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Careers

設立者の略歴は以下の通りである。

略歴

平成21年3月    徳島大学大学院博士後期課程工学研究科 修了 博士(工学)

平成21年4月    千葉工業大学工学部特別研究員 入職

平成26年9月    千葉工業大学工学部特別研究員 退職

平成26年10月  日本電子専門学校電気工学科講師

平成28年12月  ヘルメス株式会社 設立 代表取締役就任(現任)

平成30年4月 花沢学園 明聖高等学校非常勤講師(プログラミング)

賞罰

平成25年8月 論文奨励賞受賞(オゾン協会 第22回年次研究講演会)

設立者の主な研究業績を以下に記す。

・学術雑誌(査読付)

  1. 布川史章,田口正樹,鈴木進,伊藤晴雄:「パルスパワーで駆動した誘電体バリア放電型オゾナイザのオゾン生成特性」,電気学会論文誌A,Vol.133,No.9,pp.471-477 (2013).

  2. 布川史章,六角虎太郎,鈴木進,伊藤晴雄:「水面上沿面パルス放電によるフミン酸塩溶液の吸光度,TOC,pHの変化」,電気学会論文誌A,Vol.133,No.2,pp.44-50 (2013).

  3. 六角虎太郎,布川史章,鈴木進,伊藤晴雄:「オゾン,紫外線によるフミン酸塩溶液の脱色」,電気学会論文誌A,Vol.133,No.1,pp.13-19 (2013).

  4. 布川史章,六角虎太郎,鈴木進,矢沢勇樹,伊藤晴雄:「気泡内パルス放電によるフミン酸塩の吸光度の減少」,電気学会論文誌A,Vol.132,No.8,pp.664-669 (2012).

  5. Kotaro Rokkaku,Fumiaki Fukawa, Yuuki Yazawa, Susumu Suzuki and Haruo Itoh, “Decomposition of Humate Solution by Pulsed Power Discharge in Nitrogen Bubbles”, Frontier of Applied Plasma Technology by Institute of Applied Plasma Science,Vol.5, No.1, pp.22-26 (2012).

  6. Fumiaki Fukawa, Kotaro Rokkaku, Kenji Teranishi, Naoyuki Shimomura, Susumu Suzuki and Haruo Itoh, “Pulsed Discharge in Helium and Nitrogen Bubbles in Humate Solution“, IEEE Transactions on Plasma Science, Vol. 39, No. 11, pp. 2662-2663 (2011).

  7. Naoyuki Shimomura, Keigo Nakano, Hiroto Nakajima, Tatsuya Kageyama,Kenji Teranishi, Fumiaki Fukawa and Hidenori Akiyama, “Nanosecond Pulsed Power Application to Nitrogen Oxides Treatment with Coaxial Reactors“, IEEE Transactions on Dielectrics and Electrical Insulation, Vol. 18, No. 4, pp. 1274-1280 (2011).

  8. 布川史章,下村直行,矢野大輝,寺西研二,秋山秀典:「ナノ秒パルスパワー電源装置の開発」,電気設備学会誌,Vol.29,No.11,pp.956-962 (2009).

  9. Taiki Yano, Naoyuki Shimomura, Ichiro Uchiyama,Fumiaki Fukawa, Kenji Teranishi and Hidenori Akiyama, “Decolorization of Indigo Carmine Solution Using Nanosecond Pulsed Power“, pp.1081-1087 (2009)

  10. Fumiaki Fukawa, Naoyuki Shimomura, Taiki Yano, Suguru Yamanaka, Kenji Teranishi and Hidenori Akiyama, “Application of Nanosecond Pulsed Power to Ozone Production by Streamer Corona”, IEEE Transactions on Plasma Science, Vol.36, No.5, pp.2592-2597 (2008).

 

・学術レター(査読付)

 

  1. 布川史章,鈴木進,伊藤晴雄:「パルスパワーにより駆動されたバリア放電型リアクタのオゾン生成特性」,電気学会論文誌A,Vol.132,No.12,pp.1168-1169 (2012).

  2. 六角虎太郎,布川史章,鈴木進,伊藤晴雄:「紫外線によるフミン酸塩溶液の脱色」,電気学会論文誌A,Vol.132,No.9,pp.805-806 (2012).

 

・国際会議(査読付)

 

  1. Haruo Itoh, Fumiaki Fukawa, Susumu Suzuki,"Decomposition of humate by pulsed discharge in argon bubbles",HAKONE XIV 2014, P2-06-13(5pp)(2014)

  2. Fumiaki Fukawa, Yuuya Satoh, Susumu Suzuki and Haruo Itoh, “Influence of electrode temperature in dielectric barrier discharge type ozonizer driven by pulsed discharge”, 8th International Conference on Reactive Plasmas, 31st Symposium on Plasma Processing, 4P-PM-S11-P39(2pp) (2014).

