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Yoshihiko Matsui

Showing results (1-10 of 80) with videos related to

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Chemosphere|March 24, 2017
Presence of the β-triketone herbicide tefuryltrione in drinking water sources and its degradation product in drinking watersMotoyuki Kamata, Mari Asami, Yoshihiko Matsui
Journal of Water and Health|August 2, 2018
Is the default of 2 liters for daily per-capita water consumption appropriate? A nationwide survey reveals water intake in JapanKoichi Ohno, Mari Asami, Yoshihiko Matsui
The Science of the Total Environment|July 26, 2020
National trends in pesticides in drinking water and water sources in JapanMotoyuki Kamata, Yoshihiko Matsui, Mari Asami
Chemosphere|December 7, 2005
Estimating mutagenic compounds generated during photolysis of fenitrothion--by HPLC fractionation followed by mutagenicity testing and high-resolution GC-MS analysisTaku Matsushita, Yoshihiko Matsui, Yusuke Matsui
Water Research|October 2, 2020
NOM SI editorialPeter Jarvis, Yoshihiko Matsui, David Dixon
Chemosphere|May 9, 2002
Changes in mutagenicity during biodegradation of fenitrothionTaku Matsushita, Yoshihiko Matsui, Shotaro Taniwaki, et al.
Water Research|September 21, 2010
Direct observation of solid-phase adsorbate concentration profile in powdered activated carbon particle to elucidate mechanism of high adsorption capacity on super-powdered activated carbonNaoya Ando, Yoshihiko Matsui, Taku Matsushita, et al.
Water Research|July 13, 2016
Superiority of wet-milled over dry-milled superfine powdered activated carbon for adsorptive 2-methylisoborneol removalLong Pan, Yoshihiko Matsui, Taku Matsushita, et al.
Journal of Colloid and Interface Science|September 10, 2003
Polydisperse adsorbability composition of several natural and synthetic organic matricesFusheng Li, Akira Yuasa, Hajime Chiharada, et al.
Water Research X|August 29, 2022
Removal of soluble divalent manganese by superfine powdered activated carbon and free chlorine: Development and application of a simple kinetic model of mass transfer-catalytic surface oxidationShun Saito, Yoshihiko Matsui, Nobutaka Shirasaki, et al.
Pageof 8

Showing results (1-10 of 80) with videos related to

Sort By:
Pageof 8
Chemosphere|March 24, 2017
Presence of the β-triketone herbicide tefuryltrione in drinking water sources and its degradation product in drinking watersMotoyuki Kamata, Mari Asami, Yoshihiko Matsui
Journal of Water and Health|August 2, 2018
Is the default of 2 liters for daily per-capita water consumption appropriate? A nationwide survey reveals water intake in JapanKoichi Ohno, Mari Asami, Yoshihiko Matsui
The Science of the Total Environment|July 26, 2020
National trends in pesticides in drinking water and water sources in JapanMotoyuki Kamata, Yoshihiko Matsui, Mari Asami
Chemosphere|December 7, 2005
Estimating mutagenic compounds generated during photolysis of fenitrothion--by HPLC fractionation followed by mutagenicity testing and high-resolution GC-MS analysisTaku Matsushita, Yoshihiko Matsui, Yusuke Matsui
Water Research|October 2, 2020
NOM SI editorialPeter Jarvis, Yoshihiko Matsui, David Dixon
Chemosphere|May 9, 2002
Changes in mutagenicity during biodegradation of fenitrothionTaku Matsushita, Yoshihiko Matsui, Shotaro Taniwaki, et al.
Water Research|September 21, 2010
Direct observation of solid-phase adsorbate concentration profile in powdered activated carbon particle to elucidate mechanism of high adsorption capacity on super-powdered activated carbonNaoya Ando, Yoshihiko Matsui, Taku Matsushita, et al.
Water Research|July 13, 2016
Superiority of wet-milled over dry-milled superfine powdered activated carbon for adsorptive 2-methylisoborneol removalLong Pan, Yoshihiko Matsui, Taku Matsushita, et al.
Journal of Colloid and Interface Science|September 10, 2003
Polydisperse adsorbability composition of several natural and synthetic organic matricesFusheng Li, Akira Yuasa, Hajime Chiharada, et al.
Water Research X|August 29, 2022
Removal of soluble divalent manganese by superfine powdered activated carbon and free chlorine: Development and application of a simple kinetic model of mass transfer-catalytic surface oxidationShun Saito, Yoshihiko Matsui, Nobutaka Shirasaki, et al.
Pageof 8