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New Effluent SS304 Industrial Drying Sludge Press

New Effluent SS304 Industrial Drying Sludge Press
New Effluent SS304 Industrial Drying Sludge Press
New Effluent SS304 Industrial Drying Sludge Press
New Effluent SS304 Industrial Drying Sludge Press
New Effluent SS304 Industrial Drying Sludge Press
New Effluent SS304 Industrial Drying Sludge Press
New Effluent SS304 Industrial Drying Sludge Press

New Effluent SS304 Industrial Drying Sludge Press Specification

  • Flow Rate
  • 10-20 m3/h
  • Water in conductivity
  • < 2000 S/cm
  • Ph Level
  • 5.5 - 9.5
  • Power Consumption
  • 3-5 kW
  • Technology
  • Mechanical Filtration Press
  • Efficiency (%)
  • Up to 90%
  • Noise Level
  • < 60 dB
  • Frequency
  • 50/60 Hz
  • Usage & Applications
  • Industrial Wastewater Treatment, Sludge Dewatering
  • Water Out Conductivity
  • < 20 S/cm
  • Feature
  • Corrosion Resistant, High-efficiency Dewatering
  • Recycle Rate
  • Up to 95%
  • Pump Type
  • Centrifugal Pump Integrated
  • Purity Level
  • High Purity Filtration
  • Power Source
  • Electric
  • Product Type
  • Industrial Drying Sludge Press
  • Water Source
  • Effluent/Industrial Wastewater
  • Material
  • SS304 Stainless Steel
  • Voltage
  • 380 V
  • Volume
  • 500 L
  • Automatic Grade
  • Automatic
  • Drive Type
  • Motor Driven
  • Filter Type
  • Belt Filter Press
  • Capacity
  • 2-5 Tons/Day
  • Installation Type
  • Floor Mounted
  • Inlet Pressure
  • 0.2 - 0.6 MPa
  • Maintenance Requirement
  • Low
  • Discharge Method
  • Automatic Conveyor
  • Sludge Cake Moisture
  • < 60%
  • Service Life
  • More than 10 Years
  • Operation Mode
  • Continuous
  • Control Panel
  • Digital/PLC Controlled
  • Dimensions
  • L 3850 x W 1850 x H 1850 mm
  • Cleaning System
  • Automatic Spraying Nozzle
  • Ambient Temperature Range
  • 5C - 45C
  • Sludge Feed Consistency
  • 0.5 - 5%
  • Belt Width
  • 600 mm
  • Weight
  • Approx. 1800 kg
 

New Effluent SS304 Industrial Drying Sludge Press Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Supply Ability
  • 100 Pieces Per Month
  • Delivery Time
  • 4
 

About New Effluent SS304 Industrial Drying Sludge Press

Introducing the New Effluent SS304 Industrial Drying Sludge Press, a robust and efficient solution designed for advanced sludge dewatering in diverse industrial applications. Constructed from high-grade SS304 stainless steel, this press offers exceptional durability and corrosion resistance, ensuring reliable performance even in challenging environments with aggressive effluents.

Engineered for optimal drying, it significantly reduces sludge volume and moisture content, leading to substantial savings in disposal and transportation costs. Its innovative design facilitates continuous operation, providing a consistent and effective method for separating liquids from solids. Ideal for wastewater treatment plants, chemical processing, food and beverage industries, and more, this sludge press enhances operational efficiency, minimizes environmental impact, and contributes to a cleaner, more sustainable process. Experience superior dewatering capabilities with this state-of-the-art industrial drying solution.



Advanced Dewatering Technology

Utilizing mechanical belt filtration and integrated centrifugal pumps, this sludge press processes 10-20 m3/h of industrial wastewater, efficiently separating solids from liquids. The advanced PLC/Digital control panel ensures precise adjustments, while automatic spraying nozzles keep filters clean and performance high. Designed for long-term use, this system maintains high throughput with consistently low moisture outputs.


Superior Build & Low Maintenance

Fabricated from SS304 stainless steel, the press is highly resistant to corrosion and wear, making it suitable for harsh industrial environments. Its automated, floor-mounted design and low power consumption (3-5 kW) lead to minimal routine upkeep. Operators benefit from a system that handles large volumes with little downtime, all supported by a service life exceeding 10 years.

FAQ's of New Effluent SS304 Industrial Drying Sludge Press:


Q: How does the SS304 Industrial Drying Sludge Press operate in continuous mode?

A: The press utilizes a continuous belt filtration process driven by a motor and PLC/Digital control system. Sludge is fed consistently onto a moving belt, where it's pressed to remove water. The automatic conveyor system then discharges the dewatered sludge, enabling uninterrupted operation.

Q: What are the benefits of the automatic spraying nozzle cleaning system?

A: The built-in automatic spraying nozzles regularly clean the filter belt, preventing clogging and maintaining effective, high-efficiency dewatering. This automation reduces manual intervention and enhances consistent performance.

Q: When should this sludge press be used in an industrial setting?

A: It is ideal for facilities needing efficient dewatering of industrial or effluent sludge, especially where high throughput (2-5 tons/day) and effective solid-liquid separation are required. Its performance is optimized within ambient temperatures of 5C to 45C, and for feed consistencies between 0.5-5%.

Q: Where is the SS304 Industrial Drying Sludge Press commonly installed?

A: Typically, it is floor-mounted in industrial wastewater treatment plants, manufacturing sites, or effluent treatment facilities throughout India. Its robust SS304 construction ensures durability in demanding environments.

Q: What process does the sludge undergo within the belt filter press?

A: Sludge enters the press via a centrifugal pump, spreads onto the filtration belt, and is gradually pressed to extract water. The resulting sludge cake is discharged automatically while filtrate water, with low conductivity, is collected for recycling or disposal.

Q: How does using this press benefit overall wastewater treatment operations?

A: The press significantly reduces sludge volume, lowers disposal costs, and enhances water recovery. Its high recycle rate (up to 95%) and low energy consumption contribute to operational efficiency and environmental sustainability.

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