DocumentCode :
709514
Title :
The effect of temperature on the efficiency of wastewater treatment by electroflotation process supplied by solar energy
Author :
Ksentini, I. ; Hmidi, K. ; Hajlaoui, N. ; Ben Mansour, L.
Author_Institution :
Process Eng. & Environ. Lab. Sci., Fac. of Sfax, Tunisia
fYear :
2015
fDate :
24-26 March 2015
Firstpage :
1
Lastpage :
5
Abstract :
In this work, the effect of liquid phase temperature on the hydrodynamic of oxygen and hydrogen bubbles generated by electroflotation process was studied. The diameter and the rise velocity of bubbles were calculated using the method of video recording and image processing. The effect of both liquid phase physicochemical characteristics and current density applied at the electrodes of the electroflotation column on the bubble flow regimes has been studied. Empirical models based in nonlinear regressions were elaborated summarizing hydrodynamic results. These models were used to optimize the treatment of industrial wastewaters. The treatment consists of the abatement of suspended solids rate which exceeded 90%. The effect of temperature variation on the process efficiency in terms of power consumed by electrodes was also studied. This optimization was the key to dimension an efficient photovoltaic solar system able to supply the process.
Keywords :
bubbles; current density; electrochemical electrodes; flotation (process); hydrodynamics; image processing; photovoltaic power systems; solar energy conversion; video recording; wastewater treatment; bubble flow regimes; current density; electrodes; electroflotation column; electroflotation process; hydrodynamic results; hydrogen bubbles; image processing; liquid phase physicochemical characteristics; liquid phase temperature; nonlinear regressions; oxygen bubbles; photovoltaic solar system; solar energy; suspended solid rate; temperature effect; temperature variation; video recording; wastewater treatment; Current density; Effluents; Electrodes; Hydrodynamics; Liquids; Photovoltaic systems; Wastewater; Electroflotation; Temperature; Treatment; solar energy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Renewable Energy Congress (IREC), 2015 6th International
Conference_Location :
Sousse
Type :
conf
DOI :
10.1109/IREC.2015.7110901
Filename :
7110901
Link To Document :
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