Method for recovering nickel, cobalt, iron and silicon from low-grade laterite-nickel ore by combined leaching process
A laterite nickel ore and combined leaching technology, which is applied in the field of iron, silicon, cobalt, and nickel recovery, can solve the problems of high acid consumption, high sulfuric acid consumption, low nickel and cobalt leaching rate, etc., and achieve low acid consumption and low sulfuric acid consumption Effect
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Embodiment 1
[0034] Take 500Kg of washed and graded 2 # Add 500Kg of water to high-silicon magnesium ore (dry) to make high-silicon magnesium slurry, prepare 500Kg of concentrated sulfuric acid with a mass fraction of 98%, heat the high-silicon magnesium slurry to 60°C, and the concentrated sulfuric acid to 200°C, then use a mortar pump and concentrated The sulfuric acid pump synchronously feeds the heated high-silicon magnesium pulp and concentrated sulfuric acid into the feed port of the twin-screw pusher reactor. Dissolve soluble non-ferrous metals and soluble iron, and push the reaction materials out of the double-screw pusher reactor after reacting for 1 minute. Cool down to below 60°C, simply crush the reaction material of the loose honeycomb solid paste and pour it into a water immersion tank, add 1500Kg of water, stir for 30 minutes to dissolve in water, and pump the resulting slurry into a plate and frame filter press Solid-liquid separation and filter residue washing were carrie...
Embodiment 2
[0048] Take 500Kg of washed and graded 5 # Add 600Kg of water to high-silicon magnesium ore (dry) to make high-silicon magnesium slurry, prepare 500Kg of concentrated sulfuric acid with a mass fraction of 98%, heat the high-silicon magnesium slurry to 100°C, and the concentrated sulfuric acid to 150°C, then use a mortar pump and concentrated The sulfuric acid pump synchronously feeds the heated high-silicon magnesium pulp and concentrated sulfuric acid into the feed port of the twin-screw pusher reactor. Dissolve soluble non-ferrous metals and soluble iron, and push the reaction materials out of the double-screw pusher reactor after reacting for 12 minutes. Cool down to below 60°C, simply crush the reaction material of the loose honeycomb solid paste and pour it into a water immersion tank, add 1280Kg of water, stir for 30 minutes to dissolve in water, and pump the resulting slurry into a plate and frame filter press Solid-liquid separation and filter residue washing were car...
Embodiment 3
[0062] The normal-pressure acid leaching stage of the present embodiment is the same as that of Example 1, and 3 # Xinka low-silicon high-iron magnesium ore was replaced by 6 # Indonesian low silicon magnesium high iron ore.
[0063] Take 30Kg of washed and graded 3 # Low-silicon-magnesium high-iron ore (dry), add 60L of washing liquid (E1) to make low-silicon-magnesium high-iron slurry, heat the low-silicon-magnesium high-iron slurry to 95°C, add it to the circulation tank of the pressurized pipeline reactor, and then add Add normal pressure leaching solution (B1) heated to 95°C into the circulation tank of the pressure pipeline reactor to make the final pH value of the reaction material 1.0. After sealing the circulation tank, turn on the booster pump, and at the same time turn on the heat transfer oil heating device of the pressure pipeline reactor , control the temperature and heat, pressurize leaching for 60 minutes at a pressure of 2.0MPa and a temperature of 223°C, th...
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