Fate of organic micropollutants during brackish water desalination for drinking water production in decentralized capacitive electrodialysis
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Lingshan Ma | M. Roman | A. Alhadidi | Arne Verliefde | Mingsheng Jia | Florian Martini | Yu Xue | Leonardo Gutierrez | Emile Cornelissen
[1] Qianhong She,et al. Mixed cation transport behaviours in electrodialysis during simultaneous ammonium enrichment and wastewater desalination , 2023, Desalination.
[2] J. Casas,et al. Insights on the removal of the azole pesticides included in the EU Watch List by Catalytic Wet Peroxide Oxidation , 2022, Environmental Technology & Innovation.
[3] Daile Zhang,et al. Freestanding MnO2 composite electrode via an in situ growth method for asymmetric sodium-ion capacitor and hybrid capacitive electrodialysis , 2022, Journal of Solid State Electrochemistry.
[4] Qianhong She,et al. Influence of membrane structure-dependent water transport on conductivity-permselectivity trade-off and salt/water selectivity in electrodialysis: Implications for osmotic electrodialysis using porous ion exchange membranes , 2022, Journal of Membrane Science.
[5] L. Gutierrez,et al. Fate of organic micropollutants in reverse electrodialysis: Influence of membrane fouling and channel clogging , 2021 .
[6] E. Cornelissen,et al. Effect of minimal pre-treatment on reverse osmosis using surface water as a source , 2021 .
[7] M. Anderson,et al. Performance analysis of a capacitive deionization stack for brackish water desalination , 2021 .
[8] P. M. Biesheuvel,et al. Recent advances in ion selectivity with capacitive deionization , 2021, Energy & Environmental Science.
[9] P. M. Biesheuvel,et al. Energy Consumption of Brackish Water Desalination: Identifying the Sweet Spots for Electrodialysis and Reverse Osmosis , 2021 .
[10] W. Tarpeh,et al. Making wastewater obsolete: Selective separations to enable circular water treatment , 2021, Environmental science and ecotechnology.
[11] M. Waqas,et al. Transport of organic solutes in ion-exchange membranes: Mechanisms and influence of solvent ionic composition. , 2020, Water research.
[12] S. Porada,et al. Energy consumption in membrane capacitive deionization and comparison with reverse osmosis , 2020 .
[13] D. Sedlak,et al. The third route: Using extreme decentralization to create resilient urban water systems. , 2020, Water research.
[14] M. Elimelech,et al. Energy Efficiency of Electro-Driven Brackish Water Desalination: Electrodialysis Significantly Outperforms Membrane Capacitive Deionization. , 2020, Environmental science & technology.
[15] Cláudia F. Galinha,et al. On operation of reverse electrodialysis (RED) and membrane capacitive deionisation (MCDI) with natural saline streams: A critical review , 2020 .
[16] L. Lange,et al. Assessing potential of nanofiltration, reverse osmosis and membrane distillation drinking water treatment for pharmaceutically active compounds (PhACs) removal , 2020 .
[17] D. Yin,et al. Screening of organic micropollutants in raw and drinking water in the Yangtze River Delta, China , 2020, Environmental Sciences Europe.
[18] A. Cipollina,et al. Water desalination by capacitive electrodialysis: Experiments and modelling , 2020, Desalination.
[19] J. Post,et al. Key physicochemical characteristics governing organic micropollutant adsorption and transport in ion-exchange membranes during reverse electrodialysis , 2019, Desalination.
[20] D. Batstone,et al. Transport of pharmaceuticals during electrodialysis treatment of wastewater. , 2019, Water research.
[21] J. Santiago,et al. Comments on “Comparison of energy consumption in desalination by capacitive deionization and reverse osmosis” , 2019, Desalination.
[22] M. Elimelech,et al. Comparison of energy consumption in desalination by capacitive deionization and reverse osmosis , 2019, Desalination.
[23] E. Nevakshenova,et al. Characterization and cleaning of anion-exchange membranes used in electrodialysis of polyphenol-containing food industry solutions; comparison with cation-exchange membranes , 2019, Separation and Purification Technology.
[24] L. Gutierrez,et al. Transport of uncharged organics in ion-exchange membranes: experimental validation of the solution-diffusion model , 2018, Journal of Membrane Science.
