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In-Plant Evaluation of Reagents for Flotation Of Sulfide OresBy G. Granger, D. Malhotra
The paper briefly reviews the criteria employed in the selection of chemical reagents for testing and discusses the steps involved in laboratory and plant evaluation of these reagents. An example of s
Jan 1, 1986
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In-Plant Testing Of Microbubble Column FlotationIn order to overcome some of the deficiencies associated with conventional fine coal cleaning methods, a novel process known as microbubble column flotation (MICROCEL?) was developed at Virginia Tech.
Jan 1, 1991
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In-Process Conveying Of Kaolin ClaysBy Bernard A. Kilgore
Kaolin is a hydrated aluminum silicate mined primarily in middle Georgia along the "fall line", the location of the coast line in prehistoric times. It is used extensively as a filler for paper, insec
Jan 1, 1983
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In-Seam Seismic Detection Of Faults In Coal MinesBy Charles C. Mosher
An in-mine seismic technique for detecting faults has been tested in a Western U.S. coal mine. This technique has been used extensively in the U. K. to help guide longwall mining operations. Explosive
Jan 1, 1983
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In-Seam Seismic Study Of A Fracture Swarm At Invincible Colliery, New South WalesBy Iain M. Mason
Linear meridional zones of bad roof conditions have been frequently encountered in producing collieries working the Permian age Lithgow seam in the western coalfield of New South Wales. The prediction
Jan 1, 1982
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In-Seam Seismic Surveys Using Controlled- Waveform Source TransducersBy J. J. Snodgrass
Faults, sandstone channels, and abandoned mine workings present severe safety hazards, disrupt mining, and necessitate costly precautions or discontinuance of operations. In addition to fault detectio
Jan 1, 1984
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In-Seam Seismic Techniques For Evaluation Of Coal Mine Ground Conditions-Engineering Considerations For Interpreting Data SetsBy M. M. Foss
Geophysical methods are gaining acceptance in the evaluation of coal mine ground control condition. The use of in-seam seismic investigations has contributed significantly to the body of information c
Jan 1, 1995
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In-Situ Anaerobic Biological Immobilization Of Uranium, Molybdenum, And Selenium In An Alluvial AquiferBy T. Mudder, R. Cellan, R. Waterland, J. Whitlock, B. N. Nelson
The effectiveness of anaerobic in-situ biological treatment for the immobilization of selenium, molybdenum, and uranium in an alluvial aquifer was examined using long-term column tests. A series of o
Jan 1, 2002
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In-Situ Bioleaching in Crystaline Rockformations: Comparison of Conditioning Methods for Enhanced PermeabilityBy R. Schlüter
"The global mining industry is facing increasing challenges in terms of geological, technological and social aspects. Potential exploi-tation of deposits shows a tendency to increasing depth with comp
Jan 1, 2018
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In-Situ Bioleaching Investigations Of Michigan Chalcocite OresBy A. M. Johnson
Although known primarily for native copper, the Keweenaw Peninsula of northern Michigan also has deposits of copper sulfide (chalcocite) ore. A number of small, but rich, deposits are present at relat
Jan 1, 1988
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In-Situ Characterization Of Solid/Liquid Interfaces And Adsorbed LayersBy P. Somasundaran, A. Sivakumar
Surfactants and polymers are used in a number of processes such as flotation and flocculation. The structure of the adsorbed surfactant and polymer layers control the interfacial properties of the sol
Jan 1, 1989
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In-Situ Dynamic Moduli of Mesaverde Rocks, Compared to Static and Dynamic Laboratory ModuliBy W. Lin, E. Heuze
This paper focuses on tests performed on sandstones and shales from four gas wells in the Mesaverde formation. A previous document showed a comparison of the static and dynamic laboratory moduli. This
Jan 1, 1986
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In-Situ Electromagnetic Probing Of Coal SeamsBy Sidney A. Suhler
The persistent requirement for methods and equipment capable of detecting hazardous anomalies in advance of underground mining has led to the development by the U.S. Bureau of Mines of a directional r
Jan 1, 1983
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In-Situ FTIR/IRS Characterization of Oleate Adsorption by FluoriteBy Jon J. Kellar
The adsorption of oleate at the surface of a fluorite single-crystal internal reflection element has been investigated using Fourier transform infra-red/internal reflection spectroscopy (FTIR/IRS). Th
Jan 1, 1989
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In-Situ FTIR/IRS Characterization Of Water Structure Near A Hydrophilic Silica SurfaceThe properties of interfacial water at hydrophilic surfaces are of great importance in many technological areas including flotation, solid-liquid separation, dispersion and emulsions, flocculation, ad
Jan 1, 1998
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In-Situ Gravity Retaining Walls by Soil MixingBy Brian H. Jasperse, Nicholson Peter J.
Gravity retaining walls have been constructed using Deep and Shallow Soil Mixing (DSM and SSM) since 1991 in the United States. These walls, for both temporary and permanent uses, were constructed by
Jan 1, 1999
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In-Situ Leaching Of Crownpoint New Mexico Uranium Ore. III. Laboratory Study Of Strong Leaching Systems: Sodium Hypochlorite ? IntroductionBy T. C. Vogt
The past history of uranium production has been dominated by strip and shaft mining methods, but recently in-situ leaching has emerged as a viable alternative for uranium recovery. (1-8) Mobil was the
Jan 1, 1981
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In-Situ Leaching Of Crownpoint New Mexico Uranium Ore. IV. Laboratory Study Of Strong Leaching Systems: Oxidant- Sulfuric Acid ? IntroductionBy T. C. Vogt
Earlier we described the uranium mineralogy of an areally broad sampling of Crownpoint ore, including the characterization of organic carbonaceous material associated with the uranium mineral. (1) We
Jan 1, 1981
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In-Situ Leaching Simulation Studies Of Uranium OresBy P. S. Sundar
A laboratory method for the simulation of in-situ leaching of uranium was developed under contract to the Interior Department's Bureau of Mines. Simulation tests using sulfuric acid, ammonium bic
Jan 1, 1978
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In-Situ Leaching Wellfield Design At San Manuel (6664c3e1-7b01-45f7-9059-ffbafdfcdaaf)By K. L. Wiley
In-situ leaching, initiated in 1986 at San manual, was economically developed in 1989. The primary reason for this lag time between startup and viable production was the time required for technical de
Jan 1, 1993