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Dive into the research topics where Toshiya Komatsu is active.

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Featured researches published by Toshiya Komatsu.


Water Research | 2008

Multiple evaluations of the removal of pollutants in road runoff by soil infiltration.

Michio Murakami; Nobuyuki Sato; Aya Anegawa; Norihide Nakada; Arata Harada; Toshiya Komatsu; Hideshige Takada; Hiroaki Tanaka; Yoshiro Ono; Hiroaki Furumai

Groundwater replenishment by infiltration of road runoff is expected to be a promising option for ensuring a sustainable urban water cycle. In this study, we performed a soil infiltration column test using artificial road runoff equivalent to approximately 11-12 years of rainfall to evaluate the removal of pollutants by using various chemical analyses and bioassay tests. These results indicated that soil infiltration treatment works effectively to remove most of the pollutants such as organic matter (chemical oxygen demand (CODMn) and dissolved organic carbon (DOC)), P species, polycyclic aromatic hydrocarbons (PAHs), numerous heavy metals and oestrogenic activities. Bioassay tests, including algal growth inhibition test, Microtox and mutagen formation potential (MFP) test, also revealed effective removal of toxicities by the soils. However, limited amounts of NO3, Mn, Ni, alkaline earth metals, perfluorooctane sulphonate (PFOS) and perfluorooctane sulphonamide (FOSA) were removed by the soils and they possibly reach the groundwater and cause contamination.


Journal of The Japan Society of Waste Management Experts | 2005

Effect of Pyrolysis Temperature on Amounts and Calorific Values of Gasification and Melting Process Residues as Estimated with a Pyrolysis Reaction Model

Shuji Himeno; Hirotsugu Numata; Toshiya Komatsu; Shoichi Fujita

現在, 一般廃棄物のガス化溶融処理の普及が進んでいるが, さらなるエネルギー回収や資源の有効利用, 最適な運転条件の検討が必要となっている。著者らはこれまで, 一般廃棄物を構成する代表的な化学物質を用いた熱分解モデルを構築した。本報では新たに構築した定温熱分解モデルを用いて, 一般廃棄物の組成による発熱量および熱分解条件による熱分解後の残渣発生量や残渣発熱量の違いを検討した。その結果, 代表物質の各発熱量とモデルにより求められた組成割合から一般廃棄物の発熱量が推算可能であった。さらに, 管状電気炉を用いて熱分解温度を変えた実験で得られた熱分解残渣量とその発熱量について熱分解モデルによる推算値と比較検討を行った結果, 本モデルで熱分解残渣量, 残渣発熱量の推算が可能であり, 熱分解工程の効率的な運転条件の確立に有効であると考えられた。


Adsorption-journal of The International Adsorption Society | 2005

Development of a New Effective Biogas Adsorption Storage Technology

Shuji Himeno; Toshiya Komatsu; Shoichi Fujita


Water Science and Technology | 1997

Reductive transformation of tetrachloroethylene to ethylene and ethane by an anaerobic filter

Toshiya Komatsu; Jun Shinmyo; Kiyoshi Momonoi


Water Science and Technology | 1994

Biotransformation of cis-1,2-dichloroethylene to ethylene and ethane under anaerobic conditions

Toshiya Komatsu; Kiyoshi Momonoi; Tomonori Matsuo; Keisuke Hanaki


Journal of The Japan Society of Waste Management Experts | 2002

Evaluation of Pyrolysis Conditions in Gasification Melting System for Municipal Solid Waste

Kazutada Miyakoshi; Takashi Miura; Toshiya Komatsu; Shuji Himeno; Kiyoshi Momonoi


Journal of Japan Society on Water Environment | 1996

Start-up and Treatment Characteristics of an Anaerobic Filter for the Degradation of Tetrachloroethylene.

Toshiya Komatsu; Seiichi Shimazaki; Kiyoshi Momonoi; Hideki Harada


Journal of Japan Society on Water Environment | 2007

Distribution of Mutagen Formation Potential in Nationwide River Waters in Japan and Relationship with General Water Quality or River Basin Characteristics

Toshiya Komatsu; Yoshiaki Manabe; Shuji Himeno; Arata Harada; Michio Murakami; Hiroaki Furumai


Journal of Environmental Chemistry | 2004

Safety Evaluation of River Water and Tap Water in the Shinano River Downstream Region by Ames Mutagenicity Assay

Toshiya Komatsu; Miki Sanda; Shuji Himeno; Shoichi Fujita


Journal of The Japan Society of Waste Management Experts | 2002

Effect of the Main Composition of Solid Waste Incineration Ash on Melting Characteristics and Qualities of Melted Slag

Atsushi Yoshino; Kiyoshi Momonoi; Toshiya Komatsu

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Shuji Himeno

Nagaoka University of Technology

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Shoichi Fujita

Nagaoka University of Technology

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Kiyoshi Momonoi

Nagaoka University of Technology

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Michio Murakami

Fukushima Medical University

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Naoki Kobayashi

Nagaoka University of Technology

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Takashi Miura

Nagaoka University of Technology

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