Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil

Detalhes bibliográficos
Autor(a) principal: LARIZZATTI, João Henrique
Data de Publicação: 2008
Outros Autores: OLIVEIRA, Sonia Maria Barros de, BUTT, C. R. M.
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional de Geociências - RIGEO
Texto Completo: https://rigeo.cprm.gov.br/handle/doc/551
Resumo: This study describes the morphological evolution of gold grains in a lateritic weathering profile in an equatorial rainforest climate. Primary sources of gold are quartz veins associated with shallow granophyric intrusion. Gold grains were found in fresh ore, saprolite,transition zones, ferruginous duricrust, red latosol,and yellow latosol. Irregularly shaped grains predominate, with smaller proportions of dendritic and prismatic forms. Gold grains are weathered in the uppermost 10 m of the regolith. Mean gold grain size is maximum in the duricrust (>125 lm) and decreases progressively upward into the yellow latosol (<90 lm). Voids and corrosion pits appear on grain surfaces, and progressive rounding is observed from the bottom of the profile to the top.Gold grains can be classified as either homogeneous or zoned with respect to their chemical composition. Homogeneous grains contain 2–15% Ag (mean 8.3%). Zoned grains have more variable Ag contents; grain cores have means of approximately 10% or 23% Ag, with Ag-poor zones of approximately 3.7% Ag along internal discontinuities and/or outer rims. Formation of Ag-poor rims is due to referential depletion of silver. Processes responsible for duricrust formation may preserve some grains as large aggregates, but subsequent transformation into latosol further modifies them
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spelling LARIZZATTI, João HenriqueOLIVEIRA, Sonia Maria Barros deBUTT, C. R. M.2013-12-19T16:32:39Z2013-12-19T16:32:39Z2008LARIZZATTI, João Henrique; OLIVEIRA, Sonia Maria Barros de; BUTT, C. R. M. Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil. Journal of South American Earth Sciences, Oxford, v.25, n.3, p.359-376, Oxford.https://rigeo.cprm.gov.br/handle/doc/551This study describes the morphological evolution of gold grains in a lateritic weathering profile in an equatorial rainforest climate. Primary sources of gold are quartz veins associated with shallow granophyric intrusion. Gold grains were found in fresh ore, saprolite,transition zones, ferruginous duricrust, red latosol,and yellow latosol. Irregularly shaped grains predominate, with smaller proportions of dendritic and prismatic forms. Gold grains are weathered in the uppermost 10 m of the regolith. Mean gold grain size is maximum in the duricrust (>125 lm) and decreases progressively upward into the yellow latosol (<90 lm). Voids and corrosion pits appear on grain surfaces, and progressive rounding is observed from the bottom of the profile to the top.Gold grains can be classified as either homogeneous or zoned with respect to their chemical composition. Homogeneous grains contain 2–15% Ag (mean 8.3%). Zoned grains have more variable Ag contents; grain cores have means of approximately 10% or 23% Ag, with Ag-poor zones of approximately 3.7% Ag along internal discontinuities and/or outer rims. Formation of Ag-poor rims is due to referential depletion of silver. Processes responsible for duricrust formation may preserve some grains as large aggregates, but subsequent transformation into latosol further modifies themMORFOLOGIAOUROLATERITOSBRASILAMAZÔNIAMorphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazilinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleOxfordengreponame:Repositório Institucional de Geociências - RIGEOinstname:Companhia de Pesquisa de Recursos Minerais (CPRM)instacron:CPRMinfo:eu-repo/semantics/openAccessTEXTart_joao_larizzatti.pdf.txtart_joao_larizzatti.pdf.txtExtracted