Search Results1-20 of  30

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  • Maruoka Nobuhiro ID: 9000398273498

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2019 from CiNii)

    Articles in CiNii:3

    • Simulation of Powder Motion with Particle Contact Model Including Intervening Liquid (2018)
    • Thermal Fluid Analysis in Deforming Packed Bed of Ironmaking Blast Furnace (2018)
    • Removal of Phosphorus from High-phosphorus Iron Ore with Preliminary Reduction Treatment and Physical Concentration (2019)
  • MARUOKA NOBUHIRO ID: 9000007026530

    Articles in CiNii:1

    • Thermal Stress Analysis of PCM Encapsulation for Heat Recovery of High Temperature Waste Heat (2003)
  • MARUOKA NOBUHIRO ID: 9000392099559

    Tohoku University (2008 from CiNii)

    Articles in CiNii:1

    • Development of Low-activation Design Method for Reduction of Radioactive Waste below Clearance Level:(55) Refining Technology to Produce Low Activation Steel (2008)
  • MARUOKA Nobuhiro ID: 9000014217090

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2011 from CiNii)

    Articles in CiNii:8

    • Distribution of Cobalt between MgO-Saturated FeO_x-MgO-CaO-SiO_2 Slag and Fe-Cu-Co Molten Alloy (2008)
    • Behavior of Cobalt in Iron- and Steel-making Processes (2007)
    • Analysis of Dephosphorization Reaction Using a Simulation Model of Hot Metal Dephosphorization by Multiphase Slag (2009)
  • MARUOKA Nobuhiro ID: 9000017671616

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2010 from CiNii)

    Articles in CiNii:4

    • Development of PCM for Recovering High Temperature Waste Heat and Utilization for Producing Hydrogen by Reforming Reaction of Methane (2002)
    • Feasibility Study for Recovering Waste Heat in the Steelmaking Industry Using a Chemical Recuperator (2004)
    • Exergy Analysis of Methane Steam Reformer Utilizing Steelmaking Waste Heat (2010)
  • MARUOKA Nobuhiro ID: 9000017671863

    Dept. Chem. Eng., Graduate School of Osaka Prefecture University (2002 from CiNii)

    Articles in CiNii:1

    • Heat Recovery of LDG by Utilizing Latent Heat and Reaction Heat for Producting Methanol (2002)
  • MARUOKA Nobuhiro ID: 9000018187594

    The Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2008 from CiNii)

    Articles in CiNii:1

    • Technical Feasibility Study of Waste Heat Transportation System Using Phase Change Material from Industry to City (2008)
  • MARUOKA Nobuhiro ID: 9000018187926

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2008 from CiNii)

    Articles in CiNii:1

    • Chemical State of Chromium in CaO-SiO_2 Base Oxides Annealed under Different Conditions (2008)
  • MARUOKA Nobuhiro ID: 9000018603802

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2010 from CiNii)

    Articles in CiNii:1

    • Development of PCM Reactor for Methane Steam Reforming (2010)
  • MARUOKA Nobuhiro ID: 9000240538163

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2012 from CiNii)

    Articles in CiNii:1

    • Influence of Bottom Bubbling Rate on Formation of Metal Emulsion in Al-Cu Alloy and Molten Salt System (2012)
  • MARUOKA Nobuhiro ID: 9000261655413

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2014 from CiNii)

    Articles in CiNii:1

    • Behavior Comparison of (Al, Pb, Sn)–Molten Salt Emulsions Involving Gas Bubbling (2014)
  • MARUOKA Nobuhiro ID: 9000398574599

    Articles in CiNii:27

    • Design of waste heat recovery system in a LD converter (2001)
    • Design of waste heat recovery system in a LD converter (2001)
    • Heat Recovery of Waste Heat in Steel Making Industry using Chemical Endothermic Reaction (2002)
  • Maruoka Nobuhiro ID: 9000242079708

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2013 from CiNii)

    Articles in CiNii:1

    • Equilibrium Distribution Ratio of Phosphorus between Solid Iron and Magnesiowustite-saturated Al<sub>2</sub>O<sub>3</sub>–CaO–Fe<sub>t</sub>O–MgO–SiO<sub>2</sub> Slag at 1623 K (2013)
  • Maruoka Nobuhiro ID: 9000243885633

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2013 from CiNii)

    Articles in CiNii:1

    • A Kinetic Model to Predict the Compositions of Metal, Slag and Inclusions during Ladle Refining: Part2. Condition to Control the Inclusion Composition (2013)
  • Maruoka Nobuhiro ID: 9000243885637

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2013 from CiNii)

    Articles in CiNii:1

    • A Kinetic Model to Predict the Compositions of Metal, Slag and Inclusions during Ladle Refining: Part 1. Basic Concept and Application (2013)
  • Maruoka Nobuhiro ID: 9000257848528

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2008 from CiNii)

    Articles in CiNii:1

    • Distribution of Cobalt between MgO-Saturated FeO<I><SUB>x</SUB></I>-MgO-CaO-SiO<SUB>2</SUB> Slag and Fe-Cu-Co Molten Alloy (2008)
  • Maruoka Nobuhiro ID: 9000261023559

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2014 from CiNii)

    Articles in CiNii:1

    • Fundamental Experiment to Extract Phosphorous Selectively from Steelmaking Slag by Leaching (2014)
  • Maruoka Nobuhiro ID: 9000272994328

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2014 from CiNii)

    Articles in CiNii:1

    • Kinetic Analysis of Compositional Changes in Inclusions during Ladle Refining (2014)
  • Maruoka Nobuhiro ID: 9000273022086

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2014 from CiNii)

    Articles in CiNii:1

    • Dissolution Behavior of Mg from MgO into Molten Steel Deoxidized by Al (2014)
  • Maruoka Nobuhiro ID: 9000283137454

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University (2015 from CiNii)

    Articles in CiNii:1

    • Phosphorus Distribution Behavior of Solid Iron Reduced from Molten Al<sub>2</sub>O<sub>3</sub>–CaO–Fe<sub>t</sub>O–MgO–SiO<sub>2</sub> System at 1623 K (2015)
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