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John Crittenden

Showing results (1-10 of 79) with videos related to

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Environmental Science & Technology|May 30, 2009
Computerized pathway elucidation for hydroxyl radical-induced chain reaction mechanisms in aqueous phase advanced oxidation processesKe Li, John Crittenden
Environmental Science & Technology|March 18, 2011
Linear free energy relationships between aqueous phase hydroxyl radical reaction rate constants and free energy of activationDaisuke Minakata, John Crittenden
Environmental Science & Technology|June 22, 2011
Reactivity of aqueous phase hydroxyl radical with halogenated carboxylate anions: experimental and theoretical studiesDaisuke Minakata, Weihua Song, John Crittenden
Environmental Science & Technology|August 28, 2014
Computer-based first-principles kinetic Monte Carlo simulation of polyethylene glycol degradation in aqueous phase UV/H2O2 advanced oxidation processXin Guo, Daisuke Minakata, John Crittenden
Environmental Science & Technology|July 3, 2015
On-the-Fly Kinetic Monte Carlo Simulation of Aqueous Phase Advanced Oxidation ProcessesXin Guo, Daisuke Minakata, John Crittenden
Journal of Hazardous Materials|February 5, 2008
An approach for evaluating nanomaterials for use as packed bed adsorber media: a case study of arsenate removal by titanate nanofibersKiril Hristovski, Paul Westerhoff, John Crittenden
Environmental Science & Technology|April 23, 2014
Computer-based first-principles kinetic modeling of degradation pathways and byproduct fates in aqueous-phase advanced oxidation processesXin Guo, Daisuke Minakata, Junfeng Niu, et al.
Water Research|July 7, 2009
Impact of natural organic matter and divalent cations on the stability of aqueous nanoparticlesYang Zhang, Yongsheng Chen, Paul Westerhoff, et al.
Environmental Science & Technology|September 15, 2009
Development of a group contribution method to predict aqueous phase hydroxyl radical (HO*) reaction rate constantsDaisuke Minakata, Ke Li, Paul Westerhoff, et al.
Environmental Science & Technology|January 21, 2012
Attachment efficiency of nanoparticle aggregation in aqueous dispersions: modeling and experimental validationWen Zhang, John Crittenden, Kungang Li, et al.
Pageof 8

Showing results (1-10 of 79) with videos related to

Sort By:
Pageof 8
Environmental Science & Technology|May 30, 2009
Computerized pathway elucidation for hydroxyl radical-induced chain reaction mechanisms in aqueous phase advanced oxidation processesKe Li, John Crittenden
Environmental Science & Technology|March 18, 2011
Linear free energy relationships between aqueous phase hydroxyl radical reaction rate constants and free energy of activationDaisuke Minakata, John Crittenden
Environmental Science & Technology|June 22, 2011
Reactivity of aqueous phase hydroxyl radical with halogenated carboxylate anions: experimental and theoretical studiesDaisuke Minakata, Weihua Song, John Crittenden
Environmental Science & Technology|August 28, 2014
Computer-based first-principles kinetic Monte Carlo simulation of polyethylene glycol degradation in aqueous phase UV/H2O2 advanced oxidation processXin Guo, Daisuke Minakata, John Crittenden
Environmental Science & Technology|July 3, 2015
On-the-Fly Kinetic Monte Carlo Simulation of Aqueous Phase Advanced Oxidation ProcessesXin Guo, Daisuke Minakata, John Crittenden
Journal of Hazardous Materials|February 5, 2008
An approach for evaluating nanomaterials for use as packed bed adsorber media: a case study of arsenate removal by titanate nanofibersKiril Hristovski, Paul Westerhoff, John Crittenden
Environmental Science & Technology|April 23, 2014
Computer-based first-principles kinetic modeling of degradation pathways and byproduct fates in aqueous-phase advanced oxidation processesXin Guo, Daisuke Minakata, Junfeng Niu, et al.
Water Research|July 7, 2009
Impact of natural organic matter and divalent cations on the stability of aqueous nanoparticlesYang Zhang, Yongsheng Chen, Paul Westerhoff, et al.
Environmental Science & Technology|September 15, 2009
Development of a group contribution method to predict aqueous phase hydroxyl radical (HO*) reaction rate constantsDaisuke Minakata, Ke Li, Paul Westerhoff, et al.
Environmental Science & Technology|January 21, 2012
Attachment efficiency of nanoparticle aggregation in aqueous dispersions: modeling and experimental validationWen Zhang, John Crittenden, Kungang Li, et al.
Pageof 8