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Ferronickel Calciner

Ferronickel Calciner

Specifications:

In the ferronickel rotary kiln, electrical motor will drive the gear wheel and then kiln body is driven by the impetus. 

Application Range:construction, building, metallurgy, mining, industrial garbage waste disposal, chemical and etc.

Applicable Materials:Sponge iron and reduced iron, iron ore, chromite, nickel ore, reduced iron, magnesium and etc.

Advantages

Stable function, low energy consumption,

high output, easy to operate. Rotary kiln’s structure is simple, production process control conveniently and reliably and it is less wearing parts and high operation rate.

Reasonble design and and high output capacity

Fuel combustion, heat transfer and material movement must be reasonable co-ordination to make the heat produced by material burn transfer to raw material timely when raw material go through the rotary kiln.

Innovative technology 

The rotary kiln firing system is equipmented with technological innovation,This system adopts the domestic advanced technology,such as the most advanced 

Easy to operate, reliable use

Stabilize the thermal system, and improve the equipment operation rate,compared with the same specifications equipment, production increased by 5% -10%, reduction 15% heat loss.

Working Principle

Ferronickel holds strong economic ability after calcination. Therefore, ferronickel can be applied to many application range. The conveyor, preheater and cooler holds great maturity. Ferronickel is sent to preheater through conveyor. The heat of preheater is from exhaust heat in the kiln. Before entering, small-sized pellets and ore powder will be decomposed, which can reduce internal-kiln decomposition work. Kiln tail feed materials. Crystal water on the material surface will be removed. Nickel, iron and cobalt oxide will be restored. It is a very important equipment of ferronickel calcination production line. The inner temperature can reach more than one thousand degree. You can also use the exhaust heat to produce power and achieve comprehensive advanced production.

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Project Case

Technical Parameters

 
Specifications (m)
Dimension Power (kw) Total weight (t) Notes
Diameter (m) Length (m) Inclination (%) Output (t/h) Rotary speed (r/min)
Φ2.5×40 2.5 40 3.5 180 0.44-2.44 55 149.61 With vertical preheater
Φ2.5×50 2.5 50 3 200 0.62-1.86 55 187.37 ----
Φ2.5×54 2.5 54 3.5 204 0.48-1.45 55 196.29 ----
Φ2.7×42 2.7 42 3.5 320 0.10-1.52 55 198.5 ----
Φ2.8×44 2.8 44 3.5 400 0.437-2.18 55 201.58 Decomposition outside the kiln
Φ3.0×45 3 45 3.5 500 0.5-2.47 75 210.94 ---- 
Φ3.0×48 3 48 3.5 700 0.6-3.48 100 237 Decomposition outside the kiln
Φ3.0×60 3 60 3.5 300 0.3-2 100 310 Bauxite calcining kiln
Φ3.2×50 3.2 50 4 1000 0.6-3 125 278 Decomposition outside the kiln
Φ3.3×52 3.3 52 3.5 1300 0.266-2.66 125 283 preheat decomposition
Φ3.5×54 3.5 54 3.5 1500 0.55-3.4 220 363 preheat decomposition
Φ3.6×70 3.6 70 3.5 1800 0.25-1.25 125 419 Residual heat power
Φ4.0×56 4 56 4 2300 0.41-4.07 315 456 preheat decomposition
Φ4.0×60 4 60 3.5 2500 0.396-3.96 315 510 preheat decomposition
Φ4.2×60 4.2 60 4 2750 0.4-3.98 375 633 preheat decomposition
Φ4.3×60 4.3 60 3.5 3200 0.396-3.96 375 583 preheat decomposition
Φ4.5×66 4.5 66 3.5 4000 0.41-4.1 560 710.4 preheat decomposition
Φ4.7×74 4.7 74 4 4500 0.35-4 630 849 preheat decomposition
Φ4.8×74 4.8 74 4 5000 0.396-3.96 630 899 preheat decomposition
Φ5.0×74 5 74 4 6000 0.35-4 710 944 preheat decomposition
Φ5.6×87 5.6 87 4 8000 Max4.23 800 1265 preheat decomposition
Φ6.0×95 6 95 4 10000 Max5 950×2 1659 preheat decomposition

Core Equipment

Applicable Materials