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ISIJ International, ISSN 0915-1559, 2018, Volume 58, Issue 6, pp. 1028 - 1033
The mechanical properties of iron ore pellets are of central importance to guarantee good productivity in direct reduction plants. Besides the generation of... 
reduction | iron ore pellets | degradation | Degradation | Iron ore pellets | Reduction | SINTER | OXIDE | DIRECT REDUCTION | METALLURGY & METALLURGICAL ENGINEERING | SHAFT FURNACE | GAS | DISINTEGRATION BEHAVIOR
Journal Article
Metallurgical and Materials Transactions B, ISSN 1073-5615, 12/2019, Volume 50, Issue 6, pp. 2508 - 2516
Journal Article
Energy, ISSN 0360-5442, 12/2017, Volume 141, pp. 472 - 482
To investigate the possibility of using biomass reductants instead of fossil fuels in the formation of direct reduced iron (DRI) in rotary hearth furnace... 
Direct reduced iron | Metallization | Biomass | Shrinkage | Reductants | Strength | RESIDUAL VOLATILE MATTER | PART I | ORE REDUCTION | ENERGY & FUELS | COAL-CHAR | CO2 EMISSIONS | STEELMAKING | COMPOSITE PELLETS | THERMODYNAMICS | IRONMAKING PROCESS | KINETICS | STEEL-INDUSTRY | Rheumatoid factor | Yuan (China) | Usage | Analysis | Green technology | Fossil fuels | Energy minerals | Production processes
Journal Article
ISIJ International, ISSN 0915-1559, 2015, Volume 55, Issue 7, pp. 1347 - 1352
Waste copper slag is a refractory material with high iron content, but it is difficult to recovery iron minerals from the slag because the iron mainly occurs... 
directly reduced iron | compound additive | coal-based direct reduction | weathering resistant steel | waste copper slag | Weathering resistant steel | Waste copper slag | Directly reduced iron | Coal-based direct reduction | Compound additive | RECOVERY | PHOSPHORUS | ORE | REDUCTION | FLOTATION | CEMENT | METALLURGY & METALLURGICAL ENGINEERING
Journal Article
Steel in Translation, ISSN 0967-0912, 7/2019, Volume 49, Issue 7, pp. 478 - 480
According to research in the electrosmelting shop at AO EVRAZ ZSMK, the partial (up to 55%) replacement of chunk iron by hot-briquetted iron in rail-steel... 
arc furnaces | rail steel | Materials Science | furnace performance | Materials Science, general | directly reduced iron (DRI) | Steel production | Coke fired furnaces | Direct reduced iron | Iron and steel making | Power consumption | Steel industry | Rail steels | Electric arc furnaces | Coke oven gas | Structural steels | Hot briquetted iron | Natural gas
Journal Article
Energy, ISSN 0360-5442, 2011, Volume 36, Issue 10, pp. 6146 - 6155
A model of the EAF energy efficiency was developed based on a closed mass and energy balance of the EAF melting process. This model was applied to industrial... 
Process model | Energy balance | Direct reduced iron | Electric arc furnaces | CARBON-DIOXIDE EMISSIONS | THERMODYNAMICS | ENERGY & FUELS | Energy efficiency | Energy use | Industrial equipment | Iron and steel industry | Charging | Process parameters | Direct power generation | EAF | Energy conversion efficiency | Steel scrap
Journal Article
Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science, ISSN 1073-5615, 12/2018, Volume 49, Issue 6, pp. 3381 - 3389
Journal Article
Iron & Steel Technology, ISSN 1547-0423, 01/2017, Volume 14, Issue 1
In this study, direct-reduced iron (DRI) pellets with different carbon contents were produced by gaseous reduction and carburizing. The DRI pellets were then... 
Direct reduced iron | Iron and steel making | Monitors | Gas analysis | Steels | Carbon | Melts | Pellets
Journal Article
Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science, ISSN 1073-5615, 06/2017, Volume 48, Issue 3, pp. 1486 - 1493
The development of manufacturing technology of Sn-bearing stainless steel inspires a novel concept for using Sn-bearing complex iron ore via reduction with... 
Direct reduced iron | Carbon dioxide | Tin | Carbon monoxide | Steels | Stainless steels | Reduction (metal working) | Pellets
Journal Article
Process Safety and Environmental Protection, ISSN 0957-5820, 07/2016, Volume 102, pp. 410 - 420
Approximately 25 Mt/year of sludge and dust are obtained from the treatment of the exhaust gases produced during the manufacturing of cast iron and steel from... 