texttext/plain56925http://rigeo.cprm.gov.br/jspui/bitstream/doc/551/2/art_joao_larizzatti.pdf.txt73bb60622f60c5024bbf0a5bfa3c0799MD52THUMBNAILart_joao_larizzatti.pdf.jpgart_joao_larizzatti.pdf.jpgGenerated Thumbnailimage/jpeg1604http://rigeo.cprm.gov.br/jspui/bitstream/doc/551/3/art_joao_larizzatti.pdf.jpg8691ca0bbc81bfb4fd3b5fcc3dc63c58MD53ORIGINALart_joao_larizzatti.pdfart_joao_larizzatti.pdfproducao cientificaapplication/pdf2748440http://rigeo.cprm.gov.br/jspui/bitstream/doc/551/1/art_joao_larizzatti.pdf0d60bd8841b0a1d53e0af3290ae82a05MD51doc/5512023-02-13 11:10:39.499oai:rigeo.sgb.gov.br:doc/551Repositório InstitucionalONGhttps://rigeo.sgb.gov.br/oai/request https://rigeo.cprm.gov.br/oai/requestrigeo@sgb.gov.bropendoar:2023-02-13T14:10:39Repositório Institucional de Geociências - RIGEO - Companhia de Pesquisa de Recursos Minerais (CPRM)false
dc.title.none.fl_str_mv Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil
title Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil
spellingShingle Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil
LARIZZATTI, João Henrique
MORFOLOGIA
OURO
LATERITOS
BRASIL
AMAZÔNIA
title_short Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil
title_full Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil
title_fullStr Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil
title_full_unstemmed Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil
title_sort Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil
author LARIZZATTI, João Henrique
author_facet LARIZZATTI, João Henrique
OLIVEIRA, Sonia Maria Barros de
BUTT, C. R. M.
author_role author
author2 OLIVEIRA, Sonia Maria Barros de
BUTT, C. R. M.
author2_role author
author
dc.contributor.author.fl_str_mv LARIZZATTI, João Henrique
OLIVEIRA, Sonia Maria Barros de
BUTT, C. R. M.
dc.subject.por.fl_str_mv MORFOLOGIA
OURO
LATERITOS
BRASIL
AMAZÔNIA
topic MORFOLOGIA
OURO
LATERITOS
BRASIL
AMAZÔNIA
description This study describes the morphological evolution of gold grains in a lateritic weathering profile in an equatorial rainforest climate. Primary sources of gold are quartz veins associated with shallow granophyric intrusion. Gold grains were found in fresh ore, saprolite,transition zones, ferruginous duricrust, red latosol,and yellow latosol. Irregularly shaped grains predominate, with smaller proportions of dendritic and prismatic forms. Gold grains are weathered in the uppermost 10 m of the regolith. Mean gold grain size is maximum in the duricrust (>125 lm) and decreases progressively upward into the yellow latosol (<90 lm). Voids and corrosion pits appear on grain surfaces, and progressive rounding is observed from the bottom of the profile to the top.Gold grains can be classified as either homogeneous or zoned with respect to their chemical composition. Homogeneous grains contain 2–15% Ag (mean 8.3%). Zoned grains have more variable Ag contents; grain cores have means of approximately 10% or 23% Ag, with Ag-poor zones of approximately 3.7% Ag along internal discontinuities and/or outer rims. Formation of Ag-poor rims is due to referential depletion of silver. Processes responsible for duricrust formation may preserve some grains as large aggregates, but subsequent transformation into latosol further modifies them
publishDate 2008
dc.date.issued.fl_str_mv 2008
dc.date.accessioned.fl_str_mv 2013-12-19T16:32:39Z
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dc.identifier.citation.fl_str_mv LARIZZATTI, João Henrique; OLIVEIRA, Sonia Maria Barros de; BUTT, C. R. M. Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil. Journal of South American Earth Sciences, Oxford, v.25, n.3, p.359-376, Oxford.
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identifier_str_mv LARIZZATTI, João Henrique; OLIVEIRA, Sonia Maria Barros de; BUTT, C. R. M. Morphology and composition of gold in a lateritic profile, Fazenda Pison Garimpo, Amazon, Brazil. Journal of South American Earth Sciences, Oxford, v.25, n.3, p.359-376, Oxford.
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