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Popularne wirówki wielkogabarytowe Centrifuges Sludge Dewatering Machine

Miejsce pochodzenia:China
Nazwa marki:Peony
Certyfikacja:ISO9001& ISO14001
Numer modelu:PDC
Minimalna ilość zamówienia:1 set
Cena:USD20000~100000/set FOB Shanghai
Warunki płatności:TT,.LC,Western Union
Możliwość zaopatrzenia:60 sets per month
Szczegóły produktu
Podkreślić:

centrisys decanter centrifuge

,

drilling mud decanter centrifuge

Application: Odzyskiwanie szlamu do polerowania szkła
Machine Type: pozioma wirówka do dekanterów
Separation Type: 2-fazowa separacja substancji stałych i płynnych
Operation: Ciągły Automatyczny
Solids Discharge: Ciągłe rozładowanie spiralne
Wear Protection: TC/ceramika Opcjonalnie
Flocculant Dosing: Fakultatywny
MOC: SS304 / SS316L Opcjonalnie
Drive System: Podwójny silnik z VFD
Control System: Automatyczne sterowanie PLC
Product Name: Wirówka dekantacyjna do szlamu do polerowania szkła
Opis produktu
Decanter Centrifuge for Glass Polishing Slurry Recovery
Popularne wirówki wielkogabarytowe Centrifuges Sludge Dewatering Machine 0
Description

The Decanter Centrifuge for Glass Polishing Slurry Recovery is designed for continuous solid-liquid separation, polishing powder recovery, slurry thickening, and process-water clarification.

It is suitable for glass polishing wastewater, optical glass processing, flat glass polishing, LCD glass processing, lens polishing, photovoltaic glass, ceramic glass, and glass-finishing process water. The centrifuge can recover fine polishing solids such as cerium oxide, alumina, silica fines, glass powder, and other suspended particles from polishing slurry.


Typical Applications
  • Glass polishing slurry recovery
  • Cerium oxide polishing powder recovery
  • Alumina polishing slurry thickening
  • Optical glass polishing wastewater treatment
  • Flat glass and photovoltaic glass process-water clarification
  • LCD glass polishing slurry treatment
  • Lens polishing wastewater solids recovery
  • Glass fines and suspended solids removal
  • Filter press feed thickening
  • Process-water recycle in glass processing plants

Why Use a Decanter Centrifuge for Glass Polishing Slurry?
Process Requirement Decanter Centrifuge Solution
Fine polishing powder recovery Continuous high-force separation
Process-water recycle Clarified liquid for reuse or further treatment
Variable slurry concentration Adjustable bowl speed and differential speed
Abrasive glass fines Wear-resistant scroll and discharge protection
Lower wastewater load Thickened slurry before filter press or disposal
Reduced material loss Recovery of valuable polishing powder
Automatic operation PLC-controlled continuous running



Glass Polishing Slurry Recovery Solution

Peony provides continuous solid-liquid separation for glass polishing slurry recovery, polishing-powder thickening, and process-water recycle.

Glass Polishing / Grinding → Slurry Collection Tank → Optional Flocculant Dosing → Decanter Centrifuge → Thickened Polishing Solids → Filter Press / Dryer / Recovery / Disposal

Clarified Liquid → Process Water Tank → Recycle to Polishing or Further Treatment

Peony can provide:

  • Decanter centrifuge selected according to polishing powder type and slurry condition
  • Agitated slurry buffer tank for stable feeding
  • Controlled feed pump and flow regulation system
  • Optional flocculant dosing and mixing system
  • Adjustable differential speed and pond depth control
  • Wear-resistant scroll, feed zone, and solids-discharge configuration
  • Clarified liquid collection and recycle connection
  • PLC and VFD automatic control system
  • Connection to filter press, dryer, polishing-water tank, or wastewater treatment system

How the Decanter Centrifuge Works

1. Polishing Slurry Feeding

Glass polishing slurry enters the rotating bowl through a controlled feed pipe.

An agitated slurry tank is normally recommended upstream to prevent solids settling and maintain stable feed concentration.

2. Centrifugal Sedimentation

Inside the high-speed rotating bowl, centrifugal force separates polishing powder and glass fines from the liquid phase.

The heavier fine solids settle against the bowl wall, while clarified liquid remains closer to the center.

3. Continuous Solids Conveying

The internal screw conveyor rotates at a controlled differential speed relative to the bowl.

This movement transports settled polishing solids toward the conical end for continuous discharge.

4. Clarified Liquid Discharge

The separated liquid leaves through the liquid outlet.

It can be returned to the polishing-water circulation system, transferred to a recycle-water tank, or sent to further clarification and wastewater treatment.

5. Thickened Polishing Solids Discharge

The concentrated polishing powder, glass fines, and sludge are discharged continuously from the solids outlet.

