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S. Aoudj

Researcher at University of Blida

Publications -  31
Citations -  1187

S. Aoudj is an academic researcher from University of Blida. The author has contributed to research in topics: Fluoride & Wastewater. The author has an hindex of 14, co-authored 30 publications receiving 939 citations.

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Electrocoagulation process applied to wastewater containing dyes from textile industry

TL;DR: In this paper, the effect of electrolysis time, current density, initial pH, inter-electrode distance, initial dye concentration and type of supporting electrolyte on the decolouration of Direct red 81.
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Simultaneous removal of chromium(VI) and fluoride by electrocoagulation–electroflotation: Application of a hybrid Fe-Al anode

TL;DR: In this paper, a combined two-step EC-EF process was designed to simultaneously remove Cr(VI) and fluoride from pretreated acidic semiconductor effluents, where a hybrid Fe-Al was used as sacrificial anode and stainless steel as cathode.
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Study on the treatment of photovoltaic wastewater using electrocoagulation: fluoride removal with aluminium electrodes--characteristics of products.

TL;DR: Electrocoagulation showed that with increasing applied potential and electrolysis time, the Al(3+) dosage increases, and thereby favouring the fluoride ions removal, and it was observed that defluoridation is dependant on the concentration of supporting electrolyte.
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Electrodialysis for fluoride and nitrate removal from synthesized photovoltaic industry wastewater

TL;DR: In this paper, the main pollutants in the photovoltaic cells manufacturing effluent were removed by electrodialysis application, and the results obtained can be used to optimize the pollutant removal recovery at large scale.
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Cost-effective electrocoagulation process for the remediation of fluoride from pretreated photovoltaic wastewater

TL;DR: In this paper, an electrocoagulation method was used to remove fluoride ions from pretreated photovoltaic wastewater using an electro-coagulating technique, and using aluminum sheets as a working electrode.