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Featured researches published by Hironori Kumagai.


IEEE Transactions on Plasma Science | 2015

In-Water Plasma Generation on a Liquid Wall Using a Compact Device and Dedicated Power Supply

Shin-ichi Imai; Hironori Kumagai; Motoyoshi Iwata; Masaaki Suzuki

Plasmas that are generated on and in liquids are generally the subject of pure research at universities; however, they have considerable practical potential for use in material processing, water purification, and sterilization. Their chief drawback is that they require a large device to generate in-water plasmas and a bulky power supply. If the device size and the volume of the power supply could be reduced, it might be possible to realize water sterilization in home electric appliances, such as washing machines. We have developed a compact device with a unique structure and a dedicated power supply that provides high voltage at high frequencies for generating in-water plasmas. Our dedicated power supply occupies one-sixth of the volume of comparable types. The device can generate in-water plasmas in an air stream using ambient air introduced from outside using a pump. Hydroxyl (OH) radicals in in-water plasmas were detected by optical emission spectroscopy, and their spatial distribution was observed in the air steam using an intensified charge-coupled device camera and a bandpass filter of 309 nm. Hydroxyl radicals in water were detected as 5, 5-dimethyl-1-pyrroline-N-oxide (DMPO)-OH signals using electron spin resonance spin trapping, both before adding DMPO to water and after doping the plasma-treated water with DMPO. It was found that OH radicals were generated in in-water plasmas and persisted in plasma-treated water. Using the detection of DMPO-OH signals employing the postdoped method, OH radicals were measured at 0.86 nmol/cc; they remained in the water for a long time after turning OFF the power supply. Finally, we demonstrated the decomposition rate of indigo carmine using our device and power supply to be about 13-fold that of the comparable device, despite its consuming about one-seventh of the input power. Hydroxyl radicals have high oxidation potential, so in-water plasmas as a source of radicals may be applicable to water sterilization in home electric appliances.


Archive | 2005

MULTI-EYE IMAGING APPARATUS

Hironori Kumagai; Taku Hirasawa


Archive | 2009

ENERGY STORAGE DEVICE, METHOD FOR MANUFACTURING THE SAME, AND APPARATUS INCLUDING THE SAME

Takuma Asari; Hironori Kumagai; Shigeo Hayashi; Yasuhiro Hashimoto; Takahiro Kawashima


Archive | 2011

CARBON NANOTUBE FORMING SUBSTRATE, CARBON NANOTUBE COMPLEX, ENERGY DEVICE, METHOD FOR MANUFACTURING ENERGY DEVICE, AND APPARATUS INCLUDING ENERGY DEVICE

Takuma Asari; Hironori Kumagai; Shigeo Hayashi; Yasuhiro Hashimoto; Naoki Yoshikawa; Takashi Okada


Archive | 2008

Energy device, method for manufacturing the same, and apparatus including the same

Takuma Asari; Toshiya Yokogawa; Shigeo Hayashi; Yasuhiro Hashimoto; Hironori Kumagai


Archive | 2005

Actuator, fine motion mechanism including the actuator, and camera module including the fine motion mechanism

Taku Hirasawa; Hironori Kumagai


Physica Status Solidi-rapid Research Letters | 2008

Highly selective growth of vertically aligned double‐walled carbon nanotubes by a controlled heating method and their electric double‐layer capacitor properties

Takayuki Iwasaki; Tasuku Maki; Daisuke Yokoyama; Hironori Kumagai; Yasuhiro Hashimoto; Takuma Asari; Hiroshi Kawarada


Archive | 2009

Energy storage device, method for manufacturing same, and apparatus equipped with same

Takuma Asari; 浅利琢磨; Hironori Kumagai; 熊谷裕典; Shigeo Hayashi; 林茂生; Yasuhiro Hashimoto; 橋本泰宏


Archive | 2008

Energy device, method for manufacturing the energy device and apparatus having the energy device mounted thereon

Takuma Asari; Toshiya Yokogawa; Shigeo Hayashi; Yasuhiro Hashimoto; Hironori Kumagai


Archive | 2008

NANOSTRUCTURE AND METHOD FOR MANUFACTURING THE SAME

Hironori Kumagai; Yasuhiro Hashimoto; Shigeo Hayashi; Takuma Asari; Toshiya Yokogawa

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