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Dive into the research topics where Kazuya Kunitomo is active.

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Featured researches published by Kazuya Kunitomo.


Scientific Reports | 2018

Effect of the Ratio of Magnetite Particle Size to Microwave Penetration Depth on Reduction Reaction Behaviour by H2

Ahmadreza Amini; Ko Ichiro Ohno; Takayuki Maeda; Kazuya Kunitomo

In this study, we investigated reduction of magnetite by H2 during microwave irradiation. This process combines the advantages of microwave irradiation and using H2 as a reducing agent to mitigate CO2 emissions during the ironmaking process. Weight change measurements showed that a reduction of 75% was achieved after treatment under H2 for 60 min. For better understanding of the effective parameters in microwave chemistry, scanning electron microscopy, combined with energy-dispersive X-ray spectroscopy (SEM-EDX), was performed, which demonstrated a greater reduction of large particles (>40 μm) than small particles. This behaviour could be attributed to the higher microwave absorption capability of large particles with a higher ratio of particle size to penetration depth (d/δ). Small particles behave as transparent material and are heated via conduction and/or convection; thus, there is no contribution from the catalytic effect of microwaves to the reduction reaction. Moreover, the reduction of Fe3O4 to Fe0.94O, followed by transformation to Fe, seems to proceed from the surface toward the centre of the particle despite the volumetric microwave heating. This could be due to the higher gas accessibility of iron oxide on the particle surface than in the particle centre.


Isij International | 2009

Effect of Chute Angle on Charging Behavior of Sintered Ore Particles at Bell-less Type Charging System of Blast Furnace by Discrete Element Method

Hiroshi Mio; Satoshi Komatsuki; Masatoshi Akashi; Atsuko Shimosaka; Yoshiyuki Shirakawa; Jusuke Hidaka; Masatomo Kadowaki; Shinroku Matsuzaki; Kazuya Kunitomo


Isij International | 2008

Validation of particle size segregation of sintered ore during flowing through laboratory-scale chute by discrete element method

Hiroshi Mio; Satoshi Komatsuki; Masatoshi Akashi; Atsuko Shimosaka; Yoshiyuki Shirakawa; Jusuke Hidaka; Masatomo Kadowaki; Shinroku Matsuzaki; Kazuya Kunitomo


Minerals Engineering | 2012

Development of particle flow simulator in charging process of blast furnace by discrete element method

Hiroshi Mio; Masatomo Kadowaki; Shinroku Matsuzaki; Kazuya Kunitomo


Isij International | 2011

Evaluation of softening, shrinking and melting reduction behavior of raw materials for blast furnace

Tsunehisa Nishimura; Kenichi Higuchi; Masaaki Naito; Kazuya Kunitomo


Fuel Processing Technology | 2014

Combustibility of biochar injected into the raceway of a blast furnace

Agung Tri Wijayanta; Saiful Alam; Koichi Nakaso; Jun Fukai; Kazuya Kunitomo; Masakata Shimizu


Isij International | 2011

Enhancement of Low-temperature Gasification and Reduction by Using Iron-coke in Laboratory Scale Tests

Kenichi Higuchi; Seiji Nomura; Kazuya Kunitomo; Hirokazu Yokoyama; Masaaki Naito


Isij International | 2010

Analysis of traveling behavior of nut coke particles in bell-type charging process of blast furnace by using discrete element method

Hiroshi Mio; Satoshi Komatsuki; Masatoshi Akashi; Atsuko Shimosaka; Yoshiyuki Shirakawa; Jusuke Hidaka; Masatomo Kadowaki; Hirokazu Yokoyama; Shinroku Matsuzaki; Kazuya Kunitomo


Isij International | 1996

Radial distribution of burden descent velocity near burden surface in blast furnace

Morimasa Ichida; Masayoshi Takao; Kazuya Kunitomo; Sinroku Matsuzaki; Tadashi Deno; Kazuhiro Nishihara


Tetsu To Hagane-journal of The Iron and Steel Institute of Japan | 1987

Development of a Mathematical Model to Estimate Burden Distribution in Bell-less Type Charging for Blast Furnace

Yoshio Okuno; Shinroku Matsuzaki; Kazuya Kunitomo; Mashashi Isoyama; Yoshiaki Kusano

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Masatomo Kadowaki

Kyushu Institute of Technology

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