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John C Crittenden

Showing results (1-10 of 148) with videos related to

Pageof 15
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Chemosphere|June 7, 2024
Increased energy efficiency using pulse-potential electrochemical advanced oxidation processesKaihang Zhang, John C Crittenden
Environmental Science & Technology|August 24, 2019
Nanomaterial Adsorbent Design: From Bench Scale Tests to Engineering DesignJinming Luo, John C Crittenden
Journal of the American Chemical Society|March 18, 2010
Harnessing energy for a sustainable worldJohn C Crittenden, Henry S White
Environmental Science & Technology|April 14, 2026
Disulfide Oxidation in Water: Thiosulfinate Intermediates Dictate Redox FateShikang Wu, John C Crittenden, Peizhe Sun
Environmental Science & Technology|January 27, 2005
UV photolysis of trichloroethylene: product study and kinetic modelingKe Li, Mihaela I Stefan, John C Crittenden
Environmental Science & Technology|April 3, 2007
Trichloroethene degradation by UV/H2O2 advanced oxidation process: product study and kinetic modelingKe Li, Mihaela I Stefan, John C Crittenden
Journal of Hazardous Materials|February 10, 2017
Novel RGO/α-FeOOH supported catalyst for Fenton oxidation of phenol at a wide pH range using solar-light-driven irradiationYing Wang, Jiasheng Fang, John C Crittenden, et al.
Water Research|November 27, 2007
Photocatalytic inactivation of Cryptosporidium parvum with TiO(2) and low-pressure ultraviolet irradiationHodon Ryu, Daniel Gerrity, John C Crittenden, et al.
Journal of Hazardous Materials|January 26, 2016
Dechlorination and decomposition of chloroform induced by glow discharge plasma in an aqueous solutionYongjun Liu, John C Crittenden, Lei Wang, et al.
Journal of the Air & Waste Management Association (1995)|August 12, 2004
Design and performance characterization strategy using modeling for biofiltration control of odorous hydrogen sulfideRonald W Martin, James R Mihelcic, John C Crittenden
Pageof 15

Showing results (1-10 of 148) with videos related to

Sort By:
Pageof 15
Chemosphere|June 7, 2024
Increased energy efficiency using pulse-potential electrochemical advanced oxidation processesKaihang Zhang, John C Crittenden
Environmental Science & Technology|August 24, 2019
Nanomaterial Adsorbent Design: From Bench Scale Tests to Engineering DesignJinming Luo, John C Crittenden
Journal of the American Chemical Society|March 18, 2010
Harnessing energy for a sustainable worldJohn C Crittenden, Henry S White
Environmental Science & Technology|April 14, 2026
Disulfide Oxidation in Water: Thiosulfinate Intermediates Dictate Redox FateShikang Wu, John C Crittenden, Peizhe Sun
Environmental Science & Technology|January 27, 2005
UV photolysis of trichloroethylene: product study and kinetic modelingKe Li, Mihaela I Stefan, John C Crittenden
Environmental Science & Technology|April 3, 2007
Trichloroethene degradation by UV/H2O2 advanced oxidation process: product study and kinetic modelingKe Li, Mihaela I Stefan, John C Crittenden
Journal of Hazardous Materials|February 10, 2017
Novel RGO/α-FeOOH supported catalyst for Fenton oxidation of phenol at a wide pH range using solar-light-driven irradiationYing Wang, Jiasheng Fang, John C Crittenden, et al.
Water Research|November 27, 2007
Photocatalytic inactivation of Cryptosporidium parvum with TiO(2) and low-pressure ultraviolet irradiationHodon Ryu, Daniel Gerrity, John C Crittenden, et al.
Journal of Hazardous Materials|January 26, 2016
Dechlorination and decomposition of chloroform induced by glow discharge plasma in an aqueous solutionYongjun Liu, John C Crittenden, Lei Wang, et al.
Journal of the Air & Waste Management Association (1995)|August 12, 2004
Design and performance characterization strategy using modeling for biofiltration control of odorous hydrogen sulfideRonald W Martin, James R Mihelcic, John C Crittenden
Pageof 15