Chen Zhou

Affiliations: 
2014 Civil and Environmental Engineering Arizona State University, Tempe, AZ, United States 
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"Chen Zhou"

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Bruce E. Rittmann grad student 2014 Arizona State
 (The Versatile Roles of Sulfate-Reducing Bacteria for Uranium Bioremediation.)
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Long M, Chen Y, Senftle TP, et al. (2024) Method of H Transfer Is Vital for Catalytic Hydrodefluorination of Perfluorooctanoic Acid (PFOA). Environmental Science & Technology
Alsanea A, Bounaga A, Danouche M, et al. (2023) Optimizing Autotrophic Sulfide Oxidation in the Oxygen-Based Membrane Biofilm Reactor to Recover Elemental Sulfur. Environmental Science & Technology
Long M, Zhou C, Zheng X, et al. (2023) Reduction of Chromate via Biotic and Abiotic Pathways in the Presence of Three Co-contaminating Electron Acceptors. Environmental Science & Technology. 57: 21190-21199
Tesfamariam EG, Luo YH, Zhou C, et al. (2023) Simultaneous biodegradation kinetics of 1,4-dioxane and ethane. Biodegradation
Chi Z, Liu X, Li H, et al. (2023) Co-metabolic biodegradation of chlorinated ethene in an oxygen- and ethane-based membrane biofilm reactor. The Science of the Total Environment. 167323
Bounaga A, Alsanea A, Danouche M, et al. (2023) Effect of alkaline leaching of phosphogypsum on sulfate reduction activity and bacterial community composition using different sources of anaerobic microbial inoculum. The Science of the Total Environment. 904: 166296
Cheng J, Long M, Zhou C, et al. (2023) Long-Term Continuous Test of H-Induced Denitrification Catalyzed by Palladium Nanoparticles in a Biofilm Matrix. Environmental Science & Technology
Levi J, Guo S, Kavadiya S, et al. (2023) Comparing methods to deposit Pd-In catalysts on hydrogen-permeable hollow-fiber membranes for nitrate reduction. Water Research. 235: 119877
Luo YH, Long X, Cai Y, et al. (2023) A synergistic platform enables co-oxidation of halogenated organic pollutants without input of organic primary substrate. Water Research. 234: 119801
Zheng CW, Zhou C, Luo YH, et al. (2022) Coremoval of Energetics and Oxyanions via the In Situ Coupling of Catalytic and Enzymatic Destructions: A Solution to Ammunition Wastewater Treatment. Environmental Science & Technology
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