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1000t/A Mineral Processing Plant Lepidolite Spodumene Mining

1000t/A Mineral Processing Plant Lepidolite Spodumene Mining

1000t/a Mineral Processing Plant

Mineral Processing Plant Spodumene Mining

Place of Origin:

China

Brand Name:

Hengyang

Certification:

ISO9001

Model Number:

HC-383

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Product Details
Name:
Spodumene Mining Methods
Application:
Glass, Ceramic And Porcelain Enamel Industries
Color:
Customize
Condition:
New
Capacity:
1000-20000 T/a
Rotary Kiln Diameter::
1.5-4.5m.
Raw Material:
Spodumene, Lepidolite, Lithium Ore
Payment & Shipping Terms
Minimum Order Quantity
1
Price
5600-356100
Packaging Details
negociated
Delivery Time
20-40 days
Payment Terms
T/T
Supply Ability
270 sets/month
Product Description

Spodumene Mining Methods

 

Spodumene ore and concentrate are used mainly in the glass, ceramic and porcelain enamel industries. Commercial spodumene ore concentrates contain between 5% and 7.5% lithia (Li2O). Lithia as spodumene is used in the glass and ceramic industries to decrease viscosity, improve the forming properties, increase thermal shock resistance (pyroceramics), reduce flux consumption and firing temperature, and improve the stability of glass exposed to radiation such as in TV faceplate glass.

 

Spodumene competes with natural brines as a source of lithium in the production of lithium carbonate, which is used in aluminum reduction cells to improve the conductivity of the molten bath. The pharmaceutical high-purity grade of lithium carbonate is used in the treatment of manic-depressive psychosis. Above all, lithium carbonate is used as a feedstock for the production of lithium chemicals such as lithium hydroxide, lithium chloride, lithium nitride and lithium metal.

 

The production of lithium carbonate from spodumene is much more energy intensive than the production from lithium chloride-enriched brines. Spodumene concentrate must be heated to about 1100°C to make it more reactive. Then it is finely ground, mixed with hot sulphuric acid and heated to 250°C to form lithium sulphate. Water is added to dissolve the lithium sulphate. Finally, lithium sulphate is treated with soda ash to yield lithium carbonate. Lithium chloride-enriched brines that contain somewhere around 300 parts per million (ppm) only need to be pumped from the ground and deposited in evaporation ponds where the natural evaporation process increases the concentration to 6000 ppm in a period of 1-2 years. The liquid is then pumped to a processing plant where it is reacted with soda ash, precipitating lithium carbonate.

 

Spodumene as Raw Material (Without Production of Other Products )

Final Products Annual Output(t/a) Spodumene Amount(t/h) Main Equipment Model
Conversion Process Acidification Process Ball Mill
Lithium LiCO3 5000 5-6 Roasting Kiln:φ2.8×50m; Cooler: φ2.6×40m Acidification Kiln:φ2.8×50m; Cooler: φ2.4×35m φ1.83×6.4m
Lithium LiCO3 10000 10-12 Roasting Kiln:φ3.5×60m; Cooler: φ2.4×40m Acidification Kiln:φ3.5×50m; Cooler: φ2.4×40m φ2.4×8m

 

 

Lepidolite as Raw Material

Final Product Annual Output of Lithium(t/a) Amount of Mixed Raw Materials (about 60% of Lepidolite) (t/h) Main Equipment Model
Rotary Kiln Cooler Ball Mill
Lithium LiCO3 3000 15-18 φ3.5×60m φ2.5×23m φ1.83×6.4m
Lithium LiCO3 5000 25-30 φ4.2×72m φ3×45m φ3.2×13m

1. Main equipment: Acidification mixer, rotary kiln, rotary cooler, Acidification kiln, raw ball mill, bag type dust collector and fan.

2. Rotary kiln diameter: 1.5-4.5m.

3. Calcination temperature: ~1250℃

4. Acidification temperature: ~350℃

5. The fuel of calcination:Natural gas, coal dust and coal gas

 

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