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VentilationBy Christopher J. Bise
INTRODUCTION Traditionally, the purpose of mine ventilation has been defined as diluting, rendering harmless, and sweeping away hazardous gases which may accumulate in the mine workings. In additi
Jan 1, 1986
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Controlled Release Bactericide: An Innovative System To Control Acid Mine DrainageBy A. A. Sobek
Controlled release systems delivering the required concentration of an effective bactericide over an extended time period have been developed by The BFGoodrich Company's ProMac® Systems group. Th
Jan 1, 1986
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OFR-38-86 On The Development Of A Model-Based Control Strategy For Copper-Ore FlotationBy J. A. Herbst
During the last decade it has been established that conventional flotation control strategies based on classical control theory result in significant increases in grade, recovery, and operating-cost s
Jan 1, 1986
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MLA 11-86 - Mineral Resources Of The Yatahoney Creek Wilderness Study Area, Owyhee County, IdahoBy Andrew M. Leszcykowski
In 1984, personnel from the U.S. Bureau of Mines examined the 9,550-acre Yatahoney Creek Wilderness Study Area (WSA) for mineral resources. This study area, in southwestern Idaho, is underlain by tuff
Jan 1, 1986
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Major Issues In Subsidence RegulationBy Gregory R. Gorrell
The legal issues surrounding the regulation of subsidence are among the major concerns facing the underground mining industry today. Whether subsidence occurs almost immediately as a result of longwal
Jan 1, 1986
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Discussions - Reserves, Resources, And Pie-In-The-Sky - Technical Papers, Mining Engineering, Vol. 36, No. 10, October, 1984, pp. 1446 -1450 – Grace, K. A.A. Cook K.A. Grace's article advocates usage of the terms describing resources as defined by the US Bureau of Mines (USBM) and the US Geological Survey (USGS). Originally recommended in 1943
Jan 1, 1986
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MLA 49-86 - Mineral Resources Of The Big Jacks Creek Study Area, Owyhee County, Idaho ? SummaryBy Richard A. Winters
In 1985, at the request of the U.S. Bureau of Land Management, the U.S. Bureau of Mines studied 49,875 acres of the 54,833-acre Big Jacks Creek Wilderness Study Area (ID-111-7C) in order to evaluate t
Jan 1, 1986
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Modeling of in-Mold Heat Transfer in Continuous Casting of SteelBy Kenneth P. Michalek, James E. Kelly, Jonathan A. Dantzig
"Many investigations have been reported regarding the simulation of continuous casting with emphasis on in-mold heat transfer. These analyses have been limited, however, because they require either es
Jan 1, 1986
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Pneumatic Backfilling - A Method For Controlling Abandoned Mine SubsidenceBy Steve Jones
Minor subsidence damage to the Burgettstown Junior-Senior High School building and grounds near Burgettstown, Washington County, Pennsylvania, prompted an investigation of the site in early 1985 by th
Jan 1, 1986
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Huronian geology and the Blind River (Elliot Lake) uranium depositsBy James A. Robertson
"In the Blind River area Proterozoic clastic and sedimentary rocks and minor volcanic rocks (The Huronian Supergroup) uncomformably overlie and trangress northwards over dominantly granitic Archean te
Jan 1, 1986
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OFR-6-87 Mine Hoist Electrical Systems Study - Volume III - Microprocessor Application Study: Safety-Related Issues Associated With The Application Of Microprocessors In Mine Hoist Systems.By C. Richard Groves
As the level of technology applied in the electrical measurement, control, and display portions of mine hoist systems continues to advance, the issues and concerns associated with the ramifications of
Jan 1, 1986
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MLA 13-86 - Mineral Resources Of The Pahute Peak Wilderness Study Area, Humboldt County, NevadaBy Jerry E. Olson
In 1984, the U.S. Bureau of Mines conducted a mineral survey of the Pahute Peak Wilderness Study Area (WSA) (NV-020-621), which covers 57,529 acres in Humboldt County, NV. About 90 percent of the WSA
Jan 1, 1986
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IC 9091 Placer Gold Sampling In And Near The Chugach National Forest, AlaskaBy Robert B. Hoekzema
The Bureau of Mines and U.S. Geological Survey completed a 4-yr (1979-82) mineral appraisal of the Chugach National Forest (CNF), AK. This report summarizes the Bureau's placer gold studies in th
Jan 1, 1986
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Primary Production & Secondary Recycle Of Tin Metal & Alloys In The U.S.A.By Thomas S. Mackey
The industrial types, sources, and quantities of USA tin residues are identified and the methods of treatment reviewed. The effect of a lower tin price, due to a current major world surplus of tin met
Jan 1, 1986
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Characterization Of Adsorbed Oleate Species At The Fluorite Surface By FTIR SpectroscopyBy J. S. Hu
FTIR spectroscopy has been used for the characterization of adsorbed oleate at the fluorite surface. It has been found that modest changes in the adsorption density at high temperature and high oxygen
Jan 1, 1986
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General geology and uranium deposits of the Beaverlodge DistrictBy L. S. Beck
"IntroductionThe Beaverlodge District is an important mineralogenic province of pitchblende and occupies about 1300 square kilometres centred on Beaverlodge Lake near the north shore of Lake Athabasca
Jan 1, 1986
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OFR-44-87 Methods For The Selective Sampling Of Diesel Particulate In Mine Dust AerosolsBy Virgil A. Marple
The objective of this contract was to investigate time-integrated and real-time methods for determining the diesel exhaust particulate concentration in underground mines, in particular, coal mines. Th
Jan 1, 1986
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Arc Pressure Control in GTA WeldingBy George E. Cook, Peter C. Levick, Francis M. Wells
"Relationships are established between the peak current of a pulsed, rectangular current waveform and the pulse current duty cycle under conditions of constant arc power. By appropriate choice of thes
Jan 1, 1986
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Fluoride Activation In Oleate Flotation Of Collophanite (c982710c-3798-47d6-8e6c-eccb90bced21)By A. Yehia
Fluoride activation has been evaluated by Hallimond-tube flotation of collophanite in terms of fluoride concentration, conditioning time, pH, and temperature. The results reveal that efficient oleate
Jan 1, 1986
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RI 9016 - Large-Scale Dewatering of Phosphatic Clay Waste From Polk County, FLBy D. R. Brooks
The Bureau of Mines has tested a dewatering technique for phosphatic clay waste. The technique utilizes a flocculant, polyethylene oxide (PEO), that forms strong, stable flocs that can be dewatered on
Jan 1, 1986