Shinichiro Ishibashi
Tokyo University of Technology
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Featured researches published by Shinichiro Ishibashi.
International Journal of Mineral Processing | 2001
Toshihiko Sato; Shinichiro Ishibashi; Takayuki Kimizuka; Goro Yamauchi; Ko-ich Oshiman
Abstract The physical and chemical characteristics of synthesized ultrafine magnetic minerals, ferrite particles, and their suppressive effect on the growth of turfgrass mold were studied. These ferrite particles might be applicable to environmental control, for example, to reduce the amount of agricultural chemicals used. Several kinds of ultrafine ferrite particles, such as magnetite Fe 3 O 4 , MnFe 2 O 4 , CaFe 2 O 4 and ZnFe 2 O 4 were prepared by a chemical coprecipitation method in an alkaline aqueous solution with a pH of 13 at 100°C for 2 h. Their crystal structure was that of spinel according to X-ray diffraction measurements and the lattice constants were almost the same as those of bulk ferrites. The average crystallite size calculated using Scherrers formula ranged from 5 to 30 nm, which was in accord with the values obtained by transmission electron microscopic observations. The particles of these ferrites were almost granular in shape and were well crystallized. The specific surface area of these ferrite particles ranged from about 90 to 230 m 2 /g. The values of saturation magnetization of these ferrite particles were found to be less than those of bulk ferrites. The coercive force, I H C , of these ferrite particles was related to the crystalline magnetic anisotropy constant of bulk ferrites. Turfgrass mold, Sclerotinia homoeocarpa , which is of worldwide importance was propagated in an incubator at temperatures ranging from 10°C to 35°C in total darkness. The medium was potato dextrose agar (PDA) and each ultrafine ferrite was uniformly dispersed throughout. The optimum growth temperature of the mold was 25°C. MnFe 2 O 4 , CaFe 2 O 4 , Fe 3 O 4 and ZnFe 2 O 4 suppressed growth at 10°C but did not so clearly at 25°C. CoFe 2 O 4 and Ni 0.5 Zn 0.5 Fe 2 O 4 suppressed growth by more than 40% at both 10°C and 25°C, with CoFe 2 O 4 having strongest suppressive effect of about 70%. The ultrafine ferrite particles with a high Ni 2+ content in the NiZnFe 2 O 4 system, such as Ni 0.8 Zn 0.2 Fe 2 O 4 , dramatically suppressed growth. The pH did not seem to be a factor involved in growth suppression in our experiments. The magnetic field and the influence of the chemically free ions by themselves can not explain the observed growth suppression.
Journal of The Japan Society of Powder and Powder Metallurgy | 1995
Shinichiro Ishibashi; Toshihiko Sato; Koichi Haneda; Masahiro Seki
Archive | 1994
Shinichiro Ishibashi; Sumio Miyagawa; Yoshimori Miyata; Toshihiko Sato; Masahiro Seki; 寿彦 佐藤; 澄男 宮川; 恵守 宮田; 新一郎 石橋; 昌浩 関
Journal of The Japan Society of Powder and Powder Metallurgy | 2000
Takayuki Kimizuka; Shinichiro Ishibashi; Koichi Haneda; Goro Yamauchi; Koichi Ohshiman; Toshihiko Sato
Journal of The Japan Society of Powder and Powder Metallurgy | 1996
Shinichiro Ishibashi; Toshihiko Sato; Masaru Yokoyama; Koichi Haneda; Yoshihiro Kato
Archive | 2009
Shinichiro Ishibashi; Akira Yanagihira; 彬 柳平; 新一郎 石橋
Journal of The Japan Society of Powder and Powder Metallurgy | 2003
Toshihiko Sato; Shinichiro Ishibashi; Yokoyama Masaru; Shunji Okuda; Rituko Kikuno
Journal of The Japan Society of Powder and Powder Metallurgy | 2003
Masaru Yokoyama; Tomohiro Tanaka; Shinichiro Ishibashi; Toshihiko Sato
Journal of The Japan Society of Powder and Powder Metallurgy | 2003
Shinichiro Ishibashi; Toshihiko Sato; Takashi Shimanuki; Shunji Okuda; Rituko Kikuno; Hidehisa Soga; Shozo Takase; Sadami Ishibashi
Journal of The Japan Society of Powder and Powder Metallurgy | 2001
Shinichiro Ishibashi; Toshihiko Sato; Toshimitu Akiba; Masaru Yokoyama; Goro Yamauti