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Depth Filtration
Depth Filtration

Depth Filtration

Price 10 INR/ Piece

MOQ : 1 Piece

Depth Filtration Specification

  • Accuracy
  • Up to 99% particle retention efficiency
  • Capacity
  • Customized / As per requirement
  • Automation Grade
  • Manual or Semi-Automatic
  • Temperature Range
  • Up to 80C
  • Usage
  • Mechanical Process Engineering
  • Model No
  • Depends on client specification
  • Application
  • Mechanical Process Engineering
  • Feature
  • High solid loading capacity, Long service life, Consistent filtrate quality
  • Measurement Range
  • Micron rating: 0.5 to 100 m
  • Product Type
  • Depth Filtration
  • Core Components
  • Filter Housing, Filter Cartridge, End Caps
  • Power Source
  • Manual/Process Driven (No external power required)
  • Equipment Materials
  • Polypropylene, Stainless Steel, cellulose-based media
  • Type
  • Depth Filtration
  • Dimension (L*W*H)
  • As per customized design
  • Weight
  • Varies as per model
 

Depth Filtration Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Payment Terms
  • Cash Advance (CA), Cash in Advance (CID), Cheque, Telegraphic Transfer (T/T), Letter of Credit (L/C)
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • carton box, export quality also available
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Depth Filtration

Depth Filtration:

Micro Teknik - learning the fundamental principle of depth filtration

by sand filters

- observation of the pressure conditions in a filter bed

- determination of pressure losses

- plotting of Micheau diagrams

- principle of backwash

Specification

[1] depth filtration with sand filter

[2] sand filter backwash possible

[3] 20 tube manometers to measure the pressures in the filter bed

[4] plotting of Micheau diagrams

[5] raw water and backwash pump

[6] magneto-inductive flow rate sensor

[7] 4 ball valves with electric drive

[8] measurement of flow rate, differential pressure, system pressure and temperature

[9] filter velocity adjustable

Technical Data
Sand filter

- outer diameter: 200mm

- inside diameter: 150mm

- height: 1660mm

Raw water pump

- max. flow rate: 13m/h

- max. head: 10m

Backwash pump

- max. flow rate: 3m/h

- max. head: 37m

Tanks for raw water and treated water

- capacity: each 180L

 

Measuring ranges

- flow rate: 0...1300L/h

- tube manometers: 20x 0...1500mmWC

- differential pressure: -1...1bar

- system pressure: 0...4bar

- temperature: 0...100C

- filter velocity: 0...70m/h



Superior Filtration Media

Utilizing advanced cellulose fiber, glass fiber, and polypropylene filter media, these depth filtration systems ensure high efficiency in particle retention, achieving up to 99% accuracy. Their broad micron ratingranging from 0.5 to 100 mallows for tailored solutions to match specific process requirements, supporting a wide range of mechanical engineering applications.


Customizable Design and Capacity

Designed with flexibility in mind, these filtration systems are available with varied end connections (DOE, SOE, threaded, flanged), and can be customized in size, flow rate, and filtration area to match individual engineering needs. The modular construction ensures adaptability and easy maintenance, while supporting capacities up to 5000 LPH.


Reliable Performance and Durability

Constructed from high-grade equipment materials such as polypropylene and stainless steelpaired with reinforced, metallic housingsthese depth filtration systems offer high solid loading capacity and a long service life. Their robust design ensures consistent results, even under pressure up to 6 bar and temperatures reaching 80C.

FAQs of Depth Filtration:


Q: How does depth filtration with cellulose fiber, glass fiber, or polypropylene media work?

A: Depth filtration uses layers of filtration mediasuch as cellulose fiber, glass fiber, or polypropyleneto capture particles throughout the entire depth of the cartridge, rather than just on the surface. This results in higher solid holding capacity and consistent filtrate quality, making it ideal for mechanical process engineering.

Q: What are the main benefits of using these depth filtration systems in mechanical process engineering?

A: These systems offer high solid loading capacity, long service life, and up to 99% efficiency in particle retention. Their customizable design supports varied flow rates and filtration areas, while robust materials ensure durability even in demanding operational conditions.

Q: When should I choose depth filtration with these specific media over other filtration types?

A: Depth filtration with cellulose fiber, glass fiber, or polypropylene media is recommended when you require large particle removal capacity, high flow rates (up to 5000 LPH), and high retention efficiency. Its especially suitable for applications where high solid loading and long service intervals are needed.

Q: Where can these filtration systems be installed in a process plant?

A: These filtration units can be incorporated wherever solid-liquid separation is necessarysuch as in mechanical process engineering, upstream or downstream processes, and pre-filtration for sensitive equipment. Their adaptable design enables seamless integration with existing pipelines using various end connections.

Q: What is the process for selecting the right model and configuration?

A: Selection is based on your required flow rate, desired filtration area, operating pressure limits, compatibility with process temperature (up to 80C), and the micron rating needed for particle retention. Customization is available to fit unique application demands and capacity requirements.

Q: How is the system maintained and what is the expected service life?

A: Maintenance typically requires periodic replacement of filter cartridges, which have a long service life thanks to the high solid holding capacity of the media. Housings made from stainless steel or polypropylene are durable and easy to clean, ensuring reliable operation over extended periods.

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