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Can I read A novel bioelectro-Fenton system for coupling anodic COD removal with cathodic dye degradation on EtoBox?

A novel bioelectro-Fenton system for coupling anodic COD removal with cathodic dye degradation by Li Zhuang; Shungui Zhou; Yong Yuan; Min Liu; Youdong Wang is a Engineering article available to read on EtoBox.

What is A novel bioelectro-Fenton system for coupling anodic COD removal with cathodic dye degradation about?

The typical electro-Fenton process requires electricity to produce H 2 O 2 electrochemically on the cathode for generating powerful oxidants (e.g., hydroxyl radical) to degrade persistent organic pollutants. A new bioelectro-Fenton system in a two-chamber microbial fuel cell (MFC) was proposed using a Fe@Fe 2 O 3 /carbon felt composite cathode for simultaneous oxidation of wastewater at the anode and cathodic degradation of biorefractory pollutant by Fenton's reaction. Under the short-circuit conditions, it was found that the rate of Rhodamine B (RhB) decolorization, TOC removal and stoichiometric efficiency was significantly improved as compared with that found under close-circuit conditions (1000 ). The enhancement was determined to be caused by an increase in cathodic current density that was favorable for H 2 O 2 production.

Who reads A novel bioelectro-Fenton system for coupling anodic COD removal with cathodic dye degradation?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Li Zhuang; Shungui Zhou; Yong Yuan; Min Liu; Youdong Wang
Publisher
Elsevier Science; Elsevier ; Elsevier BV (ISSN 1385-8947)
Published
2010
Language
EN
Field
Engineering (Physical Sciences)