Self-reducing briquettes | Direct reduced iron (DRI) | Iron sponge | BF-sludge | BOF-dusts | Recycling | ZINC RECOVERY | PART I | MECHANISM | DECOMPOSITION | ENGINEERING, CHEMICAL | DUST | REMOVAL | STEEL | ENGINEERING, ENVIRONMENTAL | BLAST-FURNACE SLUDGE | CALCIUM FERRITE | BRIQUETTES | Usage | Powders | Furnaces | Sludge | Analysis
Journal Article
by Man, Y and Yu, XM and Zeng, Y
ACTA MICROSCOPICA, ISSN 0798-4545, 2019, Volume 28, Issue 4, pp. 892 - 902
With the continuous development of the steel metallurgy industry, direct reduction technology and direct reduced iron production have developed rapidly.... 
Laser Scanning Confocal Microscope | TYROSINE KINASE INHIBITORS | APOPTOSIS | Variation Law | Composite Binder Pellet | Direct Reduction | Reduction Temperature | MICROSCOPY | CHRONIC MYELOID-LEUKEMIA
Journal Article
ISIJ International, ISSN 0915-1559, 2015, Volume 55, Issue 2, pp. 419 - 427
During conventional iron making, the temperature exclusively determines the oxygen potential in a blast furnace hearth because of carbon saturation.... 
Direct steelmaking | Reduction kinetics | Phosphorus distribution ratio | Active carbon recycling energy system | phosphorus distribution ratio | direct steelmaking | CARBON-RECYCLING IRON | REDUCTION | NA2O | Active Carbon Recycling Energy System | METALLURGY & METALLURGICAL ENGINEERING | SLAG | reduction kinetics
Journal Article
steel research international, ISSN 1611-3683, 05/2015, Volume 86, Issue 5, pp. 456 - 465
Journal Article
ISIJ International, ISSN 0915-1559, 2015, Volume 55, Issue 2, pp. 419 - 427
During conventional iron making, the temperature exclusively determines the oxygen potential in a blast furnace hearth because of carbon saturation.... 
phosphorus distribution ratio | direct steelmaking | Active Carbon Recycling Energy System | reduction kinetics
Journal Article
Scientific Reports, ISSN 2045-2322, 03/2015, Volume 5, Issue 1, p. 9298
Iron oxides/reduced graphene oxide composites were synthesized by facile thermochemical reactions of graphite oxide and FeSO4 center dot 7H(2)O. By adjusting... 
NANOPARTICLES | DISPERSIONS | NANOCOMPOSITES | MICROWAVE-ABSORPTION | ABSORBER | MAGHEMITE | HEMATITE | MULTIDISCIPLINARY SCIENCES | DIRECT PHASE-TRANSFORMATION | BAND | THERMAL-DECOMPOSITION | Temperature effects | Graphite | Oxides | Iron | Iron oxides | Phase transitions | Phase transition
Journal Article
steel research international, ISSN 1611-3683, 11/2015, Volume 86, Issue 11, pp. 1361 - 1369
Journal Article
by Luo Siyi and Fu Jie
Journal of Renewable and Sustainable Energy, 07/2015, Volume 7, Issue 4
Biomass tar can be used as reducing agent for reduction of iron oxide, and simultaneously iron is a good catalyst for tar cracking. Thus, an iron ore reduction... 
Iron ores | Pyrolysis | Equivalence ratio | Cracking (chemical engineering) | Steel industry | Metallizing | Reducing agents | Biomass | Direct reduced iron | Iron compounds | Heating | Catalysis | Iron oxides
Journal Article
Vibrational Spectroscopy, ISSN 0924-2031, 07/2012, Volume 61, pp. 25 - 29
In this study, the applicability of FT-IR spectroscopy to determination of direct reduction degree of Attepe iron ore was examined. For that purpose, infrared... 
Direct reduction | Sponge iron | FT-IR spectroscopy | Stack gas analysis | STORAGE | CHEMISTRY, ANALYTICAL | CONTACT MASS | BEHAVIOR | CO2 | CHEMISTRY, PHYSICAL | RESC PROCESS | SPECTROSCOPY | HYDROGEN-PRODUCTION | CYCLE | Volumetric analysis | Infrared spectroscopy | Reduction | Direct reduced iron | Stacks | Iron | Monitoring
Journal Article
Mineral Processing and Extractive Metallurgy Review, ISSN 0882-7508, 01/2007, Volume 28, Issue 1, pp. 59 - 116
The blast furnace process is still the predominant method for primary iron production. However, the disadvantages inherent to the process led to the... 
natural gas | gasifiers | gas reforming | partial oxidation | coal | catalytic | iron production | direct reduction | Gas reforming | Coal | Gasifiers | Catalytic | Direct reduction | Iron production | Partial oxidation | Natural gas | CARBON | OXIDE | ORE PELLETS | METALLURGY & METALLURGICAL ENGINEERING | DIRECT REDUCTION PROCESSES | SWELLING BEHAVIOR | STEEL | HEMATITE | KINETICS | MINING & MINERAL PROCESSING
Journal Article
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