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carbon
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ocean floors (1)
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Plantae
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Precambrian
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upper Precambrian
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Vazante Deposit
The Vazante zinc mine, Minas Gerais, Brazil; constraints in willemitic mineralization and fluid evolution Free
F ig . 3. Images of supergene nonsulfide zinc minerals. a. Replacement of b... Available to Purchase
The Metallogeny of Gold, Iron and Lead-Zinc Deposits of the Quadrilátero Ferrifero (São Francisco Craton) and Brasilia Belt (Paracatu And Vazante Districts) Available to Purchase
This guidebook presents the itinerary, activities, relevant research information, and geologic context for the 2024 Ronald E. Seavoy Student Field Trip in the Quadrilátero Ferrifero and Brasilia Belt of Brazil, which took place June 1st through 9th, 2024. Participants visited several mines in these heavily mineralized metallogenic regions, including Pilar mine, Cuiabá gold mine, and Morro do Ouro gold mine, to name a few. A major objective of this field trip was to impress upon students the importance of developing a comprehensive understanding of a deposit’s mineralogy to carry workers through all stages of a mine project.
The Metallogeny of Gold, Iron and Lead-Zinc Deposits of the Quadrilátero Ferrifero (São Francisco
This guidebook presents the itinerary, activities, relevant research information, and geologic context for the 2024 Ronald E. Seavoy Student Field Trip in the Quadrilátero Ferrifero and Brasilia Belt of Brazil, which took place June 1st through 9th, 2024. Participants visited several mines in these heavily mineralized metallogenic regions, including Pilar mine, Cuiabá gold mine, and Morro do Ouro gold mine, to name a few. A major objective of this field trip was to impress upon students the importance of developing a comprehensive understanding of a deposit’s mineralogy to carry workers through all stages of a mine project.
Metal sources in the Proterozoic Vazante-Paracatu sediment-hosted Zn District, Brazil: Constraints from Pb isotope compositions of meta-siliciclastic units Available to Purchase
Neoproterozoic successions of the São Francisco Craton, Brazil: the Bambuí, Una, Vazante and Vaza Barris/Miaba groups and their glaciogenic deposits Available to Purchase
Abstract The Neoproterozoic successions of the São Francisco Craton are primarily represented by the Bambuí and Una groups, deposited in cratonic epicontinental basins, and by the Vazante and Vaza Barris/Miaba groups, which accumulated on passive margins on the edges of the craton. The epicontinental basins comprise three megasequences: glaciogenic, carbonate platform (marine) and dominantly continental siliciclastics. Possible correlative sequences are observed in the passive margin deposits. At least two major transgressive–regressive sea-level cycles occurred during the evolution of the carbonate megasequence, which lies above glaciomarine diamictites of probable early Cryogenian (i.e. Sturtian) age. C, O, Sr and S isotope trends from analyses of well-preserved samples, together with lithostratigraphic observations, provide reasonable correlations for most of the Neoproterozoic successions of the São Francisco Craton. The 87 Sr/ 86 Sr record of these successions, ranging from 0.70769 to 0.70780, supports the proposed correlation with the Bambuí, Una and Vaza/Barris successions, and with the basal units of the Vazante Group. In addition, C-isotope positive excursions ranging from +8.7 to +14‰ and negative excursions from –5.7 to –7‰ VPDB in the Bambuí, Una and Vaza-Barris successions provide key markers for correlations. The precise ages of the sedimentation in these successions remains a matter of debate, but organic shales of two units of the Vazante Group have been dated by Re–Os techniques in two different laboratories, both yielding Mesoproterozoic ages. The Neoproterozoic and Mesoproterozoic successions preserve significant glaciogenic deposits.
Neoproterozoic mantle connections during the West Gondwana assembly in the Vazante Carbonate Platform, Central Brazil Available to Purchase
Formation of Willemite in Hydrothermal Environments Available to Purchase
Chapter 5: The Low-Grade, Neoproterozoic, Vein-Style, Carbonaceous Phyllite-Hosted Paracatu Gold Deposit, Minas Gerais, Brazil Available to Purchase
Abstract The Paracatu deposit in Brazil is a shallowly dipping, bulk-tonnage, low-grade, vein-style orogenic Au orebody hosted in very strongly deformed Neoproterozoic carbonaceous phyllite of the southern Brasília fold belt. At regional to district scales, the gold orebody lies along the eastern, hanging-wall edge of a major thrust of the ~630 Ma Brasiliano orogeny. This thrust cuts through a facies transition between clastic-dominated rocks of the Canastra Group and carbonate-dominant rocks of the Vazante Group, deposited at ~1000 Ma in a rift to passive-margin environment on the flank of the São Francisco craton. At the same scales, the footwall of this major thrust system hosts numerous structurally controlled zinc deposits including Vazante and Morro Agudo. At Paracatu, ore genesis occurred primarily by the formation of early tectonic quartz sulfide-carbonate veins, prior to substantial ductile deformation (boudinage), local physico-chemical reworking of these veins, and redistribution of some gold. Structural, geochemical, and isotopic data indicate a strong influence of the local rocks (cm to 100-m scales) on many ore ingredients, and the quartz and carbonate in ore veins were most likely derived locally (cm to m scales). However, the coassociation of gold and arsenic with the boudinaged veins and a major thrust, and the absence of metal enrichments normally associated with syngenetic metalliferous black shales, supports a model of far-field derivation of gold within this metasedimentary package (km to 10-km scales). Transport of metal-bearing fluids toward a favorable structural and chemical site during thrusting and orogenesis was possibly focused, during precipitation to ore grades, by the position of transverse structures in the basement, which also influenced deposition of the adjacent zinc deposits. Successful mining of the low-grade resource was initially favored by the subhorizontal orebody geometry and weathering characteristics, and subsequently by high production rates from the 100-m-thick mineralized zone.