Recent advances in the electrochemical oxidation water treatment: Spotlight on byproduct control
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Environmental Science
Link
http://link.springer.com/content/pdf/10.1007/s11783-020-1264-7.pdf
Reference91 articles.
1. Almassi S, Li Z, Xu W, Pu C, Zeng T, Chaplin B P (2019). Simultaneous adsorption and electrochemical reduction of N-nitrosodimethylamine using carbon-Ti4O7 composite reactive electrochemical membranes. Environmental Science & Technology, 53(2): 928–937
2. Almassi S, Samonte P R V, Li Z, Xu W, Chaplin B P (2020). Mechanistic investigation of haloacetic acid reduction using carbon-Ti4O7 composite reactive electrochemical membranes. Environmental Science & Technology, 54(3): 1982–1991
3. Anglada A, Ibanez R, Urtiaga A, Ortiz I (2010). Electrochemical oxidation of saline industrial wastewaters using boron-doped diamond anodes. Catalysis Today, 151(1–2): 178–184
4. Anglada A, Urtiaga A, Ortiz I (2009). Pilot scale performance of the electro-oxidation of landfill leachate at boron-doped diamond anodes. Environmental Science & Technology, 43(6): 2035–2040
5. Bagastyo A Y, Batstone D J, Kristiana I, Gernjak W, Joll C, Radjenovic J (2012). Electrochemical oxidation of reverse osmosis concentrate on boron-doped diamond anodes at circumneutral and acidic pH. Water Research, 46(18): 6104–6112
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