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In Situ Leaching Of Uranium ? SummaryBy John A. Sievert
Sedimentary deposits contain an appreciable portion of the world's supply of uranium. Predictions of nuclear fuel usage in the United States indicate that these reserves will have to be tapped if
Jan 1, 1970
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In Situ Leaching: A New Blasting ChallengeBy D. D. Porter, H. G. Carlevato
Blasting to prepare orebodies for in situ leaching usually involves extraordinary conditions which sometimes require special and innovative techniques. To date several unusually large blasts have been
Jan 1, 1974
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In Situ Measurement Of Rock Stress With Hydraulic Borehole Pressure Cells ? ObjectiveDevelop a new technique of in situ rock stress measurement which can be used when and where the conventional methods, such as the overcoring stress relief methods and the hydrofracturing method, canno
Jan 1, 1988
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In Situ Micro Raman Study of the NO3 − Electrochemical Behavior in Molten NaNO3–KNO3 MixturesBy Zhuo Sheng
We have designed a high-temperature Raman micro-furnace and cell that is suited for the electrochemical process study of the NO3 − in molten NaNO3– KNO3 (fraction of NaNO3 50 wt%) salt. During the cyc
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In Situ Mine Roof Trusses Combining Rock Compression With Steel Tension MembersBy C. C. White
Although many notable scientific investigations relating to roof control have been made, roof control still must be considered one of the more baffling problems confronting the miner. Each year contri
Jan 1, 1968
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In Situ Mining - A New Engineering OpportunityBy Steve Axen
In situ mining is now considered an alternative mining method for some ore bodies. The in situ operation consists of a well field designed from reservoir properties and geological information; the wel
Jan 1, 1979
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In Situ Mining A Design For Positive ResultsBy Albert L. St. Peter
The "Old Reliable" four million pound blast in March of 1972 marked the opening, as far as is known, of serious efforts to commercialize the In Situ concept. That was a coyote shot, and it was followe
Jan 1, 1976
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In Situ Mining Geologic Characterization Studies: Experimental Design, Apparatus, And Preliminary Results (04a7035d-9725-41eb-81e3-bc29641b40ce)By Steven E. Paulson
In situ mining is emerging as a potential alternative to conventional surf ace and underground mining techniques. A major factor in determining recoveries by in situ mining is the proportion of ore mi
Jan 1, 1987
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In situ mining push-pull field test for evaluating cation exchange parametersBy D. R. Tweeton, L. W. Lake
A modified push-pull field test and a computer model of cation exchange were developed to aid in evaluating cation exchange parameters prior to in situ mining. Reliable determination of these paramete
Jan 1, 1987
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In Situ Mining Push-Pull Field Test For Evaluating Cation Exchange Parameters (a57858ec-c582-44b1-a0a6-69023fa6878e)By D. R. Tweeton
A modified push-pull field test and a computer model of cation exchange were developed to aid in evaluating cation exchange parameters prior to in situ mining. Reliable determination of these paramete
Jan 1, 1986
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In Situ Monitoring of Cemented Paste Backfill Pressure to Increase Backfilling EfficiencyBy M. W. Grabinsky, B. D. Thompson
ABSTRACT: Use of cemented paste backfill (CPB) offers economic and environmental advantages over other backfill methods. However, many operations have limited knowledge of how their CPB behaves in sit
Jan 1, 2011
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In SITU Observation of High Temperature Properties of Iron Ore during Sintering ProcessBy Minge Zhao, Yuandong Pei, Zhixing Zhao, Zejun Ma, Lili Ban
"Confocal scanning laser microscope (CSLM) has been applied to carry out the in-situ observation of melting and solidifying characteristics during iron ore sintering process, accompanied with TG-DSC t
Jan 1, 2012
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In situ observation of phase transition of silico-ferrite of calcium and aluminiumBy H Kim, J Park, J Lee
Silico-ferrite of calcium and aluminium (SFCA) is a bonding phase in the iron ore sinter. The phase transition upon melting of SFCA was investigated with Differential Scanning Calorimetry and Confocal
Jun 19, 2024
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In Situ Precipitation of Scorodite in Atmospheric Leaching of EnargiteBy G. Fazel Jahromi
Enargite, known as one of the major arsenic containing copper minerals, with approximately 19% arsenic, introduces challenges to typical processing options. In most hydrometallurgical processing metho
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In Situ Rock Deformability Tests at the Rocky Mountain Pumped Hydro ProjectBy Nick Barton, Khosrow Bakhtar
Two plate load tests of 1 m2 area were per- formed in a pressure tunnel at the Rocky Mountain Pumped Hydro Project. Reaction for the 250 tons loading in this 10.5 meter diameter tunnel was provided by
Jan 1, 1986
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In Situ Soil Mixing Concepts Explained; Myths Dispelled - What Is Soil Mixing?By Richard W. Hanford
The geotechnical construction industry generally considers soil mixing to be defined as an in situ ground improvement or treatment method by which a dry or wet reagent is introduced into the ground an
Jan 1, 2001
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In Situ Strength Testing of Rocks with the Borehole PenetrometerBy Kot F. von Unrug
One of the major difficulties in the proper characterization of rocks surrounding excavations is the lack of data. The existing method for strength determination requires core drilling for sample coll
Jan 1, 1998
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In Situ Stress Measurement and Stress Change Monitoring in a Longwall Mine to Monitor Overburden Caving Behaviour and to Design a Hydraulic Fracture Treatment ProgramBy Rob G. Jeffrey, Ken W. Mills, Jesse W. Puller
"A coal mine in New South Wales is longwall mining 300m wide panels at a depth of 160-180m directly below a 16-20 m thick conglomerate strata. As part of a strategy to use hydraulic fracturing to mana
Jan 1, 2015
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In Situ Stress Measurements in a Drilling Hole Penetrated to the Tohoku-Oki Earthquake Fault: Indication of Coseismic Stress ChangeBy Weiren Lin
The Mw 9.0 Tohoku-Oki, Japan earthquake occurred on 11 March 2011 produced a maximum coseismic slip of >50 m near the Japan Trench. To investigate why the plate boundary fault between the subducting P
Jan 1, 2015
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In Situ Stress Measurements Using Oriented CoreBy G Baird, M Seto
A low-cost methodology that allows the determination of in situ stresses using oriented core specimens has been investigated. The technique can be used to determine the stresses during the early stage
Jan 1, 2000