Method for treating electroless nickel-plating wastewater through combination of hydrogen-peroxide oxidation and ion exchange adsorption
An ion exchange adsorption, chemical nickel plating technology, applied in ion exchange water/sewage treatment, chemical instruments and methods, water/sewage treatment and other directions, can solve the problems of low nickel recovery rate, poor treatment effect, high treatment cost, and achieve The effect of avoiding secondary pollution, reducing treatment costs, and protecting loss
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example 1
[0031] Example 1: The preparation steps of this example include:
[0032] 1) 8L, 21.50mg / L electroless nickel plating wastewater, add 10mL, 98% sulfuric acid to adjust the pH value of the wastewater to 2.05;
[0033] 2) Add 28mL, 50% hydrogen peroxide, control the ORP value of the wastewater at 600mV-700mV, and stir for 3 hours;
[0034] 3) Weigh 100g of ion-exchange fibers and load them into two ion-exchange fiber columns on average;
[0035] 4) The electroless nickel plating wastewater after the oxidation reaction is treated by adsorption through the pump. Through continuous monitoring, the nickel concentration in the effluent is always lower than 0.1mg / L, which is fully up to the standard.
example 2
[0036] Example 2: The preparation steps of this example include:
[0037] 1) 1125L, 21.40mg / L, pH value of 1.50 electroless nickel plating wastewater, add 750g of sodium hydroxide to adjust the pH value of the wastewater to 2.68;
[0038] 2) Add 3.75L, 50% hydrogen peroxide, control the ORP value of the wastewater at 600mV-700mV, and stir for 3 hours;
[0039] 3) Weigh 10kg of ion exchange fibers and load them into 2 ion exchange fiber columns on average;
[0040] 4) The electroless nickel plating wastewater after the oxidation reaction is treated by adsorption through the pump. Through continuous monitoring, the nickel concentration in the effluent is always lower than 0.1mg / L, which is fully up to the standard.
[0041] 5) Regenerate the adsorbed ion-exchange fiber with an appropriate amount of regenerant, and add 30 g of oxalic acid to the concentrated solution to form a nickel oxalate precipitate;
[0042] 6) After the nickel oxalate precipitate is press-filtered, it is ...
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