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  • AUSIMM
    Deposit Types and Paleo-Depth Extents of Coromandel Epithermal Au-Ag Deposits

    By A B. Christie

    Known epithermal deposits in the Coromandel region belong to the low-sulphidation type, represented by three subtypes: (1) andesite-hosted epithermal Au-Ag, (2) rhyolite-hosted epithermal Au-Ag, and

    Jan 1, 2000

  • SME
    Deposition And Oxidation Of Some Mercury Ores ? Introduction

    By Frederick Bradley Henderson

    This study was initiated to investigate the occurrence of cinnabar in the oxidation zones of some mercury sulfide deposits. Seven mines or mine districts were visited and samples were taken from both

    Jan 1, 1965

  • AIME
    Deposition Of Copper Carbonate From Mine Water

    By Philip Wilson

    THE genesis of some orebodies has been explained by the mingling and chemical interaction of water solutions of different compositions and the consequent precipitation of the mineral load of one or bo

    Jan 7, 1922

  • TMS
    Deposition Of Multilayered Titanium Thin Film By ND:YAG Laser Ablation

    TiO2 and Ti/TiO2 thin films were deposited on a quartz substrate by laser ablation of Ti02 and Ti targets using Nd:YAG pulsed laser. After sulfurization of the Ti02 film in H2S or CS2 gas at 1273 K fo

    Jan 1, 2003

  • TMS
    Deposition Of Multilayered Titanium Thin Film By ND:YAG Laser Ablation

    By T. Nakamura

    TiO2 and Ti/TiO2 thin films were deposited on a quartz substrate by laser ablation of TiO2 and Ti targets using Nd:YAG pulsed laser. After sulfurization of the TiO2 film in H2S or CS2 gas at 1273 K fo

    Jan 1, 2003

  • AIME
    Deposition of Ore in Pre-existing Limestone Caves

    By R. T. Walker

    GROUND waters-hot or cold-containing small amounts of the more common earth acids, such as carbonic acid, silicic acid, hydrogen sulfide, sulfurous acid and sulfuric acid, have only a very limited "so

    Jan 1, 1928

  • CIM
    Deposition of porous cathodes using plasma spray technique for reduced-temperature SOFCs

    By J. Jankovic

    Numerous advantages have been recognized for solid oxide fuel cells (SOFCs) operating at temperatures of 500-700°C. However, there are several issues related to low temperature SOFCs, such as high ele

    Jan 1, 2005

  • TMS
    Deposition of Tantalum Oxide Thin Film by Laser Ablation

    By Takeo Fujino, Nobuaki Sato, Junichi Hasegawa, Masato Nakazawa, Kohta Yamada

    "Tantalum oxide thin films were deposited on quartz substrates by laser ablation of Ta2O5 target using Nd:YAG pulse laser. Deposition-was observed when a laser light energy higher than 200 mJ and its

    Jan 1, 2000

  • NIOSH
    Deposition Rates of Coal Dust in Mine Airways

    By R. V. Ramani, R. Bhaskar

    "An airborne dust cloud is an ensemble of particles of varied size, density, shape and states of aggregation. An understanding and quantifying of the dispersion and deposition of the dust generated in

    Mar 1, 1992

  • NIOSH
    Deposition Rates of Coal Dust in Mine Airways

    By R. V. Ramani, R. Bhaskar

    "An airborne dust cloud is an ensemble of particles of varied size, density, shape and states of aggregation. An understanding and quantifying of the dispersion and deposition of the du.st generated i

    Mar 1, 1992

  • SME
    Deposition Rates Of Coal Dust In Mine Airways

    By R. Bhaskar

    An airborne dust cloud is an ensemble of particles of varied size, density, shape and states of aggregation. An understanding and quantifying of the dispersion and deposition of the dust generated in

    Jan 1, 1990

  • SME
    Deposition Rates Of Coal Dust In Mine Airways

    By R. V. Ramani, R. Bhaskar

    An airborne dust cloud is an ensemble of particles of varied size, density, shape and states of aggregation. An understanding and quantifying of the dispersion and deposition of the dust generated in

    Jan 1, 1992

  • AUSIMM
    Depositional Behaviour of Coal Tailings, Co-Disposed Coal Washery Wastes, and Loose-Dumped Coarse Reject

    Coal washery wastes comprise tailings, finer than 0.5 to 0.1 mm depending on the sophistication of the washery, and coarse reject, typically finer than 50 mm. Subaerial disposal of coal tailings slurr

    Jan 1, 1998

  • AUSIMM
    Depositional Behaviour of Coal Tailings, Co-Disposed Coal Washery Wastes, and Loose-Dumped Coarse Reject (AuslMM '98 - The Mining Cycle)

    By D J Williams

    Coal washery wastes comprise tailings, finer than 0.5 to 0.1 inn depending on the sophistication of the washery, and coarse reject, typically finer than 50 mm. Subaerial disposal of coal tailings sl

    Jan 1, 1998

  • SAIMM
    Depositional environment - The original control on gold processing

    By J. A. Kinnaird, B. J. Youlton, K. L. Youlton

    Methods for treating and processing refractory gold ores are well established. However, what is less well understood is how the formation of the gold-bearing deposits affects gold processing and extra

    Jun 1, 2021

  • CIM
    Depositional environment and stratigraphic subdivision-Hat Creek No. 1 deposit, British Columbia

    By H. Kim

    "IntroductionThe Hat Creek coal field contains low-grade coal deposits which are the thickest in the world. The diamond drilling and geophysical surveys conducted by B.C. Hydro over the last six years

    Jan 1, 1985

  • AUSIMM
    Depositional Evolution of the Devonian-Carboniferous Intracratonic Burdekin Basin, North Queensland

    By Draper J. J, Jell J. S

    The Burdekin Basin in the Townsville hinterland is an intracratonic extensional basin which contains up to 4500 m of marine and continental siliciclastics and carbonates. The basin sequence is recogni

    Jan 1, 1990

  • AUSIMM
    Depositional Facies and Heavy Mineral Deposits of the Yoganup Shoreline, Southern Perth Basin

    By Hochwimmer B, Baxter JL

    Heavy minerals are mined from two fossil strandlines on the southern Swan Coastal Plain. The Capel shoreline, 7 km inland, and the Yoganup shoreline, 15 km inland are arcuate, northwest-facing, an

    Jan 1, 1986

  • SME
    Depositional History And Hydrology Of The Green River Oil Shale, Piceance Creek Basin Rio Blanco County, Colorado - Summary

    By Bernard E. Weichman

    The oil shales in the Piceance Creek Basin of northwest Colorado occur in the Parachute Creek member of the Green River formation. The oil shales were deposited in a unique environment of deposition w

    Jan 1, 1973

  • AIME
    Depositional History and Hydrology of the Green River Oil Shale, Piceance Creek Basin, Rio Blanco County, Colorado

    By Bernard E. Weichman

    The oil shales of the Green River formation were deposited in an inland lake which contained abundant plant and animal life. A high percentage of sodium bicarbonate existed in the lower water layers.

    Jan 1, 1975