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Magnetite/mesocellular carbon foam as a magnetically recoverable fenton catalyst for removal of phenol and arsenic SCIE SCOPUS

Title
Magnetite/mesocellular carbon foam as a magnetically recoverable fenton catalyst for removal of phenol and arsenic
Authors
Chun, JLee, HLee, SHHong, SWLee, JLee, CLee, J
Date Issued
2012-11
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Abstract
A magnetite-loaded mesocellular carbonaceous material, Fe3O4/MSU-F-C, exhibited superior activity as both a Fenton catalyst and an adsorbent for removal of phenol and arsenic, and strong magnetic property rendering it separable by simply applying magnetic field. In the presence of hydrogen peroxide, the catalytic process by Fe3O4/MSU-F-C completely oxidized phenol and As(III) under the conditions where commercial iron oxides showed negligible effects. Notably, the decomposition of H2O2 by Fe3O4/MSU-F-C was not faster than those by commercial iron oxides, indicating that hydroxyl radical produced via the catalytic process by Fe3O4/MSU-F-C was used more efficiently for the oxidation of target contaminants compared to the other iron oxides. The homogeneous Fenton reaction by the dissolved iron species eluted from Fe3O4/MSU-F-C was insignificant. At relatively high doses of Fe3O4/MSU-F-C, total concentration of arsenic decreased to a significant extent due to the adsorption of arsenic on the catalyst surface. The removal of arsenic by adsorption was found to proceed via preoxidation of As(III) into As(V) and the subsequent adsorption of As(V) onto the catalyst. (C) 2012 Elsevier Ltd. All rights reserved.
Keywords
Fenton reaction; Water treatment; Mesoporous material; Heterogeneous catalyst; ORDERED MESOPOROUS CARBON; DYE ORANGE-II; HETEROGENEOUS PHOTODEGRADATION; FERROMAGNETIC NANOPARTICLES; HYDROGEN-PEROXIDE; AQUEOUS-SOLUTIONS; IRON-OXIDES; OXIDATION; WATER; DEGRADATION
URI
https://oasis.postech.ac.kr/handle/2014.oak/16099
DOI
10.1016/J.CHEMOSPHERE.2012.07.046
ISSN
0045-6535
Article Type
Article
Citation
CHEMOSPHERE, vol. 89, no. 10, page. 1230 - 1237, 2012-11
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이진우LEE, JIN WOO
Dept. of Chemical Enginrg
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