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  • AIME
    Preparation of Industrial Minerals - Concentrating Operations of the Mahoning Mining Company, Rosiclare, Illinois (Mining Tech., Sept. 1946, T.P. 2040)

    By Walter E. Duncan

    The ores treated at the concentrating plant of the Mahoning Mining Co. at Rosiclare, Ill., come largely from the blanket replacement deposits of the northeastern part of Hardin County, Illinois, and c

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Concentrating Operations of the Mahoning Mining Company, Rosiclare, Illinois (Mining Tech., Sept. 1946, T.P. 2040)

    By Walter E. Duncan

    The ores treated at the concentrating plant of the Mahoning Mining Co. at Rosiclare, Ill., come largely from the blanket replacement deposits of the northeastern part of Hardin County, Illinois, and c

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Continuous Centrifuge in the Mineral Industry (Mining Tech., July 1947, T.P. 2195)

    By C. S. Lyons and. A. L. Johnson

    A few years ago a leading American builder of centrifuges said, "No one uses a centrifuge if the job can be done any other way." This statement was essentially true at that time, not because the basic

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Continuous Centrifuge in the Mineral Industry (Mining Tech., July 1947, T.P. 2195)

    By C. S. Lyons and. A. L. Johnson

    A few years ago a leading American builder of centrifuges said, "No one uses a centrifuge if the job can be done any other way." This statement was essentially true at that time, not because the basic

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Conveyor-belt Operation (Mining Tech., July 1947, T.P. 2212)

    By M. C. Dow

    Belt conveyors generally are conceded to be the most economical method yet devised for the transportation of large quantities of bulk materials within plants. Belts are coming into greater use for tra

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Conveyor-belt Operation (Mining Tech., July 1947, T.P. 2212)

    By M. C. Dow

    Belt conveyors generally are conceded to be the most economical method yet devised for the transportation of large quantities of bulk materials within plants. Belts are coming into greater use for tra

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Flash Drying and Calcining as Developed from Mill Drying (Mining Tech., Sept. 1945, T.P. 1897)

    By William B. Senseman

    FoR reasons well known to mining engineers, wet grinding is quite universal in plants having to do with the extraction of metallic values from crude ores. In the processing of the nonmetallic and indu

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Flash Drying and Calcining as Developed from Mill Drying (Mining Tech., Sept. 1945, T.P. 1897)

    By William B. Senseman

    FoR reasons well known to mining engineers, wet grinding is quite universal in plants having to do with the extraction of metallic values from crude ores. In the processing of the nonmetallic and indu

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Froth Flotation of a North Carolina Ilmenite Ore (Mining Tech., Jan. 1944, T.P. 1653)

    By L. L. McMurray

    Ilmenite is the most important raw material for manufacture of titanium dioxide.' Industrially, several other products are made from ilmenite, the most important of which are: ferro titanium, fer

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Froth Flotation of a North Carolina Ilmenite Ore (Mining Tech., Jan. 1944, T.P. 1653)

    By L. L. McMurray

    Ilmenite is the most important raw material for manufacture of titanium dioxide.' Industrially, several other products are made from ilmenite, the most important of which are: ferro titanium, fer

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - The Firing of Rotary Kilns with Powdered Coal (Mining Tech., Sept., 1946, T.P. 2042)

    By W. C. Knoblaugh

    Rotary kilns are adaptable to many fuels, but this paper deals principally with the use of powdered coal. The observations and conclusions presented are based on rotary kilns used in the manufacture o

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - The Firing of Rotary Kilns with Powdered Coal (Mining Tech., Sept., 1946, T.P. 2042)

    By W. C. Knoblaugh

    Rotary kilns are adaptable to many fuels, but this paper deals principally with the use of powdered coal. The observations and conclusions presented are based on rotary kilns used in the manufacture o

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - The Recovery of Pyrite from Coal Mine Refuse (Abstract) (Mining Tech., July 1944, T.P. 1744; TRANS AIME (1944) 157, 141

    By David K. Mitchell

    The mineral pyrite (or marcasite) occurs in coal beds as balls, lenses, veinlets and bands. Several million tons are w-asted annually on the refuse dumps from coal mining and coal-preparation activiti

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - The Recovery of Pyrite from Coal Mine Refuse (Abstract) (Mining Tech., July 1944, T.P. 1744; TRANS AIME (1944) 157, 141

    By David K. Mitchell

    The mineral pyrite (or marcasite) occurs in coal beds as balls, lenses, veinlets and bands. Several million tons are w-asted annually on the refuse dumps from coal mining and coal-preparation activiti

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Wear-resistance Tests on Domestic Materials for Pebble-mill Linings (Mining Tech., Mar. 1946, T.P. 1948)

    By C. E. Berry

    Natural stone or manufactured porcelain pebbles are used as the grinding elements in pebble mills and the mills are lined with stone or porcelain blocks. Steel balls usually form the grinding medium i

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Wear-resistance Tests on Domestic Materials for Pebble-mill Linings (Mining Tech., Mar. 1946, T.P. 1948)

    By C. E. Berry

    Natural stone or manufactured porcelain pebbles are used as the grinding elements in pebble mills and the mills are lined with stone or porcelain blocks. Steel balls usually form the grinding medium i

    Jan 1, 1948

  • AUSIMM
    Preparation of Iron Oxide Feed Stock for Pig Iron/Sponge Iron Production - Role of NMDC

    By Sahoo K. C

    Traditionally, the blast furnace (BF) has maintained a dominant position as the primary source of iron units. Notwithstanding the efficient nature of the process in respect of its material and energ

    Jan 1, 1999

  • IMPC
    Preparation of Iron Oxide Red by Acid Leaching Tailings

    By F. L. Mentg

    The utilization of acid leaching tailings was studied. It is obvious that the Fe in acid leaching tailings can be leached into solutions as Fe2+. In this paper, the influence of conditions, including

    Jan 1, 2014

  • TMS
    Preparation of Iron Oxide Red Pigment Powders from Pyrite Cinders by Hydrothermal Method

    By Zhao-cheng Liu

    Iron oxide red pigment powders of high quality were synthesized from pyrite cinders. Iron ox-ide red pigment powders were synthesized by hydrothermal method from the precursor of Fe(OH)3 and Fe(OH)2 c

    Jan 1, 2009

  • TMS
    Preparation of Lead Zirconate Titanate through a Spark Plasma Sintering Technique

    By Kazuyuki Kakegawa

    "Sintered body of lead zirconate titanate (PZT) was prepared through the spark plasma sintering (SPS) technique. When the mixture of raw materials was calcined at 800°C and sintered at 900°C for 10 mi

    Jan 1, 2000