Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss

Product Details
Customization: Available
After-sales Service: Service Has No Endpoint
Warranty: 1 Year
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Number of Employees
30
Year of Establishment
2018-04-10
  • Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
  • Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
  • Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
  • Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
  • Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
  • Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
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Basic Info.

Model NO.
LW
Type
Centrifuge
Object
Oil
Separation Mode
Sedimentation Type
Operating Type
Continuous Type
Installation
Vertical
Centrifuge Type
Disc Centrifuge
Pressure
Low Pressure
Condition
New
Application
Liquid-Liquid-Solid Separation
Operation
Automatic Continuous
Bearing
S-K-F, NSK ISO CE
Material
SS304, SS316L
Transport Package
Wooden Case
Trademark
SHENZHOU
Origin
China
HS Code
8421192000
Production Capacity
500sets

Product Description

Decanter centrifuges process characteristics

The separation process in a decanter centrifuge relies on a few process characteristics such as centrifugal force or G-force, sedimentation rate and separating factor, differential speed between the conveyor and bowl, and clarity of the liquid discharge.

Decanter centrifuges require a centrifugal force for the separation of the solids from the liquid.  This characteristic is dependent on the radius of the centrifuge and its angular rotational speed. A decanter centrifuge applies a force equivalent to several thousand G's, which reduces the settling time of the particles. It is also favored to maintain a large G-force, which will result in an improved separation.

The rate at which sedimentation occurs is an important characteristic of the decanter centrifuge separation process.  The sedimentation rate is influenced by the particle size, the shapes of the particles, their differential densities and the viscosity between the particles and the liquid. This process characteristic can be improved by utilizing flocculating agents. The sedimentation rate is also dependent on the separating factor of the decanter centrifuge, which is related to the centrifugal force.

The exterior bowl and the scroll conveyor rotate at different high speeds. This differential speed between the two is accountable for the sedimentation throughout the decanter centrifuge cylinder.  A high differential speed results in a smaller residence time of the cake settlement, so it is necessary to keep the cake thickness to a minimum to avoid impairing the discharge quality.  Keeping the cake thickness to a minimum also aids in the improvement of the cake dewatering process.  For this reason, it is necessary to obtain an optimal differential speed to balance the cake thickness and quality.

The characteristic above all affects the clarity of the liquid output which is dependent on the volumetric throughout rate, where a higher flow rate will result in a poor liquid clarity.  Another characteristic that influences the clarity of the liquid output is the differential speed.  A low differential speed results in a better clarity, therefore, aiding in the separation process.  The G-Force also plays a role in the clarity of the liquid discharge.  Higher G-force results in an increase in the separation of the solid particles from the liquid and yields a better clarity.


Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss

How does it work

The feed product is pumped into the decanter centrifuge through the inlet. Feed goes into a horizontal bowl, which rotates.  The bowl has is composed of a cylindrical part and a conical part.  The separation takes place in the cylindrical part of the bowl.  The fast rotation generates centrifugal forces up to 4000 x g. Under these forces, the solid particles with higher density are collected and compacted on the wall of the bowl.  A scroll (also screw or screw conveyor) rotates inside the bowl at a slightly different speed.  This speed difference is called the differential speed.  This way the scroll is transporting the settled particles along the cylindrical part of the bowl and up to the end conical part of the bowl.  At the smallest end of the conical part of the bowl, the dewatered solids leave the bowl via discharge opening.  The clarified liquid leaves through a paring disc (internal centripetal pump).

3-phase separation with a decanter

With a 3 phase decanter centrifuge, it is possible to separate 3 phases from each other in one process step only.  For example, two liquids which cannot be mixed because of different densities (e.g. oil and water) are separated from a solids phase.  The heavy liquid (water) collects in the middle between the oil and the solids layer.  Thus the two liquids separated from each other can be drawn off from the decanter.  The solids are transported via the scroll to the discharge openings as it happens also in 2-phase separation.

Typical applications of 3-phase separation are the production of edible oils such as olive oil, oil sludge processing, the production of biodiesel etc.

Parameters and influencing factors of the separation

Feed, throughput and residence time

Through the feed, the separation medium to be processed can be input into the center of the infeed chamber of the scroll, where it is accelerated.  The throughput will have an influence on the residence time.

Acceleration

The separation medium reaches its maximum speed in the decanter bowl, causing the solids to settle on the bowl inner diameter.  A characteristic feature of the bowl is its cylindrical/conical shape.

Differential speed

There is a differential speed between the decanter bowl and the scroll, which is created by a gear unit on the industrial decanter centrifuges.  The differential speed determines the solid content in the outfeed.

Filling volume / Weir discs or overflow weir

The clarified liquid flows to the cylindrical end of the bowl in the decanter centrifuge, from where it runs out through openings in the bowl cover.  These openings contain precisely adjustable weir discs/weir plates by means of which the pond depth in the bowl can be set.  The weir discs determine the filling volume of the bowl.

