Hiroshi Tanaka

ORCID: 0000-0002-3856-8588
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About
Contact & Profiles
Research Areas
  • Solar-Powered Water Purification Methods
  • Solar Thermal and Photovoltaic Systems
  • Membrane Separation Technologies
  • Heat Transfer and Boiling Studies
  • Metallurgy and Material Forming
  • Solar Radiation and Photovoltaics
  • Water Quality Monitoring Technologies
  • Carbon Dioxide Capture Technologies
  • Metallurgical Processes and Thermodynamics
  • Heat Transfer and Optimization
  • Spacecraft Design and Technology
  • Satellite Communication Systems
  • Metal Forming Simulation Techniques
  • Extraction and Separation Processes
  • Molten salt chemistry and electrochemical processes
  • Water-Energy-Food Nexus Studies
  • Antenna Design and Analysis
  • Antenna Design and Optimization
  • CO2 Sequestration and Geologic Interactions
  • Advanced Antenna and Metasurface Technologies
  • Advanced Fiber Optic Sensors
  • Meat and Animal Product Quality
  • Nanofluid Flow and Heat Transfer
  • Wireless Communication Networks Research
  • Membrane Separation and Gas Transport

National Institute of Technology, Kurume College
2011-2024

Komori (Japan)
2024

Mitsubishi Heavy Industries (Germany)
1998-2019

Utsunomiya University
2017-2018

Tsukuba University of Technology
2018

Mitsubishi Heavy Industries (Japan)
2011-2017

National Institute of Technology, Tsuruoka College
2015

Mito Saiseikai General Hospital
2015

Asahikawa Medical University
2013

Tokai University
1976-2010

Kohjiro Ueki Takayoshi Sasako Yukiko Okazaki Masayuki Kato Sumie Okahata and 95 more Hisayuki Katsuyama Mikiko Haraguchi Ai Morita Ken Ohashi Kazuo Hara Atsushi Morise Kazuo Izumi Naoki Ishizuka Yasuo Ohashi Mitsuhiko Noda Takashi Kadowaki Masakazu Haneda Yasunori Iwashima Toshihiro Suda Naoki Tamasawa Makoto Daimon Jo Satoh Noriko Takebe Yasushi Ishigaki Tsuyoshi Watanabe Hiroaki Satoh Kikuo Kasai Yoshimasa Aso Shun Ishibashi Shigehiro Katayama San‐e Ishikawa Masafumi Kakei Kazuyuki Namai Naotake Hashimoto Yoshifumi Suzuki Shunichiro Onishi Koutaro Yokote Masafumi Matsuda Masahiro Masuzawa Yoichi Hayashi Satoshi Saitô Norikazu Ogihara Hisamitsu Ishihara Naoko Tajima Kazunori Utsunomiya Akira Shimada Hiroshi Itoh Ryuzo Kawamori Hirotaka Watada Michio Hayashi Yasumichi Mori Teruo Shiba Akihiro Isogawa Hiroshi Sakura Masato Odawara Kazuyuki Tobe Kazuhisa Tsukamoto Toshimasa Yamauchi Tamio Teramoto Yukio Hirata Isao Uchimura Yoshihiro Ogawa Gen Yoshino Takahisa Hirose Hiroshi Kajio Yoshihito Atsumi Akira Shimada Yoichi Oikawa Atsushi Araki Akio Ueki Atsushi Ohno Masafumi Kitaoka Yoshikuni Fujita Tatsumi Moriya Taiki Tojo Masayoshi Shichiri Daisuke Suzuki Masao Toyoda Kumiko Hamano Rieko Komi Yasuo Terauchi Nobuaki Kuzuya Masayo Yamada Toshinari Takamura Mitsuo Imura Hiroshi Tanaka Masayuki Hayashi Yasuhisa Kato Mitsuyasu Itoh Atsushi Suzuki Mikihiro Nakayama Takahisa Sano Eitaro Nakashima Yasuhiro Sumida Yutaka Yano Tsuyoshi Tanaka Kazuya Murata Atsunori Kashiwagi Hiroshi Maegawa Shigeo Kono

10.1016/s2213-8587(17)30327-3 article EN publisher-specific-oa The Lancet Diabetes & Endocrinology 2017-10-24

Electrorefining of uranium was studied for developing pyrometallurgical reprocessing technology metal fuel cycle. After concentration dependence polarization curve measured, electrodeposited either on solid iron cathode or in liquid cadmium cathode. Design and operational conditions the were improved obtaining much greater quantity deposit, resulting recovery 732g dendritic a single cathode, 232g 2,344g The behaviors electro-codeposition rare earth elements with observed found to follow...

10.1080/18811248.1997.9733678 article EN Journal of Nuclear Science and Technology 1997-04-01

Electrorefining of uranium was studied for developing pyrometallurgical reprocessing technology metal fuel cycle. After concentration dependence polarization curve measured, electrodeposited either on solid iron cathode or in liquid cadmium cathode. Design and operational conditions the were improved obtaining much greater quantity deposit, resulting recovery 732g dendritic a single cathode, 232g 2,344g The behaviors electro-codeposition rare earth elements with observed found to follow...

10.3327/jnst.34.384 article EN Journal of Nuclear Science and Technology 1997-01-01

As a countermeasure for deterioration of raw materials' quality, improvement sinter productivity is needed. To increase productivity, steam heating granulation technologies have been developed. Heated granules reduce water condensation at wetting zone sintering bed. It improves permeability bed and productivity. At first, properties heat conductive efficiency were investigated laboratory injection apparatus. result the test, it was confirmed that moisture material suppressed by injection,...

10.2355/tetsutohagane.tetsu-2024-128 article EN cc-by-nc-nd Tetsu-to-Hagane 2025-01-01
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