  3. Kotaro Rokkaku, Fumiaki Fukawa, Yuuki Yazawa, Susumu Suzuki and Haruo Itoh, “Decomposition of humate solution by pulsed power discharge in bubble”, Proceedings of the 8th International Symposium on Applied Plasma Science, pp.129-130 (2011).

 

・国際会議(査読無)

 

  1. Fumiaki Fukawa, Kotaro Rokkaku, Yasuhito Sakai, Yuuki Yazawa, Kenji Teranishi, Naoyuki Shimomura, Susumu Suzuki and Haruo Itoh, “The decomposition of humate solution by pulsed discharge in the bubble”, Proceedings of the 18th IEEE International Pulsed Power Conference, pp.1304-1308 (2011).

  2. Fumiaki Fukawa, Kotaro Rokkaku, Yuka Aizawa, Yuuki Yazawa, Kenji Teranishi, Naoyuki Shimomura, Susumu Suzuki and Haruo Itoh, “Phenomenal Analysis of Pulse Discharge on the Surface of Micro-bubble Solution” , 2009 Korea-Japan Joint Symposium on ED & HVE , pp.116-119 (2009).

  3. Fumiaki Fukawa, Naoyuki Shimomura, Suguru Yamanaka, Taiki Yano, Kenji Teranishi and Haruo Itoh,” Consideration on Configuration of Parallel Reactors for Ozone Production Using Nanosecond Pulsed Power Discharge” , 19th World Congress & Exhibition, International Ozone Association, p.12-5(5pp) (2009).

  4. Fumiaki Fukawa, Naoyuki Shimomura, Suguru Yamanaka, Taiki Yano, Yuki Yokote,Kenji Teranishi, Hidenori Akiyama and Haruo Itoh , “Consideration of Parallel and Serial Coaxial Reactors for NOx Treatment by Nanosecond Pulsed Power Discharge”, Proceedings of the 17th IEEE International Pulsed Power Conference, pp.1041-1045 (2009).

  5. Taiki Yano, Ichiro Uchiyama, Fumiaki Fukawa, Kenji Teranishi and Naoyuki Shimomura,” Water Treatment by Atmospheric Discharge Produced with Nanosecond Pulsed Power” , Conference Record of the 28th IEEE International Power Modulator Symposium and 2008 High-Voltage Workshop, pp.80-83 (2008).

  6. Naoyuki Shimomura, Fumiaki Fukawa, Suguru Yamanaka, Taiki Yano, Yuki Yokote, Kenji Teranishi and Hidenori Akiyama” , Effect of Reactor Configuration on NOx Treatment by Nanosecond Pulsed Power” , Conference Record of the 28th IEEE International Power Modulator Symposium and 2008 High-Voltage Workshop, pp.342-345 (2008).

  7. Naoyuki Shimomura, Fumiaki Fukawa, Taiki Yano, Suguru Yamanaka, Kenji Teranishi and Hidenori Akiyama, “Investigation of Coaxial Chemical Reactor Configuration for Nanosecond Pulsed Power Discharge” , Proceedings of the 16th IEEE International Pulsed Power Conference, pp.736-739 (2007).

  8. Fumiaki Fukawa, Shingo Ezawa, Yosuke Satoh and Naoyuki Shimomura, “Consideration of Reactor Configuration of High Yield Ozonizer by Nanosecond Pulsed Power Discharge", Conference Record of the 27th IEEE International Power Modulator Symposium and 2006 High-Voltage Workshop, pp.325-328 (2006).

  9. Naouyki Shimomura, Fumiaki Fukawa and Hidenori Akiyama, “Treatment of Nitrogen Oxides Using Nanosecond Width Pulsed Power” , Conference Record of the 27th IEEE International Power Modulator Symposium and 2006 High-Voltage Workshop, pp.321-324 (2006).

  10. Fumiaki Fukawa, Hiroyuki Togo and Naoyuki Shimomura, “Consideration of parallel reactors for ozone production using nanosecond pulsed power discharge”, Conference Record of the 26th IEEE International Power Modulator Symposium and 2004 High-Voltage Workshop, pp.387-390 (2004).

  11. Naoyuki Shimomura, Hiroyuki Togo, Fumiaki Fukawa and Hidenori Akiyama, “Consideration of discharge reactor to exploit nanosecond pulsed power”, Conference Record of the 26th IEEE International Power Modulator Symposium and 2004 High-Voltage Workshop, pp.391-394 (2004).

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