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Geochemistry Of Massive Sulfide-Associated Hydrothermal Exhalative Sediments, Bathurst, New BrunswickBy Jan M. Peter
Many of the Pb-Zn massive sulfide deposits of the Bathurst area in northern New Brunswick, Canada, are intimately associated with laterally continuous iron formation (IF) (Figure 1). This IF is a foss
Jan 1, 1993
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Geochemistry of Mercury and Origins of Natural Contamination of the EnvironmentBy I. R. Jonasson, R. W. Boyle
"Current interest in the distribution of mercury in the natural environment comes from quite different, though not unrelated, sources. Mercury has long been an important metal in many industries and h
Jan 1, 1972
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Geochemistry of Mesozoic Hydrothermal Alteration of Black Shales Associated With Mercur-Type Gold DepositsBy Paula N. Wilson, W. T. Parry
Carbonaceous and metalliferous black shales occur in close proximity to Mercur-type gold deposits in the southern Oquirrh Mountains, Utah. These shale units, the Manning Canyon shale and the Long Trai
Jan 1, 1990
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Geochemistry of Molybdenum-Bearing Granodiorite Porphyries in West Nelson, with Special Reference to Elliot CK, Karamea Bend and Taipo SpurBy S D. C Rabone
An elongate belt containing granodiorite stocks with associated stockwork molybdenum mineralisation in west Nelson is correlated with the I-type Separation Point Suite of mid Cretaceous age. Trace ele
Jan 1, 1987
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Geochemistry Of Polymetallic Veins And Associated Wall Rock Alteration, Pyramid District, NevadaBy Andy B. Wallace
Veins in the Pyramid district of northwestern Nevada occur along steep fractures in Oligocene and Miocene quartz latite tuffs. The vein mineralization is zoned from a central enargite-pyrite zone outw
Jan 1, 1978
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Geochemistry of Polymetallic Veins and Associated Wall Rock Alteration, Pyramid District, Washoe County, NevadaBy Andy B. Wallace
Veins in the Pyramid district of northwestern Nevada occur along steep fractures in Oligocene and Miocene quartz latite tuffs. The vein mineralization is zoned from a central enargite-pyrite zone outw
Jan 1, 1981
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Geochemistry Of Rare Earth Elements In Hydrothermal SedimentsBy Robert M. Owen
The rare earth elements (REE1s; atomic number 57 -71) exhibit a coherent chemistry, are widespread in nature, and tend to occur in characteristic concentrations in different geochemical phases. Becaus
Jan 1, 1989
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Geochemistry of Tailings and Seepage from Three Tailings Storage Facilities in Australia - Uncapped, Capped and Active TailingsBy T Baumgartl, D Bradshaw, B Forsyth, M Edraki
In a tailings storage facility, the chemistry of pore water is a function of oxidation and dissolution of sulfide minerals, containing metals and metalloids, the neutralising effect of gangue minerals
Jul 10, 2012
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Geochemistry of the British Caledonides: the setting for metallogenyBy D. M. A. Flight, P. M. Green, J. A. Plant, P. R. Simpson
Paper presented at Mineralisation in the Caledonides, the Mike Gallagher memorial meeting held in Edinburgh, 27-28 June 1996. The British Geological Survey's regional geochemical database is used to i
Jun 19, 1905
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Geochemistry of the Platinum-Group Elements"4.1. IntroductionThis chapter reviews the geochemistry of the platinum-group elements (POE) in sulphur-poor silicate rocks, and the limited data on POE in silicate, oxide, sulphide, arsenide and sulp
Jan 1, 1979
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Geochemistry of Wall Rock Alteration at the Waihi and Favona Epithermal Deposits, New ZealandBy D N. Castendyk, J L. Mauk
The world-class Waihi (>6.6 Moz Au, >41.8 Moz Ag) and adjacent Favona (>0.5 Moz Au) deposits are within a single volcanic-hosted epithermal Au-Ag district located in the southern Coromandel P
Jan 1, 2003
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Geochemistry of Wallrock Alteration at the Golden Cross Deposit, New ZealandBy J L. Mauk
Golden Cross is a volcanic-hosted, low-sulfidation, epithermal Au-Ag deposit in the Hauraki Goldfield. Irrespective of the rock type (andesite versus dacite), hydrothermally altered wallrocks are enri
Jan 1, 2000
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Geochemistry Of Waters From Deep Irrigation Wells In The Vicinity Of A Deeply Buried Porphyry Copper Deposit Near Casa Grande, Arizona - IntroductionBy Gary A. Nowlan
The Casa Grande West-Santa Cruz porphyry-¬copper deposit is in the Basin and Range physiographic province west of Casa Grande, Arizona (Fig. 1). The Casa Grande West portion of the deposit is controll
Jan 1, 1981
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Geochronology and Critical Mineral Potential of Selected Laramide Porphyry and Related Deposits in Southwest New Mexico - SME Annual Meeting 2024By K. T. Stafford, N. A. Iverson, V. T. McLemore
Southwestern New Mexico is part of a large belt of Late Cretaceous to Eocene copper porphyry deposits found in Arizona, New Mexico, and Mexico. These deposits are the result of arc magmatism that occu
Feb 1, 2024
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Geocoat™ Biooxidation Demonstration At Ashanti Goldfields' Obuasi Operations, Ghana, West AfricaBy Richard M. Crowell, John W. Shield, Todd J. Harvey
Facing lower gold prices, gold mine operators throughout the world are seeking ways to reduce costs for treating refractory sulfide ores. Many gold mines, currently producing oxide ores, have underlyi
Jan 1, 1999
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Geodynamic and Geochemical Evolution of the Fiji RegionThe Fiji islands are the world's most ac- cessible Cenozoic remnant arc. They provide occasional subaerial exposures of an arc frag- ment some 750 km long and 80 km wide, or about the size of t
Jan 1, 1987
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Geodynamic Modelling as an Exploration ToolBy Y Zha, J L. Walshe, A Ord, N J. Archibald
The purpose of this paper is to discuss the concept of Geodynamic Modelling as an exploration tool and to provide a specific example, namely, the Century Zinc deposit in Northern Queensland. Geodynami
Jan 1, 2000
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Geodynamics of Giant Porphyry Ore DepositsBy D Giles
We present plate tectonic reconstructions, showing that porphyry-type ore deposits are spatially and temporally linked to ridge subduction. A reconstruction of the Peruvian subduction system reveals a
Jan 1, 2008
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Geoeconomics Education in The Soviet UnionBy Vitaly T. Borisovich
Mining economics courses have been taught in Europe for more than two centuries and in the United States for most of this century. They are the mineral industry's version of engineering economics
Jan 1, 1991
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Geoelectrical Methods for Investigating Mine DumpsBy David V. Fitterman, David L. Campbell
We've used direct current resistivity (DC), electromagnetic (EM), induced polarization (IP), and ground-penetrating radar (GPR) geoelectrical methods to study mine dumps. The results reflect lith
Jan 1, 2000