Indirect Electrochemical Oxidation of Chlorophenols in Dilute Aqueous Solutions

被引:17
作者
Huang, C. P. [1 ]
Chu, Chieh-shen [1 ]
机构
[1] Univ Delaware, Dept Civil & Environm Engn, Newark, DE 19716 USA
关键词
Indirect electrochemical oxidation; Electro-Fenton; Chlorophenols; TOC; Hydroxylation; Dechlorination; ELECTRO-FENTON; WASTE-WATER; CHLORINATED PHENOLS; PHOTOELECTRO-FENTON; PEROXI-COAGULATION; ANODIC-OXIDATION; DEGRADATION; OXYGEN; ANILINE; MINERALIZATION;
D O I
10.1061/(ASCE)EE.1943-7870.0000518
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The indirect electrochemical oxidation of chlorophenols was studied. The process involved the simultaneous reduction of water to produce protons that were used for the subsequent electrochemical reduction of oxygen to generate hydrogen peroxide. In the presence of ferrous ions, a Fenton's reagent was produced. In the process, upon reaction with hydrogen peroxide, ferrous ions were converted to the ferric state and were then regenerated at the cathode to recover ferrous ion-an important reactant in Fenton's reagent. A series of chlorophenols, including 4-mono-, 6-dichloro-, and 4-trichlorophenol, were studied. The degradation of monochlorophenols proceeded in decreasing order: 3-chlorophenol > 2-chlorophenol similar to 4-chlorophenol; for dichloerophenols, the order was: 3, 5-dichlorophenol > 3, 4-dichlorophenol > 2, 3-dichlorophenol > 2, 5-dichlorophenol > 2, 4-dichlorophenol > 2, 6-dichlorophenol;and for trichloro-phenols, the order followed: 2, 3, 5-trichlorophenol > 2, 3, 6-trichlorophenol > 2, 4, 5-trichlorophenol > 2, 4, 6-trichlorophenol. The results indicated that the number and the relative locations (i.e., ortho, meta, or para) of chlorine substitution on the benzene ring played an important role in determining the rate and extent of chlorophenol oxidation. Regardless of the type of chlorine-substituted phenol, two major reaction pathways were responsible for the intermediate degradation of chlorophenols: hydroxyl radical attack (hydroxylation) and dechlorination. The detailed kinetics of the degradation of chlorophenols was studied in detail using 2-chlorophenol. Formic acid and acetic acid were the major end products that, in combination, contributed to 70% of the residual total organic carbon (TOC). Three other minor intermediates, 2-chloro-hydroquinone (2-Cl-HQ), 2-chloro-catechol (2-Cl-CA), and 4-hydroxyl,2,2'-dichlorodiphenyl ether (HDCDH), were observed; each contributed to a small percentage of the residual TOC. DOI: 10.1061/(ASCE)EE.1943-7870.0000518. (C) 2012 American Society of Civil Engineers.
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页码:375 / 385
页数:11
相关论文
共 47 条
[1]   KINETIC-STUDIES IN HETEROGENEOUS PHOTOCATALYSIS .1. PHOTOCATALYTIC DEGRADATION OF CHLORINATED PHENOLS IN AERATED AQUEOUS-SOLUTIONS OVER TIO2 SUPPORTED ON A GLASS MATRIX [J].
ALEKABI, H ;
SERPONE, N .
JOURNAL OF PHYSICAL CHEMISTRY, 1988, 92 (20) :5726-5731
[2]   Electrochemical treatment of olive mill wastewaters: Removal of phenolic compounds and decolourization [J].
Belaid, Chokri ;
Kallel, Monem ;
Khadhraou, Moncef ;
Lalleve, Gerard ;
Elleuch, Boubaker ;
Fauvarque, Jean-Francois .
JOURNAL OF APPLIED ELECTROCHEMISTRY, 2006, 36 (10) :1175-1182
[3]   Competitive electrochemical oxidation of p-chlorophenol and p-nitrophenol on Bi-doped PbO2 [J].
Borras, C ;
Laredo, T ;
Scharifker, BR .
ELECTROCHIMICA ACTA, 2003, 48 (19) :2775-2780
[4]   Aniline mineralization by AOP's: anodic oxidation, photocatalysis, electro-Fenton and photoelectro-Fenton processes [J].
Brillas, E ;
Mur, E ;
Sauleda, R ;
Sanchez, L ;
Peral, J ;
Domenech, X ;
Casado, J .
APPLIED CATALYSIS B-ENVIRONMENTAL, 1998, 16 (01) :31-42
[5]   Degradation of 4-chlorophenol by anodic oxidation, electro-Fenton, photoelectro-Fenton, and peroxi-coagulation processes [J].
Brillas, E ;
Sauleda, R ;
Casado, J .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1998, 145 (03) :759-765
[6]   Iron(II) catalysis of the mineralization of aniline using a carbon-PTFE O-2-fed cathode [J].
Brillas, E ;
Mur, E ;
Casado, J .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1996, 143 (03) :L49-L53
[7]   Peroxi-coagulation of aniline in acidic medium using an oxygen diffusion cathode [J].
Brillas, E ;
Sauleda, R ;
Casado, J .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1997, 144 (07) :2374-2379
[8]   Electrochemical oxidation of phenolic wastes with boron-doped diamond anodes [J].
Cañizares, P ;
Lobato, J ;
Paz, R ;
Rodrigo, MA ;
Sáez, C .
WATER RESEARCH, 2005, 39 (12) :2687-2703
[9]   Treatment of high strength hexamine-containing wastewater by Electro-Fenton method [J].
Chou, SS ;
Huang, YH ;
Lee, SN ;
Huang, GH ;
Huang, CP .
WATER RESEARCH, 1999, 33 (03) :751-759
[10]  
Chu C. H., 1995, THESIS U DELAWARE NE