An empirical model for treatment of arsenic contaminated underground water by electrocoagulation process employing a bipolar cell configuration with continuous flow

被引:13
作者
Garcia-Lara, A. M. [1 ]
Montero-Ocampo, C. [1 ]
Martinez-Villafane, F. [1 ]
机构
[1] CINVESTAV IPN, Saltillo 25000, Coahuila, Mexico
关键词
arsenic; bipolar cell; kinetics; reaction pollution; underground water; DRINKING-WATER; WASTE-WATER; REMOVAL; IRON; REMEDIATION; OXIDATION; ZEOLITES; OXIDE;
D O I
10.2166/wst.2009.641
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Arsenic (As) was removed electrochemically from underground water (GW) by electrocoagulation (EC) process employing a bipolar cell configuration with continuous flow using iron electrodes. A kinetic model derived from the Lagergren equation was applied to specify the kinetics of the arsenic removal reaction. Elucidation of the effect of the liquid flow rate on the treatment time and on the simulation results of the model was achieved. The results showed that treatment times decreased from 10.50 min to 0.75 min as the flow rate decreased from 3.500 to 0.875L min(-1) and the current density varied from 15 to 45A m(-2) respectively. The used sorption kinetic model successfully describes the arsenic removal by this process. The coefficients of determination were found to be very high in all cases (R(2) > 0.99) indicating a good fit of the experimental data to Lagergren model.
引用
收藏
页码:2153 / 2160
页数:8
相关论文
共 24 条
[1]   A biomaterial based approach for arsenic removal from water [J].
Al Rmalli, SW ;
Harrington, CF ;
Ayub, M ;
Haris, PI .
JOURNAL OF ENVIRONMENTAL MONITORING, 2005, 7 (04) :279-282
[2]   Insights into isotherm making in the sorptive removal of fluoride from drinking water [J].
Ayoob, S. ;
Gupta, A. K. .
JOURNAL OF HAZARDOUS MATERIALS, 2008, 152 (03) :976-985
[3]  
Chen FF, 2004, J IRON STEEL RES INT, V11, P41
[4]   Separation of pollutants from restaurant wastewater by electrocoagulation [J].
Chen, XM ;
Chen, GH ;
Yue, PL .
SEPARATION AND PURIFICATION TECHNOLOGY, 2000, 19 (1-2) :65-76
[5]  
Cheremisinoff N.P., 2001, HDB WATER WASTEWATER, DOI [10.1016/B978-0-08-050282-3.50002-0, DOI 10.1016/B978-0-08-050282-3.50001-9]
[6]   ARSENIC SPECIATION IN THE ENVIRONMENT [J].
CULLEN, WR ;
REIMER, KJ .
CHEMICAL REVIEWS, 1989, 89 (04) :713-764
[7]   THE OXIDATION-STATES OF ARSENIC IN WELL-WATER FROM A CHRONIC ARSENICISM AREA OF NORTHERN MEXICO [J].
DELRAZO, LM ;
ARELLANO, MA ;
CEBRIAN, ME .
ENVIRONMENTAL POLLUTION, 1990, 64 (02) :143-153
[8]   Application of natural zeolites for preconcentration of arsenic species in water samples [J].
Elizalde-González, MP ;
Mattusch, J ;
Wennrich, R .
JOURNAL OF ENVIRONMENTAL MONITORING, 2001, 3 (01) :22-26
[9]   Photochemical oxidation of arsenic by oxygen and iron in acidic solutions [J].
Emett, MT ;
Khoe, GH .
WATER RESEARCH, 2001, 35 (03) :649-656
[10]   Optimization of the electrocoagulation process for the removal of copper, lead and cadmium in natural waters and simulated wastewater [J].
Escobar, Claudio ;
Soto-Salazar, Cesar ;
Toral, M. Ines .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2006, 81 (04) :384-391