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Technical Papers and Discussions - Steelmaking - An Equilibrium Study of the Distribution of Phosphorus between Liquid Iron and Basic Slags (Metals Tech., April 1946, T. P. 1987)By John Chipman, Theodore B. Winkler
In order to understand more fully the complexities of the reactions occurring between the liquid steel and the slag in the basic open-hearth steelmaking furnace, investigations in this country and. ab
Jan 1, 1947
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Technical Papers and Discussions - Steelmaking - An Equilibrium Study of the Distribution of Phosphorus between Liquid Iron and Basic Slags (Metals Tech., April 1946, T. P. 1987)By Theodore B. Winkler, John Chipman
In order to understand more fully the complexities of the reactions occurring between the liquid steel and the slag in the basic open-hearth steelmaking furnace, investigations in this country and. ab
Jan 1, 1947
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Part VIII – August 1969 – Communications - The Iron-Indium SystemBy Cuppam Dasarathy
THE object of this note is to report briefly certain results of investigations on the Fe-In phase diagram. BISRA-high purity H-iron and 99.9 pct pure indium were used to prepare the alloys. The experi
Jan 1, 1970
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Institute of Metals Division - Quaternary Alloys of TitaniumBy O. W. Simmons, L. W. Eastwood, C. M. Craighead
Eighty-four quaternary titanium-base alloys from the following systems were investigated: 1. Titanium-chromium-carbon-nitrogen. 2. Titanium-chromium-carbon with copper, vanadium, molybdenum, m
Jan 1, 1951
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Resources of Industrial Minerals - Owens Lake, California-Source of Sodium Minerals (Mining Tech., Sept. 1947, T. P. 2235)By George D. Dub
Owens Lake is at present a source of important nonmetallic minerals, sodium carbonate (soda ash, Na2CO3); sodium sesquicarbonate (trona, Na2CO3.NaHCO3.-2H2O) and borax, (Na2B4O7.10H2O). Owens Lake
Jan 1, 1948
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Resources of Industrial Minerals - Owens Lake, California-Source of Sodium Minerals (Mining Tech., Sept. 1947, T. P. 2235)By George D. Dub
Owens Lake is at present a source of important nonmetallic minerals, sodium carbonate (soda ash, Na2CO3); sodium sesquicarbonate (trona, Na2CO3.NaHCO3.-2H2O) and borax, (Na2B4O7.10H2O). Owens Lake
Jan 1, 1948
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The Mechanism Of CaO Dissolution Into Slag MeltsBy Y. Ueda, F. Noguchi, T. Yanagase
The rate of CaO dissolution into slag melts is of great importance in the field of pyrometallurgy. In this study the mechanism of CaO dissolution has been investigated by observing the melt heated on
Jan 1, 1976
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The Reaction Between Manganese And Iron SulfideBy C. H. Jr. Herty
IT Is well known that manganese will desulfurize molten iron through the formation of manganese sulfide, which, being only slightly soluble in the metal, rises to and enters the slag where it remains
Jan 2, 1925
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Discussions - Extractive Metallurgy DivisionH. G. Haemers (Ghent University, Belgium)—The authors claimed "the results of their work indicate that the metals can be arranged in a sulfation series similar in its application for selective sulfati
Jan 1, 1958
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Technical Note - Uranium Recovery From A Nuclear Fuel Waste FormBy J. E. Flinn, J. M. Welch, R. L. Miller
Introduction Two samples of an iron-enriched basalt (IEB)-a silicate-based fused-cast ceramic waste form-containing components that simulate Three Mile Island Unit 2 core debris were tested for ura
Jan 1, 1986
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Part IV – April 1968 - Papers - Activities in Solid Iridium-Iron and Rhodium-Iron Alloys at 1200°CBy Klaus Schwerdtfeger, Leo Zwell
The equilibrium between Ir-Fe or Rh-Fe alloys, iron oxide (wüstite or magnetite), and CO2-CO atmospheres has been determined at 1200°C. The data are used to derive the activities in these binary sol
Jan 1, 1969
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Thermal Decomposition of Covellite and PyriteBy A. C. Halferdahl
DURING a study of reactions involving iron sulfides, it became desirable to know approxi-mately the heat of decomposition of pyrite. The values given for the heats of formation of pyrite and ferrous s
Jan 11, 1927
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Gold Telluride OresBy R. S. Shoemaker, F. W. McQuiston
EMPEROR GOLD MINES Vatukoula, Fiji 1974 Operating Data to July 1 ORE DESCRIPTION: Ore bodies occur in basalt and associated ash beds overlain by andesite tuffs and sediments. The basalt in muc
Jan 1, 1975
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Mining Methods - Limestone Mining at Ste. Genevieve, Missouri (T. P. 902)By Ralph W. Smith
Development of the lime industry in Ste. Genevieve County began in a crude way in 1840. According to information furnished by the Missouri Bureau of Geology, in the early days small vertical kilns bui
Jan 1, 1938
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Mining Methods - Limestone Mining at Ste. Genevieve, Missouri (T. P. 902)By Ralph W. Smith
Development of the lime industry in Ste. Genevieve County began in a crude way in 1840. According to information furnished by the Missouri Bureau of Geology, in the early days small vertical kilns bui
Jan 1, 1938
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Scranton Paper - Magnesium Carbonate as a Non-Conductor of HeatBy E. Luttgen
The substance referred to in the title is the artificially prepared basic carbonate of magnesia, a compound of the carbonate with the hydroxide. It is the "block-magnesia " of commerce, the magnesia a
Jan 1, 1887
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Rochester Paper - Core-oven Tests (with Discussion)By A.A. Grubb, F.L. Wolf
The tests here described were rrlade to obtain information regarding costs, efficiency, etc. of baking cores in an oil-fired oven and two electric ovens, which were installed, early in 1920, in the co
Jan 1, 1923
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Rochester Paper - Core-oven Tests (with Discussion)By F. L. Wolf, A. A. Grubb
The tests here described were rrlade to obtain information regarding costs, efficiency, etc. of baking cores in an oil-fired oven and two electric ovens, which were installed, early in 1920, in the co
Jan 1, 1923
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Canadian Paper - Proposed Plan for Crushing, Grinding, and Concentrating Low-grade Sulfide Ore (with Discussion)By Arthur Crowfoot
As a result of work done, on an operating scale, in its experimental mill during 1920 and 1921, the plan here given was proposed for crushing, grinding, and concentrating low-grade sulfide ores at the
Jan 1, 1923
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Canadian Paper - Proposed Plan for Crushing, Grinding, and Concentrating Low-grade Sulfide Ore (with Discussion)By Arthur Crowfoot
As a result of work done, on an operating scale, in its experimental mill during 1920 and 1921, the plan here given was proposed for crushing, grinding, and concentrating low-grade sulfide ores at the
Jan 1, 1923