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Removal of Cr(VI) ions from waste water by electrocoagulation using iron electrode
Affiliation:1. Chemical Engineering Department, Faculty of Engineering, Alexandria University, Alexandria, Egypt;2. Petrochemical Engineering Department, Faculty of Engineering, Pharos University, Alexandria, Egypt
Abstract:The performance of electrocoagulation using iron electrodes for the treatment of aqueous solutions containing chromium hexavalent ions using fixed bed electrochemical batch reactor was studied. A new anode design consisting of hex nuts was connected together with a thin rode of iron. The helical shape in the nuts increases the anode surface area allowing high chromium removal rate within very short coagulation time. The effect of different parameters affecting the electrocoagulation process, such as initial hexavalent chromium concentration, applied current, electrolyte type [sodium chloride and sodium sulfate] concentration and initial pH of the solution was investigated. The optimum conditions for the EC process by using the present cell based on minimum initial hexavalent chromium concentration, energy consumption and operating cost were 100 mg of Cr(VI)/l, 0.55 A, 1.5 g of sodium chloride/land pH of 1.
Keywords:Chromium  Electrocoagulation  Iron electrodes  EC"},{"#name":"keyword","$":{"id":"k0025"},"$$":[{"#name":"text","_":"electrocoagulation  DC"},{"#name":"keyword","$":{"id":"k0035"},"$$":[{"#name":"text","_":"direct current  cell voltage (Volt)  applied current (A)  electrocoagulation time (h)  Faraday’s constant (96485 C/mol)  initial compound concentration, (mg/l)  concentration at time t (mg/l)  treated volume (L)  energy consumption (kWh/g hexavalent chromium removed)  electrode consumption (g Fe/g hexavalent chromium removed)  electrical energy price (EGP/kWh)  electrode material price (EGP/kWh)
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