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Featured researches published by Ryutaro Wada.


Scientific Reports | 2018

A Highly Efficient Adsorbent Cu-Perusian Blue@Nanodiamond for Cesium in Diluted Artificial Seawater and Soil-Treated Wastewater

Kazuko Matsumoto; Hideyuki Yamato; Seishiro Kakimoto; Takeshi Yamashita; Ryutaro Wada; Yoshiaki Tanaka; Masakazu Akita; Tadamasa Fujimura

A new adsorbent Cu-Perussian blue@Nanodiamond (Cu-PB@DND) for Cs+ removal was prepared and characterized with IR, SEM, X-ray diffraction, particle size analysis, and zeta-potential. The adsorbent consists of a core of aggregated detonation nanodiamond (DND) particles with the surface treated with Cu-PB. Cesium adsorption was studied in two modes; a co-precipitation mode and a batch mode. In the co-precipitation mode, DND, CuCl2, and K4[Fe(CN)6] were added sequentially to a Cs+ solution in diluted artificial seawater. In the batch mode, adsorbent Cu-PB@DND was dispersed into a Cs+ solution with stirring. The distribution coefficient (Kd) of the co-precipitation mode was 8.8 × 107 (mL/g) at Cs+ 6.6 ppm in 0.07% seawater. The Kd value of the batch mode was 1.3 × 106 (mL/g). Precipitation of Cs+-incorporated particles was complete, and post filtration was not necessary. Excess copper and iron ions were completely removed and were not detected in the supernatant. The adsorption data for Cu-PB@DND were analyzed by assuming Langmuir isotherm and a good fit was obtained with a maximum adsorption capacity Qmax of 759 mg/g. The co-precipitation method was also applied to soil-treated wastewater.


Archive | 2001

Burying facility, method for constructing the same and molding used for it

Junpei Nakayama; Tsutomu Nishimura; Masahisa Sawada; Yasunori Takeuchi; Ryutaro Wada; 準平 中山; 隆太郎 和田; 昌久 澤田; 靖典 竹内; 務 西村


Zairyo-to-kankyo | 1999

Hydrogen Absorption of Titanium for Nuclear Waste Container in Reducing Condition

Haruo Tomari; Tsuyoshi Masugata; Kazutoshi Shimogori; Tsutomu Nishimura; Ryutaro Wada; Akira Honda; Naoki Taniguchi


Archive | 2013

METHOD FOR MANUFACTURING BORON-CONTAINING ALUMINUM PLATE MATERIAL

Hitoshi Ishida; Ryutaro Wada; Yukinobu Natsume


Zairyo-to-kankyo | 2007

Corrosion Behavior of Carbon Steel in Alkaline and Reducing Simulated Groundwater

Jun Katoh; Tomoaki Nakanishi; Shinji Sakashita; Takenori Nakayama; Osamu Katoh; Ryutaro Wada; Tsuyoshi Tateishi; Kazuo Fujiwara; Yoshihiro Miyauchi; Yumiko Kumano; Mitsuru Sanbongi


Archive | 1998

Treated waste, method for making the same and apparatus for making the same

Ryutaro Wada; Tsutomu Nishimura; Tsuyoshi Imakita; Yoshitaka Kurimoto; Yasushi Sugimura


Archive | 1997

Underground-environment simulator

Ryutaro Wada; Makoto Asao; Tsutomu Nishimura; Toshio Iwata; Kenji Yamaguchi; Kiyoshi Tsune


Archive | 1997

Simulator für unterirdische Umgebungen

Ryutaro Wada; Makoto Asao; Tsutomu Nishimura; Toshio Iwata; Kenji Yamaguchi; Kiyoshi Tsune


Archive | 2013

Boron-containing aluminum material, and method for producing same

Takashi Choda; Yukihide Honda; Tsuyoshi Suzuki; Hitoshi Ishida; Ryutaro Wada; Yoshiki Takebayashi; Tatsuhiko Kusamichi; Fumiaki Kudo


Archive | 2012

RADIOACTIVE SUBSTANCE PROCESSING SYSTEM AND PROCESSING METHOD

Shusaku Furuwatari; 周作 古渡; Ryutaro Wada; 隆太郎 和田; Takashi Nishio; 隆志 西尾; Yuichi Matsuda; 雄市 松田; Toshio Iwata; 俊雄 岩田

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Hiroshi Fujihara

Tokyo Electric Power Company

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