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flotation machine SF flotation cell

flotation machine SF flotation cell

Application:copper, aluminum, zinc, nickel, molybdenum, gold, silver, sulfur, phosphorus and non-metallic minerals..

Application range:Widely used in metallurgy, mining, chemical, cement, construction, refractory materials and ceramics industries.

product Introduction

The flotation machine is mainly used to select metal minerals such as gold, silver, copper, iron, lead, zinc, molybdenum, nickel and aluminum. Can also be used for the selection of ferrous and non-metallic.

The flotation machine is suitable for the selection of colored ferrous metals, and can also be used for the selection of non-metal such as coal fluorite and talc. The flotation machine has the following characteristics: large inspiratory capacity and low power consumption. Each slot is inhaled, suction and flotation triple function, self-forming flotation circuit, without any auxiliary equipment, configuration level, easy to change the process.
floation machine
The flotation machine uses a "U"-shaped trough body, a hollow shaft for inflating and a suspension stator, in particular a new type of impeller. This is a conical impeller with a blade that is inclined at an angle. It is similar to a high-speed centrifugal pump wheel. It has a large amount of slurry, low head, low power consumption and simple structure. A porous cylindrical air distributor is also disposed in the impeller chamber to allow air to be uniformly dispersed in most of the impeller blades in advance, providing a large slurry-air contact interface.
 
flotation machine
Main Features:
1) Large air-absorption capacity
2) Increase cycling rate by 8%.
3) Increase production by 12%.
4) Easy to maintenance and can be designed according to the users.
5) Increase concentrate grade of by 4-6%.
6) Less reagents consumption.
7) Low energy consumption.
 

Working Principle

When the flotation machine is working, as the impeller rotates, the slurry in the tank is sucked from the periphery of the tank from the bottom of the tank to the impeller blade through the bottom of the impeller, and at the same time, the low-pressure air fed by the blower passes through the air distributor of the hollow shaft and the impeller. Enter it. After the slurry and air are thoroughly mixed between the blades, they are pushed upward from the periphery of the upper half of the impeller, and the stator is stabilized and oriented to enter the entire trough. The bubble rises to the foam stabilization zone, and after the enrichment process, the foam overflows from the overflow weir and enters the foam tank. A part of the slurry flows to the lower part of the impeller, and then is stirred by the impeller to remix to form mineralized bubbles, and the remaining slurry flows down to a trough until it becomes a tailing.

Parameter

Model Volume Cell size Impeller Dia. Impeller speed Capacity Power Singe cell weight
m3 mm mm r/min m3/min kw kg
SF-0.37 0.37 700×700×750 296 386 0.02-0.4 1.5/0.55 468
SF-0.7 0.7 820×900×950 350 400 0.3-0.9 3/1.1 805
SF-1.2 1.2 1100×1100×1100 450 312 0.6-1.2 5.5/1.1 1373
SF-2.8 2.8 1700×1600×1150 550 268 1.5-3.5 11/1.5 2138
SF-4 4 1850×2050×1200 650 220 2--4 15/1.5 2582
SF-8 8 2200×2900×1400 760 191 4--8 30/1.5 4129
SF-10 10 2200×2900×1700 760 191 5--10 30/1.5 4486
SF-16 16 2850×3800×1700 760 191 5--16 30×2/1.5 8320
SF-20 20 2850×3800×2000 760 191 5--20 30×2/1.5 9828
XJK-3A 0.35 700×700×700 300 483 0.18-0.4 2.2/0.55 430
XJK-4A 0.62 820×900×850 350 400 0.3-0.9 3/1.1 755
XJK-5A 1.1 1100×1100×1000 500 330 0.6-1.6 5.5/1.1 1416
XJK-6A 2.8 1750×1600×1100 600 280 1.5-3.5 11/1.1 2113
XJK7A 5.8 2200×2200×1200 750 240 3--7 22/1.5 3400
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