2019 Annual Meeting

2019 Annual Meeting

Mar 20 - Mar 22, 2019Ibaraki University Mito Campus

You can search for presentations in this event.

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Atomic Energy Society of Japan
2019 Annual Meeting

2019 Annual Meeting

Mar 20 - Mar 22, 2019Ibaraki University Mito Campus

You can search for presentations in this event.

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Search Results(701)

[1B09]Reduction and Resource Recycling of High-level Radioactive Wastes through Nuclear TransmutationDevelopment of separation and recovery technologies of long-lived fission products (LLFPs) from the high-level radioactive liquid waste based on electrolysis and solvent extraction (1) Recovery of Pd and Se by electrolytic method

*Yuya Takahashi1, Takashi Omori1, Yu Yamashita1, Masaaki Kaneko1, Kazuhito Asano1, Keisuke Morita2, hideya Suzuki2, Tatsuro Matsumura2(1. Toshiba Energy Systems & Solutions Corporation, 2. Japan Atomic Energy Agency)

[1B10]Reduction and Resource Recycling of High-level Radioactive Wastes through Nuclear Transmutation(2-2)Development of separation and recovery technologies of long-lived fission products (LLFPs) from the high-level radioactive liquid waste based on electrolysis and solvent extraction (2) Recovery of Cs using an adsorption process

*Yu Yamashita1, Eiichi Murata1, Yuya Takahashi1, Takashi Omori1, Masaaki Kaneko1, Kazuhito Asano1, Tatsuro Matsumura2(1. Toshiba Energy Systems & Solutions Corporation, 2. Japan Atomic Energy Agency)

[1B11]Reduction and Resource Recycling of High-level Radioactive Wastes through Nuclear Transmutation(2-3)Development of separation and recovery technologies of long-lived fission products (LLFPs) from the high-level radioactive liquid waste based on electrolysis and solvent extraction (3) Recovery of Zr by solvent extraction

*Keisuke Morita1, Hideya Suzuki1, Tatsuro Matsumura1, Yuya Takahashi2, Takashi Omori2, Masaaki Kaneko2, Kazuhito Asano2(1. JAEA, 2. Toshiba ESS)

[1B12]Reduction and Resource Recycling of High-level Radioactive Wastes through Nuclear Transmutation(2-4)Development of separation and recovery technologies of long-lived fission products (LLFPs) from the high-level radioactive liquid waste based on electrolysis and solvent extraction (4) Study on process concept

*Takashi Omori1, Yuya Takahashi1, Yu Yamashita1, Masaaki Kaneko1, Kazuhito Asano1, Keisuke Morita2, Hideya Suzuki2, Tatsuro Matsumura2(1. Toshiba energy systems & Solutions Corporation, 2. Japan Atomic Energy Agency)

[1B13]Reduction and Resource Recycling of High-level Radioactive Wastes through Nuclear Transmutation(2-5)Application of High Repetition Rate Ti:Sapphire Laser to Even–odd Isotope Selective Ionization

*Hideki Tomita1,2, Volker Sonnenschein1,2, Masaya Ohashi1,2, Tetsu Sonoda2, Hironobu Ishiyama2, Tohru Kobayashi3, Yutaka Nagata3, Takashige Fujiwara3, Katsumi Midorikawa3(1. Nagoya Univ., 2. RIKEN Nishina Center for Accelerator-Based Science, 3. RIKEN Center for Advanced Photonics)

[3B03]Development of cyano-group bridge-type coordination polymer with a high sorption characteristic of Platinum-group elements for high quality and volume reduction of vitrified objects containing high-level radioactive nuclear wastes(3) Sorption properties of hexacyanoferrate for platinum group metals and molybdenum

*Shinta Watanabe1, Toshiki Takeuchi1, Yusuke Inaba2, Ria Mishima2, Miki Harigai2, Masato Nakaya1, kenji Takeshita2, Jun Onoe1(1. Nagoya University, 2. Tokyo Institute of Technology)

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