Materials, electrodes, and system design for heterogeneous electro-Fenton remediation

Author:

Neale Z. G.1,Long J. W.2,Rolison D. R.2,Chervin C. N.3,Bird L. J.4,DeBlock R. H.2,Novak T. G.2

Affiliation:

1. aNational Research Council Postdoctoral Associate at the U.S. Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, DC, 20375, USA

2. bU.S. Naval Research Laboratory, Surface Chemistry Branch (Code 6170), 4555 Overlook Avenue SW, Washington, DC, 20375, USA

3. cFormer Staff Scientist, Code 6170, US Naval Research Laboratory, USA †

4. dU.S. Naval Research Laboratory, Center for Biomolecular Science and Engineering (Code 6900), 4555 Overlook Avenue SW, Washington, DC, 20375, USA

Abstract

Urbanization, industrialization, and changing climate challenge our ability to provide clean water to a growing global population. This challenge is further exacerbated by the widespread presence and persistence of organic pollutants that resist degradation by conventional methods to treat wastewater. Heterogeneous electro-Fenton methods are emerging as an effective route for the remediation of refractory organic species. In this chapter, we give an overview of electro-Fenton systems, discussing such characteristics as materials and electrode design for H2O2 generation, Fenton catalysis, and anodic oxidation. Photo- and bio-electro-Fenton systems are introduced, and design influences of electro-Fenton flow reactors are considered. Finally, we give our perspective on the state of research on heterogeneous electro-Fenton systems and discuss the need for more standardization in determining pollutant-degradation performance from lab scale to practical electro-Fenton applications.

Publisher

Royal Society of Chemistry

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