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The Research Institute of Mineral Dressing and Metallurgy | 論文
- Quantitative Inorganic Chromatography. II : Determination and Detection of Copper in Zinc
- Rate of Desulphurization of Molten Iron by Slag under Reducing Condition. II : Influence of Silicon and Manganese
- Quantitative Inorganic Chromatography. IV : Chromatographic Separation of Some Acids and Salts on Alumina Impregnated Paper
- Quantitative Inorganic Chromatograpy. III : Separation and Determination of Zinc in Cadmium
- On Activities of Coexisting Elements in Molten Iron. II : The Activity of Silicon in Molten Fe-Si System
- On the Activities of Cr and C in Molten Fe-C-Cr Alloys
- Secondary Enrichment and Microscopic Intergrowth of Copper Ores from the Akayama Mine, Yamagata Prefecture, Japan
- Studies on the Hydrated Iron Oxides. IV : Iron Oxide Minerals Altered from Magnetite by Weathering
- Studies of Xanthate Complexes by Solubility Method
- A Research on the Treatment of Complex Sulphide Ores. II : On the Degree of Liberation of Ores
- Research on the Activity of Components in Fundamental System in Iron Blast Furnace Slag. I : Measurement of the Activity of Silica in the System of CaO-SiO_2 and CaO-SiO_2-Al_2O_3
- Studies on the Hydrated Iron Oxides. II : Hydrated Ferric Oxide Minerals Altered from Pyrrhotite by Weathering
- Studies on the Flotation of Molybdenite. I : Flotation of Molybdenite Ore Containing Clayey Gangue
- Diffusion of Sulfur in Molten CaO-SiO_2-Al_2O_3 Slag
- On the Equilibrium among Silicon in Molten Iron, Blast Furnace Slag and H_2-H_2O Mixed Gas. III : Investigation of the Equilibrium of the Reaction (SiO_2)CaO-Al_2O_3(Sat.)+2H_2=Si+2H_2O
- On the Reduction Equilibrium Diagram of Iron Oxide
- Reduction Equilibria of Iron Oxides. II : Measurement of the Equilibrium of the Reaction, FeO(1)+CO=Fe(s)+CO_2
- Reaction of Aromatic Alcohols with Phosphorous Pentasulfide
- Absorption of Nitrogen by Molten Iron Alloys. II : Study on Fe-Ni, Fe-Cr and Fe-Mn Alloys
- Elimination of Nitrogen Dissolved in Iron by Addition of Aluminium