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IC 6930 Consumption Of Primary And Secondary Tin In The United States In 1935 ? IntroductionBy E. W. Pehrson
In making any canvass of secondary metals great care must be exercised to avoid duplication or exaggeration of net consumption. One of the major difficulties is to trace the metal accurately as it pas
Jan 1, 1936
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MLA 15-88 - Mineral Resources Of The Henrys Lake Wilderness Study Area, Fremont County, IdahoBy Thomas J. Peters
In 1987, at the request of the U.S. Bureau of Land Management, the Bureau of Mines studied the 350-acre Henry?s Lake Wilderness Study Area (ID-035-077) in order to evaluate its identified mineral reso
Jan 1, 1988
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OFR-49-94 Modeling Ecosystem Impacts Of The Greens Creek Mine - A Preliminary StudyBy Patrick D. Plumb
The Bureau of Mines (BOM) has begun a project to increase the understanding of the relationships between ecosystem health and its functions, and minerals development. The BOM, Juneau Branch, Alaska Fi
Jan 1, 1994
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Electrical Accidents in the Mining Industry, 1990-1999By James C. Cawley
This National Institute for Occupational Safety and Health study was conducted to focus future research on the most significant electrical problems in the mining industry. Data from 1,926 mine electri
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RI 3666 Inflammability of Trichloroethylene-Oxygen-Nitrogen MixturesBy G. S. Scott, G. W. Jones
Trichloroethylene (CHC1CC12) is an important solvent for fats , resins , bitumens, rubber , sulfur , and phosphorus . It is used extensively in drycleaning because of its low order of combustibility a
Nov 1, 1942
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IC 7806 Use Of Lignin Sulfonate For Dust Control On Haulage Roads In Arid Regions ? Summary And IntroductionBy John P. Harmon
Vehicles traveling on untreated dirt and gravel roads at open-pit mines disseminate high concentrations of dust (fig. 1). Excessive dust creates safety hazards by reducing visibility and may endanger
Jan 1, 1957
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IC 7703 Testing For Methane In Out-Of-Reach Places ? Introduction And AcknowledgementsBy M. L. Davis
The principal causes of many methane-gas explosions that have occurred in anthracite mines, especially in thick pitching veins, during recent years can be traced to lack of a satisfactory method of te
Jan 1, 1954
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IC 7498 Fire Fighting Facilities at Four Pennsylvania Bituminous-Coal MinesBy G. W. Grove, O. V. SIMPSON
During the years 1945, 1946 , 1947 , and up to July 1, 1948, only one death was caused by mine fires in bituminous - coal mines of the United States . The one fatality occurred in an Illinois mine in
Apr 1, 1949
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RI 8655 Copper Losses and the Distribution of Impurity Elements Between Matte and Silica-Saturated Iron Silicate Slags at 1,250° CBy E. A. Johnson
The Bureau of Mines determined the effect of slag additives on copper solubility and the distribution of typical impurity elements between copper-iron matte and silica-saturated fayalite (iron silicat
Jan 1, 1982
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RI 9131 Time-Dependent Behavior of Coal Measure Rocks: Adsorption Rate and Strength DegradationBy Sathit Tandanand
This report presents a Bureau of Mines study on the time-dependent behavior of coal measure rocks for future implementation in stability analysis and safety evaluation of in-mine rock structures. This
Jan 1, 1987
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Inflammatory and Fibrotic Mediator Release by Alveolar Macrophages from Coal MinersBy J. L. Stauffer, L. J. Gaydos, L. M. Demers, D. C. Kuhn
"Eicosanoids and cytokines produced by alveolar macrophages (AM) are key mediators of pulmonary inflammation and fibrosis. In order to determine if eicosanoid production and cytokine production are al
Dec 1, 1996
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RI 4006 Old Reliable Copper Mine, Pinal County, ArizBy Thomas C. Denton
The Old Reliable copper mine was first examined by Harlow D. Phelps , an engineer of the Bureau of Mines , in October and November 1942 , in compliance with a request from the War Production Board , w
Feb 1, 1947
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RI 4284 Ellington Manganese Deposit Reynolds County, Mo.By A. C. Johnson
The Ellington manganese deposit in Reynolds County J Mo., had been known for some time; and limited exploration, consisting of test pitting and sinking a shaft 54 feet deep on the property, had been d
Jan 1, 1948
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The Generic Mineral Technology Center for Respirable Dust: A New Multidisciplinary Approach to ResearchBy Raja V. Rarnani, Robert L. Frantz
"Co-Directors, Generic Mineral Technology Center for Respirable DustEarly in the 1980s, the U.S. Bureau of Mines initiated the concept of the Generic Center, incorporating it into its mining research
Jan 1, 1995
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RI 9431 - Development and Testing of a Computer-Assisted Remote-Control System for the Compact Loader-Trammer (c9fe9ae1-e51b-474a-8ffc-070d36b0f639)By T. M. Ruff
A prototype mucking machine designed to operate in narrow-vein stopes was developed by Foster-Miller, Inc., Waltham, MA, under contract with the U.S. Bureau of Mines. The machine, called a compact loa
Jan 1, 2010
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IC 7838 Block Caving In Limestone At The Crestmore Mine, Riverside Cement Co., Riverside, Calif. ? SummaryBy Albert E. Long
This paper presents a description of the operational mechanics involved in block-caving a granodiorite-capped, limestone deposit. This method was used for 24 years at the Crestmore mine, near Riversid
Jan 1, 1958
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OFR-20-88 Personal Equipment For Low Seam Coal Miners: IX. Development And Testing Of Knit Fabric GlovesBy Mark S. Sanders
This report discusses the development and testing of prototype gloves for underground mining work. An analysis of HSAC hand-finger injuries revealed three high-risk jobs: laborer, mechanic, and roof b
Jan 1, 1985
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RI 6659 Flammability Characteristics Of EthyleneBy George S. Scott
The Bureau of Mines conducted ignition, flammability, and decomposition experiments on gas mixtures containing ethylene to determine its flammability characteristics at elevated pressures and ambient
Jan 1, 1965
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RI 6002 Some Nonmetallic Mineral Resources For Alaska's Construction Industry ? Introduction And SummaryBy R. S. Warfield
Following World War II, the rapid increase in both military and civilian activity in the area served by the Alaska Railroad stimulated interest in the availability of local sources of nonmetallic mine
Jan 1, 1962
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RI 5710 High-Temperature Heat Content And Entropies Of Crystalline And Glassy Germanium Dioxide ? Introduction And SummaryBy K. K. Kelley
This report contains heat-content values for hexagonal crystalline germanium dioxide between 298.15° and 1,350° K., and for germanium dioxide glass between 298.15° and 1,800° K. experimentally determi
Jan 1, 1961