Method for deeply extracting vanadium by utilizing vanadium extraction tailings
A technology for extracting vanadium tailings and depth, applied in the field of vanadium metallurgy, can solve the problems of increased management cost, low vanadium extraction rate and purity, human and environmental damage, etc., achieves good economic benefits and application prospects, and has obvious energy saving and consumption reduction effects. , to ensure the effect of purity and utilization
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Embodiment 1
[0022] A method for deep vanadium extraction using vanadium extraction tailings, specifically comprising the following steps:
[0023] Step 1. Take 10g of vanadium extraction tailings, grind the ore to pass through an 80 mesh sieve, add 0.1g of semi-coke, 0.41g of starch, 0.3g of sodium vanadate and 0.5mL of water and mix to form pellets;
[0024] Step 2. Place the obtained pellets in a rotary kiln, heat up to 650°C and reduce for 5 hours to obtain a mixed material;
[0025] Step 3: Crush the mixed material, ball mill it into a fine powder with a particle size of 200 mesh, add 80°C water, and immerse in water for 2 hours to obtain a vanadium-containing solution, wherein the mass ratio of water to the mixed material is 4:1; the obtained vanadium-containing solution is circulated Sodium vanadate is obtained by crystallization when leaching to a concentration of 8g / L, and the obtained leaching slag can be directly used for blast furnace blending and ironmaking.
[0026] After de...
Embodiment 2
[0028] A method for deep vanadium extraction using vanadium extraction tailings, specifically comprising the following steps:
[0029] Step 1. Take 10g of vanadium extraction tailings, grind the ore until it passes through a 200 mesh sieve, add 0.15g of coke, 0.37g of starch, 0.3g of sodium chloride and 0.6mL of water to make pellets;
[0030] Step 2. Place the obtained pellets in a rotary kiln, heat up to 700°C and reduce for 4 hours to obtain the mixed material;
[0031] Step 3: Crush the mixed material, ball mill it into a fine powder with a particle size of 200 mesh, add water at 90°C, and immerse in water for 2 hours to obtain a vanadium-containing solution, wherein the mass ratio of water to the mixed material is 3:1; the obtained vanadium-containing solution is circulated When leaching to a concentration of 10g / L, sodium vanadate is obtained by crystallization, and the obtained leaching slag can be directly used for blast furnace blending and ironmaking.
[0032] After...
Embodiment 3
[0034] A method for deep vanadium extraction using vanadium extraction tailings, specifically comprising the following steps:
[0035] Step 1. Take 10g of vanadium extraction tailings, grind the ore until it passes through an 80 mesh sieve, add 0.12g of semi-coke, 0.45g of polyvinyl alcohol, 0.2g of sodium vanadate and 0.65mL of water and mix to form pellets;
[0036] Step 2. Place the obtained pellets in a rotary kiln, heat up to 620°C and reduce for 3 hours to obtain a mixed material;
[0037] Step 3: Crush the mixed material, ball mill it into a fine powder with a particle size of 200 mesh, add 80°C water, and immerse in water for 2 hours to obtain a vanadium-containing solution, wherein the mass ratio of water to the mixed material is 4:1; the obtained vanadium-containing solution is circulated Sodium vanadate is obtained by crystallization when leaching to a concentration of 9g / L, and the obtained leaching slag can be directly used for blast furnace blending and ironmakin...
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