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Article

Simultaneous Removal of Cyanide and Heavy Metals Using Photoelectrocoagulation

by
Ahmad Shahedi
1,
Ahmad Khodadadi Darban
2,*,
Ahmad Jamshidi-Zanjani
2,*,
Fariborz Taghipour
3 and
Mehdi Homaee
2
1
Department of Mineral Processing, Faculty of Engineering, Tarbiat Modares University, Tehran 14115, Iran
2
Department of Mining and Environmental Engineering, Faculty of Engineering, Tarbiat Modares University, Tehran 14115, Iran
3
Department of Chemical and Biological Engineering, University of British Columbia, Vancouver, BC V6T1Z3, Canada
*
Authors to whom correspondence should be addressed.
Water 2023, 15(3), 581; https://doi.org/10.3390/w15030581
Submission received: 22 December 2022 / Revised: 22 January 2023 / Accepted: 30 January 2023 / Published: 1 February 2023
(This article belongs to the Special Issue Geochemistry of Water and Sediment III)

Abstract

One of the new methods used to remove the contaminants from effluent is the electrocoagulation method, which is sometimes combined with other methods to increase the removal efficiency of contaminants. To simultaneously remove nickel, cyanide, zinc, and copper, the combined method of photo-electrocoagulation was used along with an oxidizing agent, namely hydrogen peroxide (Hp). In addition, the effects of factors affecting the removal efficiency were studied, including pH, electrode arrangement, and current intensity. An electric current of 300 mA at a pH of 10 for 60 min, Fe-SS electrodes with a distance between them of 5 cm, and hydrogen peroxide at a rate of 4 mg/L were the ideal conditions needed to accomplish the photo-electrocoagulation-oxidation process. According to these study findings, when the combined method of photocatalyst-electrocoagulation-oxidation (Hp) was used, the highest removal efficiencies of nickel, cyanide, zinc, and copper were 85, 96, 94, and 98%, respectively. The results showed that using the combined photo-electrocoagulation-oxidation method increased the efficiency of simultaneous removal of pollutants by 10% compared to conventional electrocoagulation method. The reason for the increase in removal efficiency is the production of hydroxyl radicals simultaneously with the formation of coagulants produced by electrocoagulation process.
Keywords: zinc; nickel; copper; cyanide; photo-electrocoagulation zinc; nickel; copper; cyanide; photo-electrocoagulation

Share and Cite

MDPI and ACS Style

Shahedi, A.; Darban, A.K.; Jamshidi-Zanjani, A.; Taghipour, F.; Homaee, M. Simultaneous Removal of Cyanide and Heavy Metals Using Photoelectrocoagulation. Water 2023, 15, 581. https://doi.org/10.3390/w15030581

AMA Style

Shahedi A, Darban AK, Jamshidi-Zanjani A, Taghipour F, Homaee M. Simultaneous Removal of Cyanide and Heavy Metals Using Photoelectrocoagulation. Water. 2023; 15(3):581. https://doi.org/10.3390/w15030581

Chicago/Turabian Style

Shahedi, Ahmad, Ahmad Khodadadi Darban, Ahmad Jamshidi-Zanjani, Fariborz Taghipour, and Mehdi Homaee. 2023. "Simultaneous Removal of Cyanide and Heavy Metals Using Photoelectrocoagulation" Water 15, no. 3: 581. https://doi.org/10.3390/w15030581

APA Style

Shahedi, A., Darban, A. K., Jamshidi-Zanjani, A., Taghipour, F., & Homaee, M. (2023). Simultaneous Removal of Cyanide and Heavy Metals Using Photoelectrocoagulation. Water, 15(3), 581. https://doi.org/10.3390/w15030581

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