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Manure Dewatering Decanter Centrifuge
Manure Dewatering Decanter Centrifuge
Origin of place China
Model LW355
Supplier Liaoyang Shenzhou Machinery Equipment Co., Ltd.
Price ...
Hits 7
Updated 6/16/2025
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Why Separate Manure?

The separation of manure into its solid and liquid components is important for two reasons.

Firstly, the value of dry manure is much more than that of the wetter kind.

Secondly, dry manure solids' transportation is practical and cost-effective compared to manure cost with a large water percentage.

Besides, the solids' physical separation reduces the phosphorus, which is crucial for the separated water's disposal consideration.

Separation Process

The separation of manure is the process of fractionating the manure into its liquid and solid phases. Separated manure sludge yields more value as a fertilizer and is easy to transport.

The water separated from the manure is mostly free of solids and nutrients, making it suitable for disposal. Dewatering centrifuges play a critical role in this application.

Physical means of manure separation range from gravity separation in lagoons to media separation devices (presses) and mechanical separator centrifuges.

Though each separation method has a role in the livestock industry waste management, the decanter centrifuge is the most durable, cost-effective long-term solution. 
Operation

A manure centrifuge separates manure solids from the water using high centrifugal forces over 3,000 Gs. The solids are heavier and settle out to the rotating bowl wall.

The relatively lighter water stays in the center and flows out the liquid end. The rotating conveyor scrapes the manure solids to the solids' end of the bowl.

It is important to note that most Phosphorus is bound to the solids and therefore ends up the separated solids. About 50% of the Nitrogen is retained in the liquid manure.

Introducing some chemical flocculants enhances the separation process, allowing smaller particles, less than 50 µm, to be separated.

Two-phase decanter centrifuge parameters are tailored for optimal performance.

Model 
(Diameter)mm
Length mm
Rotation speed(Rpm)
separation factor
capacity
Main motor
Vice motor
Weight
(Kg)
LW250*1000
250
1000
4800
2722
0.5-5
7.5
4
950
LW300*1200
300
 
1200
4000
2688
1-8
11
7.5
1350
LW355*1160
355
1160
3600
2576
2-8
15
7.5
1400
LW355*1460
355
1460
3600
2576
2-10
15
7.5
1800
LW355*1460H
355
1460
3600
2576
2-10
15
7.5
2000
LW420*1750
420
1750
3200
2406
4-20
30
11
3000
LW450*1600
450
1600
3200
2578
5-25
30
11
3500
LW450*1800
450
1800
3200
2578
5-28
37
22
3600
LW450*2000
450
2000
3000
2266
5-30
37
22
3800
LW500*1800
500
1800
3000
2517
10-32
45
22
4300
LW500*2000
500
2000
3000
2517
10-35
45
22
4500
LW550*1800
550
1800
3000
2769
10-40
45
22
4800
LW550*2200
550
2200
2800
2412
10-45
45
22
5000
LW650*1750
650
1750
2000
1454
20-50
90
30
6000
LW650*2000
650
2000
2000
1454
20-55
90
30
6200
LW720*2000
720
2000
1800
1450
40-100
110
55
10000
Benefits
  • Higher Value of Liquid Manure
    The centrifugal solids separation leaves the separated liquid with minimal Phosphorus. This reduction in P-content vastly increases the applicability of liquid manure as fertilizer.
  • Reduced Storage and Transportation Costs
    Separated phases (solid and liquid) are much easier to handle and store as needed. Solids can be further dried and stored for longer terms. Considerable reduction in volume is the key to transportation-related cost benefits.
  • Higher Value Fertilizer
    The retained nutrients and Phosphorus in the separated solids can be used as periodic fertilizer or even sold as a more organic substitute for expensive, commercial chemical fertilizers.
  • Dredging Cost Savings
    Upfront solids separation using a centrifuge means lesser solids end up in the open pits or lagoons. The storage pits maintain their capacity without needing frequent dredging to reclaim storage volume.
Advantages Over Filter Press

Centrifuges offer many advantages over other mechanical separation devices like filter presses, belt presses, etc.

  • Separation Efficiency
    With centrifugal forces over 3,000 Gs, centrifuges can separate solids in the 25 ~ 50 µm range. Other conventional technologies only go down to 300 µm level or higher.
  • Drier Solids
    Solid cake dryness is adjustable with a decanter centrifuge. Solids with 50% dryness are attainable using pond-depth adjustment of the centrifuge. Drier solids are easier to transport and readily applicable as fertilizer.
  • Reduce or Eliminate Chemical Use
    With the use of centrifugal force to enhance separation, flocculants and other separation aids are significantly reduced, leading to immediate cost savings.
  • Minimum Labor Cost
    The purely mechanical separation offered by centrifuges allows for unattended and reliable separation of manure solids. This reliability reduces labor costs associated with presses and other mechanical separation methods.
  • No Media Costs
    Since centrifuges do not use any separation media (like filter mesh, paper, or cloth), recurring costs related to such consumables are eliminated. This saving also reflects on the used media disposal costs.
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