[25] J. Whitacre,et al. Mechanisms of Humic Acid Fouling on Capacitive and Insertion Electrodes for Electrochemical Desalination. , 2018, Environmental science & technology.
[26] S. Tramberend,et al. Global assessment of water challenges under uncertainty in water scarcity projections , 2018, Nature Sustainability.
[27] A. Ghassemi,et al. A review of polymeric membranes and processes for potable water reuse. , 2018, Progress in polymer science.
[28] Damien J Batstone,et al. Nutrient recovery from wastewater through pilot scale electrodialysis. , 2018, Water research.
[29] J. Lahnsteiner,et al. Direct potable reuse – a feasible water management option , 2018 .
[30] S. Ushak,et al. Assessment of pilot-scale water purification module with electrodialysis technology and solar energy , 2017 .
[31] Arpad Horvath,et al. Assessing Location and Scale of Urban Nonpotable Water Reuse Systems for Life-Cycle Energy Consumption and Greenhouse Gas Emissions. , 2016, Environmental science & technology.
[32] B. Truffer,et al. Emerging solutions to the water challenges of an urbanizing world , 2016, Science.
[33] Adrián M.T. Silva,et al. Occurrence and removal of organic micropollutants: An overview of the watch list of EU Decision 2015/495. , 2016, Water research.
[34] A. Verliefde,et al. Increasing RO efficiency by chemical-free ion-exchange and Donnan dialysis: Principles and practical implications. , 2015, Water research.
[35] Hongtao Yu,et al. Enhanced permeability, selectivity, and antifouling ability of CNTs/Al2O3 membrane under electrochemical assistance. , 2015, Environmental science & technology.
[36] L. Vanhaecke,et al. Properties governing the transport of trace organic contaminants through ion-exchange membranes. , 2015, Environmental science & technology.
[37] H. Ngo,et al. A review on the occurrence of micropollutants in the aquatic environment and their fate and removal during wastewater treatment. , 2014, The Science of the total environment.
[38] Bert Hamelers,et al. Clean energy generation using capacitive electrodes in reverse electrodialysis , 2013 .
[39] Kitty Nijmeijer,et al. Fouling in reverse electrodialysis under natural conditions. , 2013, Water research.
[40] H. Strathmann. Electrodialysis, a mature technology with a multitude of new applications , 2010 .
[41] S. S. Madaeni,et al. CHEMICAL CLEANING OF REVERSE OSMOSIS MEMBRANE FOULED BY WASTEWATER , 2010 .
[42] E. Custodio. Coastal aquifers of Europe: an overview , 2010 .
[43] C. Zurbrügg,et al. Decentralized systems for potable water and the potential of membrane technology. , 2009, Water research.
[44] J. Georgiadis,et al. Science and technology for water purification in the coming decades , 2008, Nature.
[45] Emmanuel Van Houtte,et al. Operational experience with indirect potable reuse at the Flemish Coast , 2008 .
[46] B. Escher,et al. Pilot experiments with electrodialysis and ozonation for the production of a fertiliser from urine. , 2007, Water science and technology : a journal of the International Association on Water Pollution Research.
[47] Shane A. Snyder,et al. Role of membranes and activated carbon in the removal of endocrine disruptors and pharmaceuticals , 2007 .
[48] Jaeweon Cho,et al. Investigation of the adsorption and transport of natural organic matter (NOM) in ion-exchange membranes , 2003 .
[49] V. Vitagliano,et al. Diffusion Coefficients for Aqueous Solutions of Sodium Chloride and Barium Chloride , 1956 .
[50] F. Béguin,et al. Carbon electrodes for capacitive technologies , 2019, Energy Storage Materials.
[51] P. Malek,et al. Decentralized desalination of brackish water using an electrodialysis system directly powered by wind energy , 2016 .
[52] B. Richards,et al. Renewable energy powered membrane technology. 1. Development and characterisation of a photovoltaic hybrid membrane system , 2010 .
[53] Ronny Blust,et al. Cocaine and metabolites in waste and surface water across Belgium. , 2009, Environmental pollution.
[54] Shoji Kimura,et al. Calculation of ion rejection by extended nernst-planck equation with charged reverse osmosis membranes for single and mixed electrolyte solutions , 1991 .