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Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press

Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press
Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press
Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press
Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press
Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press
Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press
Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press

Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press Specification

  • Product Type
  • Decanter Centrifuge Press
  • Material
  • SS316 (Stainless Steel 316)
  • Type
  • Self Cleaning Draining Type
  • Centrifugal Chamber
  • Heavy Duty, SS316 Fabrication
  • Motor
  • High Efficiency Electric Motor
  • Temperature Control Range
  • Ambient to Process specific
  • Speed
  • Variable, typically 1000-3500 RPM
  • Automation Grade
  • Semi-Automatic / Automatic
  • Surface Finish
  • Polished/Mirror Finish
  • Power Supply
  • 3 Phase, 415V, 50 Hz
  • Application
  • Effluent Treatment Plant, Dewatering, Clarification
  • Feed Inlet Pressure
  • Up to 4 Bar
  • Control Panel
  • Pre-wired with Safety interlocks
  • Protection
  • Overload and Overheating Protection
  • Drive System
  • Direct Coupled / Belt Driven
  • Capacity
  • Trial (Lab/Small ETP Applications)
  • Installation
  • Floor Mounted
  • Noise Level
  • <75 dB(A)
  • Sludge Discharge
  • Automatic Self-Cleaning
 

Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press Trade Information

  • Minimum Order Quantity
  • 1 Number
  • Delivery Time
  • 4
 

About Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press

The Whirler Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press is a high-performance, specialized dewatering solution engineered for industrial Effluent Treatment Plants (ETP) and pilot-scale process optimization. Constructed from premium SS316 stainless steel, this trial unit offers exceptional corrosion resistance and durability, ensuring long-term reliability even when handling aggressive chemical effluents or organic sludge.

At its core, the system integrates advanced decanter technology with a uniquely efficient draining and self-cleaning mechanism. This prevents solids buildup and maintains optimal throughput without manual intervention, making it ideal for continuous liquid-solid separation. Designed for portability and ease of installation, this "Trial" model provides a crucial platform for R&D and on-site testing, allowing facilities to achieve superior cake dryness and clear filtrate while significantly reducing sludge volume and disposal costs. With its automated control system and low energy consumption, the SS316 Decanter Centrifuge Press represents a sustainable benchmark for modern wastewater management and resource recovery.



Advanced Decanter Centrifuge for Efficient Wastewater Treatment

This decanter centrifuge is tailored for small or trial effluent treatment plant applications, efficiently handling dewatering and clarification tasks. The automated self-cleaning design minimizes operational interruptions, while the polished SS316 construction enhances chemical resistance and sanitation. With user-friendly features like variable speed control and automatic sludge discharge, this unit helps maximize process efficiency while keeping operating noise low and ensuring safety with pre-wired control panels and integrated protections.


Flexible Operation with Precision Engineering

Whether you require semi-automatic or fully automatic operation, this centrifuge adapts easily to diverse process needs. Its heavy-duty SS316 build resists corrosion, supports higher working pressures, and remains easy to clean thanks to its mirror finish. Directly coupled or belt-driven drive options and variable temperature and speed controls provide the flexibility needed for precise lab and pilot-scale testing. Emphasis on safety and low energy consumption supports continuous, reliable performance in demanding environments.

FAQ's of Trial ETP SS316 Self Cleaning Draining Decanter Centrifuge Press:


Q: How does the self-cleaning feature work in this decanter centrifuge?

A: The self-cleaning mechanism operates automatically, ensuring that sludge buildup is periodically discharged from the bowl without manual intervention. This reduces downtime and keeps the centrifuge running efficiently for extended periods.

Q: What are the main benefits of using SS316 material for fabrication?

A: SS316 stainless steel offers superior corrosion resistance, especially in wastewater environments, enhancing the equipment's lifespan and making it easy to sanitize, which is critical for effluent treatment applications.

Q: When should I select semi-automatic versus automatic operation?

A: Semi-automatic operation is suitable for processes where user intervention is occasionally required or testing variable parameters. Automatic mode is preferable for continuous use, reducing labor and ensuring consistent process results.

Q: Where is this decanter centrifuge typically installed?

A: This unit is designed for floor mounting in labs or small-scale effluent treatment plants (ETP), making it ideal for pilot projects, research, or operational trials where space and flexibility are essential.

Q: What is the recommended feed inlet pressure for optimal operation?

A: The centrifuge supports feed inlet pressures up to 4 Bar. Using the recommended pressure range helps maintain efficient separation performance and minimizes the risk of overload.

Q: How does the automatic sludge discharge improve the process?

A: Automatic sludge discharge ensures continuous removal of solids, maximizing centrifuge uptime and reducing manual maintenance needs, which leads to improved productivity and cleaner operation environments.

Q: What safety features are integrated into the control panel?

A: The pre-wired control panel is equipped with safety interlocks, overload protection, and overheating prevention to safeguard both the equipment and operators during use.

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