A kind of method that industrial nickel-containing wastewater reclaims and prepares high-purity nickel salt
A nickel wastewater, high-purity technology, applied in the fields of metallurgical wastewater treatment, chemical instruments and methods, water pollutants, etc., can solve problems such as inability to achieve high-purity nickel sulfate, reduce outsourcing, reduce energy consumption, and simple operation Effect
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Embodiment 1
[0039] The method for the recovery of industrial nickel-containing waste water as above to prepare high-purity nickel salt, the specific steps are as follows:
[0040] (1) Collect industrial nickel-containing wastewater;
[0041] (2) Pass the nickel wastewater through a cation exchange resin that selectively adsorbs nickel to adsorption saturation;
[0042] (3) Carry out resin desorption regeneration to the cation exchange resin in step (2) with strong acid to obtain nickel salt solution; wherein Ni 2+ Concentration is 50g / l, pH value 2; Described strong acid is 5wt% sulfuric acid;
[0043] (4) Carry out gradient type pulse electrolysis to the nickel salt solution that step (3) obtains, the process parameter of electrolysis is:
[0044] Power supply: high frequency double pulse power supply, maximum peak current: 80A; maximum output voltage: 12V;
[0045] Anode: The electrolytic anode adopts DSA anode, and the DSA anode is an iridium-based or iridium-tantalum-coated titaniu...
Embodiment 2
[0057] The method for preparing high-purity nickel salt by reclaiming industrial nickel-containing wastewater, the specific steps are as follows:
[0058] (1) Collect industrial nickel-containing wastewater;
[0059] (2) Pass the nickel wastewater through a cation exchange resin that selectively adsorbs nickel to adsorption saturation;
[0060] (3) Carry out resin desorption regeneration to the cation exchange resin in step (2) with strong acid to obtain nickel salt solution; wherein Ni 2+ Concentration is 70g / l, pH value is 4; Described strong acid is 20wt% hydrochloric acid;
[0061] (4) Carry out gradient type pulse electrolysis to the nickel salt solution that step (3) obtains, the process parameter of electrolysis is:
[0062] Power supply: high frequency double pulse power supply, maximum peak current: 80A; maximum output voltage: 12V;
[0063] Anode: The electrolytic anode adopts DSA anode, and the DSA anode is an iridium-based or iridium-tantalum-coated titanium ano...
Embodiment 3
[0075] The method for the recovery of industrial nickel-containing waste water as above to prepare high-purity nickel salt, the specific steps are as follows:
[0076] (1) Collect industrial nickel-containing wastewater;
[0077] (2) Pass the nickel wastewater through a cation exchange resin that selectively adsorbs nickel to adsorption saturation;
[0078] (3) Carry out resin desorption regeneration to the cation exchange resin in step (2) with strong acid to obtain nickel salt solution; wherein Ni 2+ The concentration is 60g / l, the pH value is 3; the strong acid is 12wt% sulfuric acid;
[0079] (4) Carry out gradient type pulse electrolysis to the nickel salt solution that step (3) obtains, the process parameter of electrolysis is:
[0080] Power supply: high frequency double pulse power supply, maximum peak current: 80A; maximum output voltage: 12V;
[0081] Anode: The electrolytic anode adopts a DSA anode, and the DSA anode is an iridium-based or iridium-tantalum-coated...
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