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Selective Sulfidation of Copper, Zinc and Nickel in Plating Wastewater using Calcium Sulfide
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Citations
11
References
2010
Year
Sewage Sludge TreatmentEngineeringSolid CasChemistryDesulfurizationMineral ProcessingWastewater TreatmentMetal SulfidesChemical EngineeringEnvironmental ChemistryCorrosionPlating WastewaterWater TreatmentCalcium SulfideWastewater ManagementSelective SulfidationIndustrial WastewaterWaste ManagementEnvironmental EngineeringWater PurificationEnvironmental Remediation
The present work is concerned with sulfidation of Cu, Zn and Ni containing plating wastewater with CaS. The sulfidation experiments were carried out at a room temperature by adding solid CaS to simulated metal solution containing either single-metal of Ni, Zn and Cu, or Ni-Zn-Cu mixture. At first, the experiments were conducted without pH adjustment and it was found that the complete sulfidation of Zn and Ni was achieved at an equimolar ratio of CaS to a particular metal. However, in the case of Cu, a complete copper sulfidation was achieved at CaS to Cu molar ratio of about 2. In the case of the selective sulfidation, a simulated plating solution containing Cu, Zn and Ni at the concentration of 100 mg/dm 3 was treated with CaS under various pH conditions. As a result, selective precipitation of metal sulfides was achieved by a sulfidation treatment at different pH values. Further, the precipitation agents of NaOH, Na2S and CaS were compared in terms of the average specific filtration resistance and compressibility coefficients of metal sulfide slurry. Consequently, based on the lowest filtration parameters of the produced metal sulfides, it was concluded that CaS was the most effective precipitation agent for separation and recovery of Cu, Zn and Ni.
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