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OFR-189-83 Stable Isotope Variations In Coals And Associated Mineral MatterBy Thomas F. Anderson
(Measurements of stable isotopic variations (sulfur, carbon, and oxygen), supplemented by chemical, mineralogical, and petrographic analyses have been used to investigate the processes responsible for
Jan 1, 1983
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IC 7473 Making Iron Powder in the Tunnel KilnBy V. H. Gottschalk
Among the procedures developed by the Germans for providing the tonnage of iron powder needed to make rotating bands for artillery shells is the use of a ceramic tunnel kiln, not only for finishing th
Aug 1, 1948
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RI 3490 Annual Report Of The Explosives Division, Fiscal Year 1939 ? IntroductionBy Wilbert J. Huff
The work of the Explosives Division, Bureau of Mines, United States Department of the Interior, for the fiscal year ended June 30, 1939, is described in the following pages. This paper is the fourth o
Jan 1, 1940
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RI 3250 A Thermal Conductivity Apparatus For Continuous Determination Of The Helium Content Of Natural Gas ? IntroductionBy Allen S. Smith
Analysis of the helium content of a natural gas presents more than the usual difficulties encountered in applying the thermal--conductivity method because of the relatively small amounts of this inert
Jan 1, 1934
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RI 9397 - Production of Titanium Dioxide Pigment From Perovskite Concentrates, Acid Sulfation MethodBy A. E. Petersen
To reduce U.S. dependence on imports of titanium, the U.S. Bureau of Mines has investigated the recovery of titanium from perovskite (CaTi03). Domestic perovskite deposits represent a significant, but
Jan 1, 2010
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RI 5603 The Fischer-Tropsch Synthesis In The Oil-Circulation Process: Experiments With A Nitrided Fused-Iron Catalyst ? SummaryBy D. Bienstock
Using a nitrided fused-iron catalyst, the Bureau of Mines investigated the Fischer-Tropsch reaction in the oil-circulation process. The nitrided iron was quite stable and permitted the longest run obt
Jan 1, 1960
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RI 3490 Annual Report Of The Explosives Division, Fiscal Year 1939 ? Introduction (2dcb94ad-dd15-44ff-8b85-29719cc37115)By Wilbert J. Huff
The work of the Explosives Division, Bureau of Mines, United States Department of the Interior, for the fiscal year ended June 30, 1939, is described in the following pages. This paper is the fourth o
Jan 1, 1940
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RI 3331 Progress Reports - Metallurgical Division - 14. Annual Report Of The Metallurgical Division, Fiscal Year 1936 ? ForewordBy R. S. Dean
This report, the second of a series of annual reports of the Metallurgical Division to be released in this form covers the fiscal year July 1, 1935, to June 30, 1936. The technological work of the
Jan 1, 1937
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RI 6552 Some generalized probability distributionssBy Robert M. Becker
This report (the second in a series of five) presents the mathematical development in extending the theory of sample reliability from a sample consisting of a fixed number of items to a sample consist
Jan 1, 1964
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IC 6457 HafniumBy Paul M. Tyler
Hafnium appears to be among the more abundant of the newly discovered elements . Though quite widely distributed in nature , its compounds chemically so resembled those of zirconium , its sister eleme
Apr 1, 1931
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RI 3009 The Sand And Gravel Safety Contest Of 1929By W. W. Adams
The United States Bureau of Mines, in cooperation with the National Send and Gravel Association conducted a safety contest in 1929 Among producers of sand and gravel. Only 26 plants were enrolled, as
Jan 1, 1930
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RI 5311 Consumable-Electrode Arc Melting Of Titanium And Its Alloys ? SummaryBy R. W. Huber
A consumable-electrode arc-melting furnace was constructed at the Bureau of Mines Physical Metallurgy Laboratory, College Park, Md., for the production of uncontaminated titanium and titanium-alloy in
Jan 1, 1957
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Finding the effect of ventilation on conveyor belt fire suppression systemsBy James Rowland
On June 1, 2004, the underground coal mine ventilation safety standards under the Code of Federal Regulations (Title 30, Part 75) became effective for the use of a conveyor belt entry as an intake air
Jan 1, 2009
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Coal-Mine Accidents In The United States, 1940 - IntroductionBy W. W. Adams
With production of coal per man-hour of work at a higher level than ever before, the coal-mining industry of the United States established a near-record in lowering the accident rate of nonfatal injur
Jan 1, 1942
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A Hazard Evasion Program For Mine PlanningBy Frank Ruskey
This report describes a computer program devised by the Bureau of Mines to model coal-mining situations where one or more panels encounter oil or gas wells. The program seeks in several hundred trials
Jan 1, 1972
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IC 7906 Investigation Of Oxygen Production By Metal Chelates ? Summary And conclusionsBy R. F. Stewart
A key step in changing coals to fluid fuels and chemicals is the conversion of coal to synthesis gas by gasification with steam and oxygen. As oxygen represents one of the largest single expenses in g
Jan 1, 1959
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RI 7978 Solvent Stimulation Tests In Two California OilfieldsBy H. J. Lechtenberg
This Bureau of Mines report investigates solvent injection as a means of increasing oil production from low-gravity oilfields; thus, wells in two California oilfields that produce from reservoirs havi
Jan 1, 1974
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RI 3331 Progress Reports - Metallurgical Division - 14. Annual Report Of The Metallurgical Division, Fiscal Year 1936 ? Copper Metallurgy SectionBy Dean. R. S.
The work of the copper metallurgy section during the year was devoted to laboratory studies of sulphur recovery from smelter smoke and combination smelting of copper and manganese. Both of these subje
Jan 1, 1937
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RI 8852 - Evaluation of Mine Seals Constructed in 1967 at Elkins, Randolph County, WVBy Lester M. Adams
In 1980, the Bureau of Mines surveyed a group of mine seals in Randolph County, WV, to evaluate their effectiveness for reducing toxic pollutants in mine water discharges. The survey focused on 11 blo
Jan 1, 1984
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RI 6180 Thermal Expansion Of The Oxides Of Yttrium, Cerium, Samarium, Europium, And DysprosiumBy Roy L. Wilfong
The linear expansion of high-purity oxides of yttrium, cerium, samarium, europium, and dysprosium was determined by the interferometric method for the temperature range 25° to 1,000° C. Single-crystal
Jan 1, 1963