James Farrell

Affiliations: 
Environmental Engineering University of Arizona, Tucson, AZ 
Area:
Environmental Engineering, Environmental Sciences
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"James Farrell"
Cross-listing: Envirotree

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Publications

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AzadiAghdam M, Achilli A, Snyder SA, et al. (2020) Increasing water recovery during reclamation of treated municipal wastewater using bipolar membrane electrodialysis and fluidized bed crystallization Journal of Water Process Engineering. 38: 101555
AzadiAghdam M, Park M, Lopez-Prieto IJ, et al. (2020) Pretreatment for water reuse using fluidized bed crystallization Journal of Water Process Engineering. 35: 101226
Martinez RJ, Farrell J. (2019) Quantifying Electric Field Enhancement of Water Dissociation Rates in Bipolar Membranes Industrial & Engineering Chemistry Research. 58: 782-789
Martínez RJ, Farrell J. (2019) Water splitting activity of oxygen-containing groups in graphene oxide catalyst in bipolar membranes Computational and Theoretical Chemistry. 1164: 112556
Farrell J, Martínez RJ. (2019) Understanding hydroxide reactions with guanidinium-based anion exchange polymers under conditions relevant to bipolar membrane electrodialysis Computational and Theoretical Chemistry. 1155: 75-81
Farrell J. (2017) Tridentate arsenate complexation with ferric hydroxide and its effect on the kinetics of arsenate adsorption and desorption. Chemosphere. 184: 1209-1214
Martínez RJ, Farrell J. (2017) Understanding Nitrilotris(methylenephosphonic acid) reactions with ferric hydroxide. Chemosphere. 175: 490-496
Chen Y, Baygents JC, Farrell J. (2017) Removing phosphonate antiscalants from membrane concentrate solutions using granular ferric hydroxide Journal of Water Process Engineering. 19: 18-25
Chen Y, Baygents JC, Farrell J. (2017) Evaluating electrocoagulation and chemical coagulation for removing dissolved silica from high efficiency reverse osmosis (HERO) concentrate solutions Journal of Water Process Engineering. 16: 50-55
Chen Y, Davis JR, Nguyen CH, et al. (2016) Electrochemical Ion Exchange Regeneration and Fluidized Bed Crystallization for Zero Liquid Discharge Water Softening. Environmental Science & Technology
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