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Impervious Graphite Condenser Phenolic/PTFE
Impervious Graphite Condenser Phenolic/PTFE
Impervious Graphite Condenser Phenolic/PTFE
Impervious Graphite Condenser Phenolic/PTFE

Impervious Graphite Condenser Phenolic/PTFE

MOQ : 1 Piece

Impervious Graphite Condenser Phenolic/PTFE Specification

  • Material
  • Impervious Graphite with Phenolic/PTFE lining
  • Application
  • Acid and chemical condensers
  • Chemical Composition
  • High purity graphite with phenolic or PTFE resin impregnation
  • Shape
  • Cylindrical shell and tube type
  • Hardness
  • Shore D 905
  • Density
  • 1.85 Gram per cubic centimeter(g/cm3)
 

Impervious Graphite Condenser Phenolic/PTFE Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • FOB Port
  • Ahmedabad
  • Supply Ability
  • 100 Pieces Per Month
  • Delivery Time
  • 6 Week
  • Sample Policy
  • Contact us for information regarding our sample policy
  • Packaging Details
  • As per order
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001:2015
 

About Impervious Graphite Condenser Phenolic/PTFE

We are one the most reliable manufacturers, suppliers, traders and exporters of a wide range of Horizontal Graphite Condenser. All our offered products are manufactured by making use of very latest machineries.

Specifications:

  • Multiple passes can be provided on service as well as process sides
  • Flexibility of adding more blocks to increase heat transfer area
  • For connection nozzles, metal plate apply compressive load on graphite, as graphite has high compressive strength thus prevents connection nipples from easy breakages
  • Simple design and easy dismantling as compared to circular blocks
  • Cubical block type, simple robust and easy to install tough construction
  • Resistant to thermal shock
  • Easy cleaning because of short channels
  • Can be provided vertically in case of falling film absorbers and horizontal when reflux system are to be provided in condensers
  • Working condition full vacuum to 5kg / cm2 pressure
  • Consists of entry chamber, multiple process blocks and exit chamber all made of impervious graphite.
  • For client's benefit, we also offer erection and commissioning services

Features:

  • Cubical block type, simple robust and easy to install tough construction
  • Consists of entry chamber, multiple process blocks and exit chamber all made of impervious graphite
  • Simple design and easy dismantling as compared to circular blocks
  • Resistance to Thermal Shock
  • Multiple passes can be provided on service as well as process sides
  • Simple robust and easy to install tough construction
  • Flexibility of adding more blocks to increase heat transfer area
  • For connection nozzles, metal plate apply compressive load on graphite, as graphite has high compressive
  • strength thus prevents connection nipples from easy breakages.
  • Short channel lengths increases turbulence as a result avoids frequent deposits or fouling as compared to shell & tube type heat exchanges of same dimensions, cubical block type heat exchanger provides 2 to 5 times more heat transfer
  • Can be provided vertically in case of falling film absorbers and horizontal when reflux system are to be provided in condensers
  • Working condition full vacuum to 5kg / cm2 pressure
  • For client's benefit, we also offer erection and commissioning services

Other Information



Superior Corrosion Resistance

This condenser offers excellent protection against corrosive chemicals, including a wide range of acids, alkalis, and solvents. Its impervious graphite construction is enhanced by phenolic or PTFE lining, ensuring both longevity and consistent performance even under aggressive operating conditions.


Efficient Thermal Transfer

With thermal conductivity greater than 40 W/mK, the condenser facilitates efficient heat exchange, vital for industrial processing. The combination of impervious graphite tubes and tube sheets guarantees rapid and reliable cooling, maximizing productivity and safety.


Leak-Proof Reliability

Designed for stringent industrial environments, the condenser features leak-proof construction, achieved through high-integrity seals using PTFE or CN rubber gaskets. This ensures safe operation, minimizing maintenance and operational risks.

FAQ's of Impervious Graphite Condenser Phenolic/PTFE:


Q: How does the impervious graphite condenser resist corrosion in chemical processes?

A: The condenser utilizes high purity graphite impregnated with phenolic or PTFE resin, making it highly resistant to corrosion from acids, alkalis, and organic solvents. This construction maintains integrity even under prolonged exposure to aggressive chemicals.

Q: What are the temperature and pressure limitations for this condenser?

A: The PTFE-lined type operates up to 170C, whereas the phenolic type is suitable up to 120C. Both types can withstand a maximum working pressure of 3.5 kg/cm2, making them adaptable for various industrial processes.

Q: When should I use a phenolic lining instead of a PTFE lining?

A: Phenolic lined condensers are typically chosen for applications with operating temperatures up to 120C and where phenolic resin compatibility with process chemicals is confirmed. PTFE lined options provide enhanced resistance and higher operating temperature capability up to 170C.

Q: Where is this graphite condenser commonly applied?

A: These condensers are widely used in chemical and acid processing facilities, including pharmaceutical, petrochemical, and specialty chemical industries across India, thanks to their durability and strong chemical resistance.

Q: What is the role of the impervious graphite tube sheet and tubes in the condenser's performance?

A: The impervious graphite tube sheet and pipes, lined with phenolic or PTFE, enhance heat transfer efficiency while ensuring minimal porosity for leak-proof operation and superior chemical resistance, thereby maximizing condenser lifespan.

Q: How does the leak-proof construction benefit industrial operations?

A: Leak-proof construction prevents the escape of hazardous chemicals, reducing environmental and safety risks. This results in lower maintenance costs and improved operational reliability for chemical processing plants.

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