Treatment of a trifluraline effluent by means of oxidation-coagulation with Fe(VI) and combined Fenton processes

被引:16
作者
Martins, Ayrton F. [1 ]
Frank, Carla da S. [1 ]
Wilde, Marcelo L. [1 ]
机构
[1] Univ Fed Santa Maria, Dept Quim, BR-97105900 Santa Maria, RS, Brazil
关键词
coagulation; Fenton; herbicides; potassium ferrate; response surface methodology; trifluraline effluent;
D O I
10.1002/clen.200600017
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The amination water (AW) effluent stream from the industrial production of the trifluraline herbicide was submitted to an oxidation-coagulation treatment with potassium ferrate, combined with advanced oxidation processes. The experimental results obtained by analysis of variance (ANOVA) for the oxidation-coagulation-Fenton process, evaluating the variables pH (A), Fe(VI) concentration (B), and H2O2 concentration (C), demonstrated that the regression equation resulting from the Response Surface Methodology (RSM) experimental design, for the quadratic model, was eta(Abs) (%) = 36.9 - 21.58A + 8.37A(2) + 1.36B + 0.92B(2) + 1.08C + 1.52C(2) + 1.27AB - 1.34AC + 1.33BC. The maximum absorptiometric color reduction occurred at pH 3, with corresponding maximum amounts of iron and hydrogen peroxide. The absorptiometric color and COD reduction were 96% and 57%, respectively. For the oxidation-coagulation-photo-Fenton process, the analyzed variables were pH (A), Fe(VI) concentration (B), H202 concentration (C), and temperature (D). The regression equation resulting from the quadratic model was eta(Abs) (%) = 38.3 - 20.2A + 8.12A(2) - 0.27B + 3.73B(2) + 03C + 3.6C(2) + 1.67D + 3.1D(2) + 1.72AB + 0.51AC - 1.82AD + 0.74BC - 1.11BD + 0.03CD. The ANOVA response showed that the highest absorptiometric color reduction occurred at pH 3, with respective maximum amounts of iron and hydrogen peroxide at 60 degrees C. The maximum efficiencies achieved by the proposed treatment process for the trifluraline effluent stream were 95% and 85%, for absorptiometric color and COD reduction, respectively.
引用
收藏
页码:88 / 99
页数:12
相关论文
共 45 条
[1]   Monitoring of pesticide residues and their metabolites in surface and underground waters of Imathia (N. Greece) by means of solid-phase extraction disks and gas chromatography [J].
Albanis, TA ;
Hela, DG ;
Sakellarides, T ;
Konstantinou, IK .
JOURNAL OF CHROMATOGRAPHY A, 1998, 823 (1-2) :59-71
[2]  
[Anonymous], 2001, P EST ACAD SCI CHEM, V50, P59, DOI DOI 10.1002/CHIN.200141291
[3]  
*APHA AWWA, 1995, STAND METH EX WAT WA
[4]   Modeling and optimization I: Usability of response surface methodology [J].
Bas, Deniz ;
Boyaci, Ismail H. .
JOURNAL OF FOOD ENGINEERING, 2007, 78 (03) :836-845
[5]   DICHROMATE REFLUX CHEMICAL OXYGEN DEMAND - PROPOSED METHOD FOR CHLORIDE CORRECTION IN HIGHLY SALINE WASTES [J].
BAUMANN, FJ .
ANALYTICAL CHEMISTRY, 1974, 46 (09) :1336-1338
[6]   HYDROGEN PEROXIDE CATALYTIC OXIDATION OF REFRACTORY ORGANICS IN MUNICIPAL WASTE WATERS [J].
BISHOP, DF ;
STERN, G ;
FLEISCHMAN, M ;
MARSHALL, LS .
INDUSTRIAL & ENGINEERING CHEMISTRY PROCESS DESIGN AND DEVELOPMENT, 1968, 7 (01) :110-+
[7]   Modeling the quantum yields of herbicide 2,4-D decay in UV/H2O2 process [J].
Chu, W .
CHEMOSPHERE, 2001, 44 (05) :935-941
[8]   Effects of chloride ions on the iron(III)-catalyzed decomposition of hydrogen peroxide and on the efficiency of the Fenton-like oxidation process [J].
De Laat, J ;
Le, TG .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2006, 66 (1-2) :137-146
[9]   A novel oxidizing reagent based on potassium ferrate(VI) [J].
Delaude, L ;
Laszlo, P .
JOURNAL OF ORGANIC CHEMISTRY, 1996, 61 (18) :6360-6370
[10]   Spectrophotometric study of the formation of iron(III)-hydroperoxy complexes in homogeneous aqueous solutions [J].
Gallard, H ;
De Laat, J ;
Legube, B .
WATER RESEARCH, 1999, 33 (13) :2929-2936