Boron Removal by Electrocoagulation Using Full Factorial Design
- 1 UR11ES17 Traitement et Dessalement des Eaux, Faculté des Sciences de Tunis, Université de Tunis El Manar, Tunis, Tunisie
- 2 UR11ES17 Traitement et Dessalement des Eaux, Faculté des Sciences de Tunis, Université de Tunis El Manar, Tunis, Tunisie
- 3 UR11ES17 Traitement et Dessalement des Eaux, Faculté des Sciences de Tunis, Université de Tunis El Manar, Tunis, Tunisie
- 4 UR11ES17 Traitement et Dessalement des Eaux, Faculté des Sciences de Tunis, Université de Tunis El Manar, Tunis, Tunisie
Abstract
Saline waters treatment has become increasingly important for drinking water supply in a greater part of the world. However, some serious limitations had recently been discovered during water treatment, among them the boron problem seems to have a critical meaning. According to the WHO regulations (2011), the boron concentration should be reduced to less than 2.4 mg/L for drinking water. The purpose of this study is to investigate the feasibility of electrocoagulation (EC) as a pretreatment process to remove boron from saline waters. To optimize the experimental conditions of boron removal, the effects of some parameters were studied such as inter-electrode distance ( d ie ), electrode connection mode, (S/V) ratio, pH i and initial conductivity of the solution (σ i ). Subsequently, an experimental design methodology was implemented to evaluate statistically the most significant operating parameters. The effects of current density, EC time and initial boron concentration and their mutual interaction were investigated using 2 3 full factorial design. At optimal conditions, boron removal from synthetic aqueous solutions containing initial boron concentrations of 5 and 50 mg/L reached 81% and 79%, respectively. Applied to boron removal from seawater samples, EC reduces boron concentration to less to 2.4 mg/L with excessive energy consumption under optimal parameters.
- I. Yilmaz Ipek, R. Holdich, N. Kabay, M. Bryjak and M. Yuksel, “Kinetic Behaviour of Boron Selective Resins for Boron Removal Using Seeded Microfiltration System,” Reactive & Functional Polymers, Vol. 67, No. 12, 2007, pp. 1628-1634. doi:10.1016/j.reactfunctpolym.2007.07.027
- W. Bouguerra, A. Mnif, B. Hamrouni and M. Dhahbi, “Boron Removal by Adsorption onto Activated Alumina and by Reverse Osmosis,” Desalination, Vol. 223, No. 1-3, 2008, pp. 31-37. doi:10.1016/j.desal.2007.01.193
- WHO, “Boron in Drinking-Water, Background Document for Development of WHO Guidelines for Drinking-Water Quality,” 2009, pp. 1-15.
- N. Kabay, E. Güler and M. Bryjak, “Boron in Seawater and Methods for Its Separation—A Review,” Desalination, Vol. 261, No. 3, 2010, pp. 212-217. doi:10.1016/j.desal.2010.05.033
- R. Keren and F. T. Bingham, “Boron in Water, Soils, and Plants,” Advances in Soil Science, Vol. 1, 1985, pp. 229-276. doi:10.1007/978-1-4612-5046-3_7
- W. Bouguerra, I. Marzouk and B. Hamrouni, “Equilibrium and Kinetic Studies of Adsorption of Boron on Activated Alumina,” Water Environment Research, Vol. 81, No. 12, 2009, pp. 2455-2459.
- WHO, “Boron in Drinking-Water, Background Document for Preparation of WHO Guidelines for Drinking-Water Quality. Geneva, World Health ORGANIZATION,” 2003, pp. 1-10.
- WHO, “Guidelines for Drinking-Water Quality,” 4th Edition, 2011, pp. 323-324.
- G. C. Cushnie, “Electroplating Wastewater Pollution Technology,” Noyes Publications, NJ, 1985.
- M. A. Zazouli and M. Taghavi, “Phenol Removal from Aqueous Solutions by Electrocoagulation Technology Using Iron Electrodes: Effect of Some Variables,” Journal of water Resource and Protection, Vol. 4, 2012, pp. 980-983.
- A. E. Yilmaz, R. Boncukcuoglu, M. Muhtar Kocakerim and B. Keskinler, “The Investigation of Parameters Affecting boron Removal by Electrocoagulation Method,” Journal of Hazardous Materials, Vol. B125, No. 1-3, 2005, pp. 160-165. doi:10.1007/978-1-4612-5046-3_7
- F. J. López, E. Jiménez and F. Hernández, “Analytical Study on the Determination of Boron in Environmental Water Samples,” Fresenius’ Journal of Analytical Chemistry, Vol. 346, No. 10-11, 1993, pp. 984-984. doi:10.1007/BF00322763
- M. M. de la Fuente and E. Mùnoz, “Boron Removal from Industrial Wastewaters by Ion Exchange: An Analytical Control Parameter,” Desalination, Vol. 181, No. 1-3, 2005, pp. 207-216. doi:10.1007/BF00322763