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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
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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
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Preparation Of Infrared Materials From Ultra fine Quartz PowderBy Huaming Yang
Infrared materials are a special kind of material widely used in military, biological engineering and chemical industry. However, the problems associated with them such as unstable properties, high co
Jan 1, 2003
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Preparation of Iron Oxide Feed Stock for Pig Iron/Sponge Iron Production - Role of NMDCBy 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
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Preparation of Iron Oxide Red by Acid Leaching TailingsBy 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
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Preparation of Iron Oxide Red Pigment Powders from Pyrite Cinders by Hydrothermal MethodBy 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
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Preparation of Lead Zirconate Titanate through a Spark Plasma Sintering TechniqueBy 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
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Preparation of Low Ash Coal for Carbonization and Conversion ProcessesProperties of coal which are significant in relation to preparation for carbonization and conversion are reviewed, and existing coal preparation technology which has been used for production of cleane
Jan 1, 1980
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Preparation of Low-Carbon Ti2O3 by Carbonthermal Reduction of the Mixture of Titanium Dioxide and Activated Carbon Under Vacuum ConditionBy Xinzhong Deng, Naixiang Feng, Kejia Liu, Jianping Peng, Yaowu Wang, Yi Zhang, Yuezhong Di
Low-carbon Ti2O3 was prepared by carbonthermal reduction of the mixture of titanium dioxide and activated carbon at vacuum condition. The kinetics and phase evolution of Ti2O3 formation process were i
Mar 1, 2017
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Preparation of M003 from Ammonium Tetramolybdate in Microwave FieldsBy Jian Li, Guo Chen, Bingguo Liu, Hongying Xia, Jinhui Peng, Libo Zhang
"Decomposition of ammonium tetramolybdate to prepare Mo03 using silicon carbide crucible in microwave fields was investigated. The results were analyzed Using TG-DTG and X-ray diffraction. Meanwhile,
Jan 1, 2013
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Preparation of Magnesium Chloride from Magnesite Dust Using Hydrochloric Acid Leaching and Spray DryingBy Ch. R. V. S. Nagesh, Ramesh Naidu Mandapati, Venkata Swamy Nalajala, Tondepu Subbaiah, Naga Jyothi Kothamasu
Leaching studies of magnesite obtained from Tamilnadu Magnesite Limited, Salem, have been carried out using hydrochloric acid leaching and percentage of magnesium chloride recovered was estimated. The
Jun 7, 2022
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Preparation of magnesium hydroxide surfaces as a model for flame retardant fillers (Technical Note)By M. S. Vernon, J. J. Kellar, W. M. Cross, R. M. Winter, F. J. Johnson, A. G. Pommer
Three substrates (MgO crystal, CaF2 crystal and Mg plate) were used to construct thin layers of Mg(OH)2. Various routes were used to modify these substrates, including surface hydration and sol-gel co
Jan 1, 2000
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Preparation Of Magnetic Fluids With Polar Solvent CarriersBy A. Kounosu, T. Fujita, J. Shimoiizaka, K. Nakatsuka
Stable aqueous dispersion of magnetite colloid of about 10 nm in diameter was obtained by allowing an anionic or nonionic surfactant to adsorb on the hydrophobic surface of magnetite particles prepare
Jan 1, 1980
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Preparation of Mechanically Loaded CoalBy E. H. GRAFF
PREPARATION of mechanically loaded coal in mines where seams contain considerable impurities is a subject that requires careful consideration before machines are installed, unless provision is made at
Jan 1, 1926
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Preparation Of Metallic Single Crystals And Twinning In Zinc And Zinc Single CrystalsBy Orlando Romig
PART I-PREPARATION OP METALLIC SINGLE CRYSTALS WITH ESPECIAL REFERENCE TO SINGLE CRYSTALS OP ZINC? As metals and alloys are composed, of, an aggregate of allotriomorphic crystals or grains, each pos
Jan 1, 1927
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Preparation of Metallic Single Crystals and Twinning in Zinc and Zinc Single Crystals (a8e18352-9158-49b1-97eb-ed30e470a6c9)By Orlando E. Romig
As metals and alloys are composed of an aggregate of allotriomorphic crystals or grains, each possessing an individual orientation, the physical characteristics of a metal or an alloy are closely rela
Jan 1, 1927
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Preparation of MgO Nano-Particles with MagnesitePreparation of MgO Nano-Particles with Magnesite
Sep 13, 2010
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Preparation of MgO Whisker from Magnesite TailingsBy Yue-yuan Li
China has abundant magnesite resource, but the low-grade and powder ores have always been rejected, which influences the comprehensive utilization of resource and often causes circumstance problems. T
Jan 1, 2010
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Preparation Of MgO With Low CaO Content And High Specific Surface Area From Low-Grade DolomiteBy Xiang-yang Zhou
Keywords: Low-Grade Dolomite, Low CaO Content, High Specific Surface Area, MgO. A low energy consumption preparation technology of magnesium oxide with low calcium oxide content and high specific s
Jan 1, 2005
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Preparation of Mine Fill and Disposal of Residue at Zinc Corporation New Broken Hill Consolidated, Broken HillBy Johns AS
Comissioning of a new residue disposal tcluding upgraded classification for none backfill preparation, new variable speed pumps and a new residue dam took place in 1¦76. The system is described.
Jan 1, 1978