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Activation of persulfate by CuOx@Co-LDH: A novel heterogeneous system for contaminant degradation with broad pH window and controlled leaching.

Authors :
Jawad, Ali
Lang, Jie
Liao, Zhuwei
Khan, Aimal
Ifthikar, Jerosha
Lv, Zhanao
Long, Sijie
Chen, Zhulei
Chen, Zhuqi
Source :
Chemical Engineering Journal. Mar2018, Vol. 335, p548-559. 12p.
Publication Year :
2018

Abstract

To meet the current challenges of waste water, an efficient, environment friendly and economical treatment process is always desirable for the degradation of toxic organic compounds. Herein, we reported a stable and active bimetallic CuOx@Co-LDH catalyst for the degradation of phenol using persulfate (PS) under mild conditions. The system of PS/CuOx@Co-LDH completely degraded 0.1 mM of phenol in less than 40 min while at the same time, all the other tested catalysts including catalyst precursors remained sluggish. In view of the practical application, CuOx@Co-LDH/PS system demonstrated consistent performance over a broad pH range (pH 5.0–12.0), during which minimum leaching could be detected. Moreover, good resistance to various inorganic anions was demonstrated in CuOx@Co-LDH/PS system. The consistent performance of CuOx@Co-LDH/PS system may originate from the constant buffer pH of catalyst (9.5 ± 0.8), minimum leaching and the generation of diverse free radicals ( SO 4 − , OH or − O 2 ) under different pH conditions. Additionally, LDH structure offered strong synergetic interactions among active components which might also help in minimum leaching and good reactivity of CuOx@Co-LDH catalyst. The results of radical scavengers, EPR and XPS studies collectively proved the mechanism of diverse free radicals, which was accounted to the redox cyclic reactions of active sites (Cu (III) –Cu (II) –Cu (III) and Co (III) –Co (II) –Co (III) ) during degradation of phenol. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13858947
Volume :
335
Database :
Academic Search Index
Journal :
Chemical Engineering Journal
Publication Type :
Academic Journal
Accession number :
129072596
Full Text :
https://doi.org/10.1016/j.cej.2017.10.097