Recovered solids can be sent to a filter press, dryer, polishing-powder recovery system, storage tank, or disposal section.

Popularne wirówki wielkogabarytowe Centrifuges Sludge Dewatering Machine 1


Technical Parameter
Model Diameter (mm) Length (mm) Length-to-diameter rate G force Max solid discharge (m³/h) Weight (kg) Dimension (L*W*H) (mm)
PDC-10 250 1000 4 4080 0.4 1000 2410*800*1080
PDC-12 4200 1350 4 3500 0.6 1200 2610*800*1080
PDC-12 4200 1350 4.5 3180 1.2 1800 3495*840*1180
PDC-18 4000 1600 4.5 3180 1.2 3200 3497*1020*1385
PDC-18 450 2150 4 2500 2 3800 4447*1080*1385
PDC-20 400 2250 4.5 2500 3.5 4000 4580*1140*1470
PDC-21 530 2280 4.3 2500 5 5000 4924*1170*1540
PDC-26 655 2800 4.3 2270 8 7000 4300*1900*1350

Key Selection Considerations

Polishing Powder Type

Different polishing materials such as cerium oxide, alumina, silica, or mixed glass fines have different density, particle size, and settling behavior.

Fine Particle Recovery

Very fine polishing powder may remain suspended in water. Slurry testing is recommended when high recovery or strict clarified-water quality is required.

Slurry Concentration and Viscosity

High solids concentration or high viscosity may reduce separation capacity. Stable feeding helps maintain consistent operation.

Abrasion Level

Glass fines and polishing media can cause wear. Wear protection should be selected according to particle hardness, solids concentration, and operating hours.

Water Reuse Requirement

If clarified water will be reused directly in polishing, the suspended-solids level, turbidity, pH, conductivity, and residual additives should be checked.

Upstream Screening

Large glass fragments or coarse particles should be removed by screening before entering the decanter centrifuge.


Main Advantages

Continuous Polishing Powder Recovery

The decanter continuously recovers fine polishing solids from glass polishing slurry and process water, reducing material loss and wastewater load.

Process-Water Recycle

Clarified liquid can be reused in polishing, rinsing, or slurry preparation after suitable quality checking.

Wear-Resistant Configuration

Glass fines, silica particles, alumina, and cerium oxide can be abrasive. Wear-resistant protection can be added to the scroll, feed zone, bowl cone, and solids discharge area.

Stable Operation for Fine Slurry

Bowl speed, differential speed, pond depth, and feed rate can be adjusted according to particle size, slurry concentration, viscosity, and clarified-water target.

Lower Downstream Load

The centrifuge thickens polishing slurry before filter pressing, drying, recovery, or disposal, reducing liquid volume and improving handling efficiency.


What Data Is Needed for Selection?

Please provide the following information for a suitable glass polishing slurry recovery solution:

  • Glass type and polishing process stage
  • Polishing powder type, such as cerium oxide, alumina, or silica
  • Particle-size distribution
  • Fine-particle content
  • Slurry solids concentration
  • Slurry density and viscosity
  • Required processing capacity
  • Required solids recovery rate
  • Target solids concentration after centrifugation
  • Clarified-water quality requirement
  • Water recycle requirement
  • pH, temperature, and additive content
  • Flocculant or polymer currently used
  • Downstream filter press, dryer, recovery, or disposal arrangement
  • Required material of construction
  • Electrical and control standard

FAQ

Can a decanter centrifuge recover cerium oxide polishing powder?

Yes. It can recover fine cerium oxide and other polishing solids from glass polishing slurry. Recovery performance depends on particle size, slurry concentration, and clarified-water target.

Can the clarified liquid be reused?

Yes. Clarified liquid can often be returned to polishing-water circulation or process-water storage. Further polishing filtration may be needed for stricter reuse quality.

Is wear protection necessary?

It is recommended when the slurry contains glass fines, silica, alumina, or other abrasive particles.

Can the decanter handle coarse glass particles?

Large glass fragments should be screened out before centrifugation. The decanter is more suitable for fine polishing slurry, suspended solids, and sludge thickening.

Can it replace a filter press?

The decanter is mainly used for continuous thickening and primary dewatering. A filter press or dryer may still be used when lower final moisture is required.


Contact Peony for Partnership

Peony welcomes distributor and agent cooperation with glass processing plants, optical glass manufacturers, photovoltaic glass producers, polishing-line suppliers, wastewater treatment companies, and industrial separation partners.

We support partners with slurry testing, decanter centrifuge selection, wear-resistant configuration, flocculant dosing design, process-water recycle integration, installation guidance, commissioning support, spare parts, and after-sales service.

Send us your glass polishing slurry information, including polishing powder type, particle size, solids concentration, required capacity, recovery target, clarified-water requirement, additive content, and downstream handling arrangement. Our engineering team will recommend a suitable decanter centrifuge solution for your glass polishing slurry recovery process.

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