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  • NIOSH
    RI 9675 - Self-Contained Self-Rescuer Long Term Field Evaluation: Tenth Phase Results

    The National Personal Protective Technology Laboratory (NPPTL) of the National Institute for Occupational Safety and Health (NIOSH) has undertaken a collaborative study with the Mine Safety and Health

    Jan 6, 2008

  • NIOSH
    RI 8329 Low-Temperature Heat Capacities and Enthalpy of Formation of Copper Difluoride (CuF2)

    By R. P. Beyer

    Low-temperature heat capacities and standard enthalpy of formation of copper difluoride (CuF2) were determined by the Bureau of Mines. The low-temperature heat capacities were determined from 11 to 30

    Jan 1, 1978

  • NIOSH
    RI 7046 Heats Of Formation Of Holmium And Terbium Trichlorides

    By J. M. Stuve

    The standard heats of formation (?Hf°) of holmium trichloride and terbium trichloride were measured by solution calorimetry. Heats of solution of holmium and terbium metals and their anhydrous chlorid

    Jan 1, 1967

  • NIOSH
    RI 6687 Heats Of Formation Of Anhydrous Ferric Sulfate And Indium Sulfate

    By R. Barany

    The heats of formation of anhydrous ferric sulfate and anhydrous indium sulfate were determined by solution calorimetry. At 298.15° K the heats of formation from the metal, rhombic sulfur, and oxygen

    Jan 1, 1965

  • NIOSH
    RI 6669 Low-Temperature Heat Capacities And Entropies At 298.15°K Of Anhydrous Sulfates Of Cobalt, Copper, Nickel, And Zinc

    By W. W. Weller

    Heat capacity measurements of anhydrous cobalt sulfate (CoSO4), copper sulfate (CuSO4), nickel sulfate (NiSO4), and zinc sulfate (ZnSO4) were conducted over the temperature range 51° to 298° K. The re

    Jan 1, 1965

  • NIOSH
    RI 6873 Heats Of Formation Of Lithium Sulfate And Five Potassium-And Lithium-Aluminum Silicates

    By R. Barany

    The heats of formation of seven substances were determined by solution calorimetry. At 298.15° K, the heat of formation of lithium sulfate from lithium, rhombic sulfur, and oxygen was -343.1 ± 0.7 kca

    Jan 1, 1966

  • NIOSH
    RI 9559 - Improved Grindability of Taconite Ores by Microwave Heating

    By John W. Walkiewicz

    The U.S. Bureau of Mines has conducted studies to utilize rapid microwave heating to stress fracture ore samples. Iron ores containing hematite, magnetite, and goethite were subjected to microwave ene

    Jan 1, 2010

  • NIOSH
    RI 7535 Thermodynamic Properties Of (Na20)4?Fe203, 6° To 1,200° K

    By J. M. Stuve

    Calorimetric determinations of the low-temperature heat capacities, standard enthalpy of formation, and high-temperature enthalpies were made of (Na20)4 ?Fe20,(c). The resulting values of entropy (S°)

    Jan 1, 1971

  • NIOSH
    IC 7725 Conversion Tables For Fluorescent X-Ray Spectroscopy - Introduction

    By William J. Campbell

    The possibility of chemical analysis by identification of characteristic X-ray spectral lines was first suggested by H. C. J. Moseley in 1913.3/ For a given spectral series it was found that the frequ

    Jan 1, 1955

  • NIOSH
    RI 6155 Thermodynamic Properties Of Yttrium Metal And Iron Pentacarbonyl At High Temperatures

    By James R. Welty

    Heat content values were experimentally determined for yttrium metal between temperatures of 400° and 1,300° K and for iron pentacarbonyl between 301° and 380° K. The drop technique was used; that is,

    Jan 1, 1963

  • NIOSH
    RI 6784 Glass-Crystal Transformation Of Nepheline And Wollastonite And Heat Of Formation Of Nepheline

    By R. Barany

    The heats of the glass-crystal transformation of nepheline (Na0.7794K0.2206AlSiO4) and wollastonite (CaSiO3) and the heat of formation of nepheline at 298.15° K were determined by solution calorimetry

    Jan 1, 1966

  • NIOSH
    RI 6245 Low-Temperature Heat Capacities And Entropies At 298.15° K Of The Sesquioxides Of Scandium And Cerium

    By W. W. Weller

    Low-temperature heat capacities of scandium sesquioxide (Sc203) and a mixture of cerium sesquioxide (Ce203) and cerium dioxide (CeO2) were measured over the temperature range from 50° to 298° K. The e

    Jan 1, 1963

  • NIOSH
    RI 6849 A Knudsen Effusion Apparatus For Vapor Pressure Measurements

    By Stephen D. Hill

    The Bureau of Mines devised and constructed a modified Knudsen effusion apparatus, permitting a constant measure of the weight of effusing vapor, to determine the equilibrium vapor pressure of metal h

    Jan 1, 1966

  • NIOSH
    RI 6716 Correlation Of Yield Behavior In Electrorefined Vanadium With Interstitial Impurities

    By E. A. Loria

    The Bureau of Mines analyzed the effects of oxygen, nitrogen, and carbon on the tensile properties of electrorefined vanadium in terms of the Petch equation. The effects of the different impurities an

    Jan 1, 1966

  • NIOSH
    RI 9659 - Evaluation of Explosion-Resistant Seals, Stoppings, and Overcast for Ventilation Control in Underground Coal Mining

    By Michael J. Sapko, Eric S. Weiss, Kenneth L. Cashdollar

    A fundamental safety research area for the National Institute for Occupational Safety and Health (NIOSH) is to eliminate the occurrence of coal mine explosions or to mitigate their effects. One approa

    Jan 1, 2003

  • NIOSH
    RI 8265 Thermodynamic Data on the Amphibole Asbestos Minerals Amosite and Crocidolite

    By K. O. Bennington

    [Thermodynamic properties of two amphibole asbestos minerals were determined by the Bureau of Mines. The enthalpies of formation were determined by the hydrofluoric acid solution calorimetry method. H

    Jan 1, 1978

  • NIOSH
    OFR-27-83 Further Studies On Optimum Combined Fire Retardand/Preservative Treatments And Stench Warning Systems For Wood Mine Timber

    By Mark Davis

    As a follow-on to previous investigations, reduced treatment levels for the optimum fire retardant/preservative system were evaluated. An impregnation of 3.5 lbs/ft3 of Fyreprufe followed by 3.5 mils

    Jan 1, 1982

  • NIOSH
    RI 8384 Bench-Scale Flotation of Insoluble Slimes From Potash Ore

    By Philip Thompson

    A part of the Bureau of Mines mission is to help improve the Nation's mineral posture by providing the technology for utilizing low-grade ores. In this regard, laboratory testing by the Bureau of

    Jan 1, 1979

  • NIOSH
    RI 8687 Introduction of Sulfur Into Copper Converter Slags To Produce Copper Matte

    By J. I. Paige

    As part of a continuing effort to develop technology that maximizes mineral and metal recovery from domestic resources, the Bureau of Mines investigated a method to totally utilize copper converter sl

    Jan 1, 1982

  • NIOSH
    RI 7369 Low-Temperature Heat Capacities And Entropies At 298.15° K Of Goethite And Pyrophyllite

    By E. G. King

    Low-temperature heat capacity determinations of the minerals goethite and pyrophyllite were made in the temperature range from 510 to 298° K. The entropies at 298.15° K were evaluated as 14.43 ±0.15 c

    Jan 1, 1970