indicates that some gold in till is derived from ultramafic rocks. http://www.geologinenseura.fi/bulletin/Volume72/Knaufetal.pdfgeochemical methodstillfinesgoldbismuthcopperleadtinmetalsalloysore grademineralogy |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
V. Knauf E. Sandberg P. Sokolov E. Tabuns |
spellingShingle |
V. Knauf E. Sandberg P. Sokolov E. Tabuns Gold geochemistry and mineralogy of till fines: a new approach for data integration Bulletin of the Geological Society of Finland geochemical methods till fines gold bismuth copper lead tin metals alloys ore grade mineralogy |
author_facet |
V. Knauf E. Sandberg P. Sokolov E. Tabuns |
author_sort |
V. Knauf |
title |
Gold geochemistry and mineralogy of till fines: a new approach for data integration |
title_short |
Gold geochemistry and mineralogy of till fines: a new approach for data integration |
title_full |
Gold geochemistry and mineralogy of till fines: a new approach for data integration |
title_fullStr |
Gold geochemistry and mineralogy of till fines: a new approach for data integration |
title_full_unstemmed |
Gold geochemistry and mineralogy of till fines: a new approach for data integration |
title_sort |
gold geochemistry and mineralogy of till fines: a new approach for data integration |
publisher |
Geological Society of Finland |
series |
Bulletin of the Geological Society of Finland |
issn |
0367-5211 1799-4632 |
publishDate |
2000-12-01 |
description |
A new method of heavy mineral (HM) separation and assessment of gold grade was compared with the results of conventional AAS analysis. Sixteen gold micronuggets and a number of particles of native metal and metal alloys (brass, tin, bismuth, lead) were extracted from 100 g of till fines (< 50 μm). From the size, number, and composition of micronuggets, the total gold grade (58 ppb) of till fines was evaluated. The assessments agree well with the results of AAS analysis (57 ppb). A slightly lower value (44 ppb) was obtained by Flame Atomic Absorption Analysis with Fire Assay (FAAS FA) method of the extracted HM. Mineralogical investigations allow identification of two types of gold micronuggets thus revealing a complex origin for the geochemical anomaly. The association of brass-pyroxene (Mg# = 80–82) with complex gold-brass-lead-tin intergrowths indicates that some gold in till is derived from ultramafic rocks.
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topic |
geochemical methods till fines gold bismuth copper lead tin metals alloys ore grade mineralogy |
url |
http://www.geologinenseura.fi/bulletin/Volume72/Knaufetal.pdf |
work_keys_str_mv |
AT vknauf goldgeochemistryandmineralogyoftillfinesanewapproachfordataintegration AT esandberg goldgeochemistryandmineralogyoftillfinesanewapproachfordataintegration AT psokolov goldgeochemistryandmineralogyoftillfinesanewapproachfordataintegration AT etabuns goldgeochemistryandmineralogyoftillfinesanewapproachfordataintegration |
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1725861752858476544 |