Advantages and limitations over competitive processes

Generally the decanter centrifuge has more advantages than disadvantages; however, there are some limitations when compared to other processes.

Advantages:
  • Decanter centrifuges have a clean appearance and have little to no odour problems.
  • Not only is the device easy to install and fast at starting up and shutting down but also only requires a small area for operation compared to other competitive processes.
  • The decanter centrifuge is versatile as different lengths of the cylindrical bowl section and the cone angle can be selected for different applications.  Also, the system can be pre-programmed with various design curves to predict the sludge type, while some competitive processes, such as a belt filter press, cannot change the belt type to operate for different sludge types.  Its versatility allows the machine to have various functions such as operating for thickening or dewatering.
  • The machine can operate with a higher throughput capacity than smaller machines.  This also reduces the number of units required.
  • The device is simple to optimise and operate as it has few major variables and reliable feedback information.
  • The decanter centrifuge has reduced labour costs compared to other processes, as it requires low continuous maintenance and operator attention.
  • Compared to some competitive process such as the belt filter process, the decanter centrifuge has more process flexibility and higher levels of performance.
Limitations:
  • The decanter centrifuge cannot separate biological solids with very small density differences, such as cells and viruses.  A competitive process that is capable of separating these difficult-to-separate solids is the tubular-bowl centrifuge.
  • The machine can be very noisy and can cause vibration.
  • The device has a high-energy consumption due to high G-forces.
  • The decanter centrifuge has high equipment capital costs. Hard surfacing and abrasion protection materials are required for the scroll to reduce wear and therefore reduce the maintenance of the scroll wear.

Technical Paramter:


Model
Technical parameter motor power outline dimension(mm)
Machine weight
(KG)
(Diameter)mm
Rotation speed
rpm

Length mm

Separation factor
G

capacity
M3/h

Main motor KW

Vice motor
KW

Dimension:
L×D×H
LW250×1000 250 3600 1000 1813 1-3 7.5/11 4/5.5 2065×1050×800 1100
LW360×1200 360 3500 1200 2467 3-8 11/18.5 7.5/11 2600×1500×850 1900
LW360×1500 360 3500 1500 2062 3-8 11/18.5 7.5/11 2800×1400×850 2000
LW420×1750 420 3200 1750 2406 4-20 30/37 11/18.5 3120×1580×1050 3000
LW450×1600 450 3200 1600 2578 5-25 30/45 11/22 3780×1050×1180 3500
LW450×1800 450 3200 1800 2578 5-25 30/45 11/22 3985×1050×1180 3600
LW450×2000 450 3000 2000 2266 5─25 30/45 11/22 4320×1050×1180 3800
LW500×1800 500 3000 1800 2517 10-30 37/55 15/22 4200×1110×1200 4300
LW500×2100 500 3000 2100 2517 10-30 37/55 15/22 4500×1110×1200 4500
LW550×1800 550 3000 1800 2769 10-35 45/55 18.5/22 4380×1160×1230 4800
LW550×2200 550 2800 2200 2412 10-35 45/55 18.5/30 4780×1160×1230 5000
LW650×1750 650 2000 1750 1454 20-50 75/90 30/37 4576×1300×1250 6000
LW650×2000 650 2000 2000 1454 20-50 75/90 30/37 4900×1300×1250 6200
LW800×2000 800 1800 2000 1450 40-100 90/110 45/55 6052×1460×2100 10000
LW1000×2350 1000 1600 2350 1432 50-140 110/132 55/75 6850×1860×2300 12800

More parts show of the decanter centrifuge:

Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss

Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss


Workshop

Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss

 




Our services  As Follows:

Provide free technical training, guidance and information of accessories.

Our technical staff could instruct our customers on the installation of connector and accessories on site, and deal with technical and quality issues.

Once receive the customer complaints, we will response within 24 hours.

Free maintenance and replacement will be provided if defects result from quality failure of our product.

Our company will provide perfect after-sale services and technical support. 

 

Transportation and packaging
Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss


Company Profile
Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss
Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss

Horizontal Screw Settling Centrifuge, Used for Processing Oily Slurries of 304 or 316ss

FAQ
Q1: Where can I get product & price information?
A1: Send us inquiry or email directly, then we will contact you.
Q2: How can I make sure your machinery is suitable for me? 
A2: Please tell all the separation information you know, such as your raw liquid,
two-phase or three-phase separation, solid content in liquid, solid size, the purpose, etc. After analyzing your information, we will to choose a suitable model for you, and send the details and videos to you.
Q3: What should I do if I want to see the separation effect?
A3: If you can come to our factory with the raw liquid, we will provide test service. Or you deliver the raw liquid to us, and we will do a test, and supply you the testing videos.
Q4: How to enjoy the OEM services?
A4: As the manufacturer of the machine, we will try our best to satisfy you if you have any specific requirement, such as the cover device, drum size, motor voltage, etc.

 

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