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RI 7950 Preliminary Investigation of Desilication of Minerals With Sulfur and CarbonBy H. O. Poppleton
This Bureau of Mines study was made to investigate a possible method for selectively removing the Si02 component of silicate minerals and ores. Of specific interest were aluminum ores and zircon.
Jan 1, 1974
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RI 5448 Petroleum-Engineering Study Of Muskogee Oilfield, Muskogee County, Okla. ? Introduction And SummaryBy C. H. Riggs
This report describes the geology and reviews the oil-production history of the Dutcher sands of Pennsylvania age in the Muskogee oilfield. The geology and production history are presented not alone a
Jan 1, 1959
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IC 7706 Chrysotile-Abestos Deposits of ArizonaBy L. A. Stewart
"SUMMARYThis paper describes most of the chrysotile-asbestos deposits of Arizona. Mining methods are discussed briefly and asbestos-mill flowsheets are incorporated. Arizona asbestos mines are the onl
Jan 1, 1955
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Safety analysis of surface haulage accidents?Part 1 (b1c0b0cc-7664-49b4-ba40-81a5e5dd99d8)By Robert F. Randolph
Research on improving haulage truck safety, started by the U.S. Bureau of Mines, is being continued by its successors. This two-part article reports the orientation of the renewed research efforts, be
Jun 1, 1997
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Safety analysis of surface haulage accidents - Part 1By Robert F. Randolph
Research on improving haulage truck safety, started by the U.S. Bureau of Mines, is being continued by its successors. This two-part article reports the orientation of the renewed research efforts, be
Jan 1, 1997
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Clean Automotive Fuel - Engine Emissions Using Natural Gas, Hydrogen-Enriched Natural Gas, And Gas Manufactured From Coal (Synthane)By D. B. Eccleston
Natural gas and mixtures of natural gas and hydrogen were used as fuels in a laboratory engine to determine the relationship of emissions to air-fuel ratio and to establish practical lean limits for a
Jan 1, 1972
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RI 4013 Apex Copper Property, Coconino County, ArizBy Stanton L. Tainter
When the disruption of gold mining stopped the usual source of siliceous flux needed by copper smelters , sandstone copper deposits in northern Arizona offered possibilities as a source of the flux du
Feb 1, 1947
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RI 8093 - Selected Geologic Factors Affecting Mining Of The Pittsburgh CoalbedBy W. P. Diamond, B. M. Bench, C. M. McCulloch, Maurice Deul
As part of the Bureau of Mines methane control program, the Pittsburgh coalbed was studied in Washington and Green Counties, Pa., and in Marion and Monongalia Counties, W. Va., where this coalbed is n
Jan 1, 1975
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RI 9470 - Geologic Investigations Near an Underhand Cut-and-Fill Stope, Lucky Friday Mine, Mullan, IDBy Douglas F. Scott
Researchers from the U.S. Bureau of Mines conducted geologic investigations in an area of the Lucky Friday Mine, Mullan, ID, that included the 5300-107 demonstration stope using underhand longwall cut
Jan 1, 2010
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IC 8605 Card-Gap And Projectile Impact Sensitivity Measurements, A CompilationBy Richard W. Watson
Card-gap and projectile impact sensitivity data are presented for a wide variety of explosive compositions tested at the Bureau of Mines in more or less standard test geometries. The results of both t
Jan 1, 1973
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Blasting Injuries In Surface Mining With Emphasis On Flyrock And Blast Area SecurityBy D. K. Ingram, G. L. Mowrey, T. R. Rehak
Problem: Blasting is a hazardous component of surface mining. Serious injuries and fatalities result from improper judgement or practice during rock blasting. This paper describes several fatal inj
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OFR-39-90 Cyanide Leach Technology And Its Applicability To Alaskan ConditionsBy Denise A. Herzog
The U.S. Bureau of Mines conducted a study of cyanide leach technology used in Alaska's mineral industry from 1987 through 1990. Literature and cost data were obtained for mines in the contiguous
Jan 1, 1991
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Backfilling, Grading, And Revegetation - IntroductionBy Ronald D. Hill, Elmore C. Grim
Surface mining drastically alters the ecological characteristics of the area disturbed and in some cases has a decided effect on surrounding areas. Vegetation is removed, topographic features and char
Jan 1, 1974
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IC 9102 Lithium Availability-Market Economy Countries - A Minerals Availability AppraisalBy D. I. Bleiwas
The Bureau of Mines determined the costs associated with lithium production (in various products) from demonstrated resources in seven market economy countries (MEC's). This analysis evaluated th
Jan 1, 1986
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RI 9666 - Applications Of Ground-Based Radar To Mine Slope MonitoringBy Edward L. McHugh, Charles Sabine, Jami Dwyer, David G. Long
Slope failure accidents were responsible for about 12% of U.S. surface mine fatalities between 1995 and 2003. Small surface movements on a mine highwall may be precursors of failure that, if detected,
Jan 4, 2006
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RI 4091 Blue Bell Fluorite Deposits, Beaver Co. UTBy Eugene Frey
"INTRODUCTION The Blue Bell fluorite deposits were examined in August and November 1944 by an engineer 3/ of the Bureau of Mines, and an underground project was set up. The Bureau of Mines began devel
Jul 1, 1947
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RI 6471 Hydraulic Fracture Treatments in Glade and Clarendon Oil Reservoirs, Warren County, PaBy Robert L. Rough, William E. Eckard
Laboratory data obtained from a Bureau of Mines rotary air core of a well near Sugar Grove , Warren County , Pa . , were instrumental in initiating hydraulic fracturing in the area to stimulate oil re
Jan 1, 1964
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IC 8343 A Numerical Method For Determining Heat Transfer Characteristics For A Dilute Gas-Solids Mixture In An Externally Heated TubeBy M. J. Lempel
A theoretical study of the heat-transfer characteristics of a dilute gas-solids mixture in an externally heated tube is reported. Detailed equations are developed describing the system, and a numerica
Jan 1, 1967
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OFR-43-87 A Prototype Hydride-Powered Underground Mining VehicleBy Ned Baker
This report describes the development, construction and testing of a hydrogen-fueled underground mining vehicle. A hydrogen burning engine and a hydride fuel system, both previously developed, were in
Jan 1, 1985
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RI 4010 Jones iron Deposit, Socorro County, N. MexBy R. M. GRANTHAM, J. H. SOULE
C. R. Keyes, F. C. Schrader , F. A. Jones ( the first director of the New Mexico School of Mines , whose name was given the deposits ) , and N. H. Darton all described the Jones iron deposits within
Feb 1, 1947