Hindustan Pneumatics
Hindustan Pneumatics
Mundka, New Delhi, Delhi
GST No. 07AHNPR6407Q1ZH
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Compressed Air Dryer

Prominent & Leading Authorized Wholesale Dealer from New Delhi, we offer mark refrigeration air dryer and adsorption air dryer.

MARK Refrigeration Air Dryer

MARK Refrigeration Air Dryer
  • MARK Refrigeration Air Dryer
  • MARK Refrigeration Air Dryer
  • MARK Refrigeration Air Dryer
  • MARK Refrigeration Air Dryer
  • MARK Refrigeration Air Dryer
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Approx. Price: Rs 74,000 / PieceGet Latest Price
Product Brochure

Product Details:

Minimum Order Quantity1 Piece
Usage/ApplicationIndustrial
Dryer TechnologyRefrigerated
Capacity74 cfm
Max Temperature32-50
Drying Capacity20 - 918 CFM
Automatic GradeAutomatic
Dryer Horse Power0.36 KW
DesignCustomized
Minimum Output Dew Point-20 C
Warranty12 months
BrandMark a division of Atlas copco

Air Process:

The compressed air flows into the Pre-Cooler via inlet (1) to perform preliminary cooling, then flows into cooling system evaporator (2) to be further cooled via cooling system. The cooled compressed air is sent to the condensate separator (3), and the condensate liquid is discharged out of the machine via auto-discharger. The cooled and dry compressed air will return to the heat exchanger (1) for temperature regaining, then leave the frozen dryer via air outlet.

Coolant Flow:

The coolant that flows through the Coolant Compressor(6) is in a state of high temperature and high pressure liquid, such liquid coolant is cooled down into medium temperature and high pressure coolant via water cooled or air cooled condenser. The impurities are filtered via Drying Filter (9), and the coolant turns into low temperature and low pressure air-liquid mixed state via capillary (10) effect. It finally enters into the evaporator (2) to implement heat exchange with the hot compressed air to finish the cooling process, then returns to the Coolant Compressor (6) and work cyclically.

 

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Adsorption Air Dryer

Adsorption Air Dryer
  • Adsorption Air Dryer
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Approx. Price: Rs 48,000 / PieceGet Latest Price

Product Details:

Minimum Order Quantity1 Piece
Noise Level70 dB
Voltage230 V,AC
Drying Capacity>1000 cfm
Minimum Output Dew Point-40 C
Maximum Pressure14 bar

Workflow of the Heatless Regenerative Adsorption Dryer
Heatless Regenerative Adsorption Dryer utilizes pressure swing adsorptive regeneration cycle to force the air flow through A and B drying cartridges which are full filled with adsorbent. While one cartridge is absorbing water vapor under high pressure (working pressure), the other one is decomposing under low pressure (atmospheric pressure). This process is switched with a presetting program.
Adsorption--- The The moist air flows into drying cartridge A through valve A1 in downstream pipe, and flows downside to upside through the adsorbent layer, then the dried air is exhausted from the upstream pipe. e swing adsorptive regeneration cycle to force the air flow through A and B drying cartridges which are full filled with adsorbent. While one cartridge is absorbing water vapor under high pressure (working pressure), the other one is decomposing under low pressure (atmospheric pressure). This process is switched with a presetting program
Regeneration--- Part of the dried air (around 10%) will flow into the drying cartridge B via the regenerated air regulating valve in the upstream pipe. The depressurized dry air is called regenerated air, which decomposes and regenerates the adsorbent in cartridge B from upside to downside, so as to regain its adsorbent ability. The regenerated air will be exhausted into the atmosphere via the valve B2 and silencer in the downstream pipe.
Pressure balance--- Once the adsorbent regeneration is completed, the valve B2 is switched off. The pressure in drying cartridge B will then gradually rise to the online working pressure and get ready to correct switch.
Switch--- The valve B1 in downstream pipe is opened with valve A1 closed, valve A2 opened. The drying cartridges A and B finish switching, while cartridge B is adsorbing, cartridge A is depressurizing and regenerating. The working sequence and working time are automatically controlled by the controller.
 
Workflow of the Low-heat Regenerative Adsorptive Dryer
The Low-heat Regenerative Adsorption Dryer integrates the advantage of both pressure swing adsorption and moisture swing adsorption, adsorbs under normal temperature and high vapor pressure, decomposes and regenerates under comparatively high temperature and low vapor pressure. The moisture from the adsorbing process is totally eliminated via the heat diffusion and low pressure effect of the regenerated air (the heated dry air).
Adsorption--- The The moist air flows into drying cartridge A through valve A1 in downstream pipe, and flows downside to upside through the adsorbent layer, then the dried air is exhausted from the upstream pipe. e swing adsorptive regeneration cycle to force the air flow through A and B drying cartridges which are full filled with adsorbent. While one cartridge is absorbing water vapor under high pressure (working pressure), the other one is decomposing under low pressure (atmospheric pressure). This process is switched with a presetting program
Regeneration--- Part of the dried air (around 10%) will flow into the drying cartridge B via the regenerated air regulating valve in the upstream pipe. The depressurized dry air is called regenerated air, which decomposes and regenerates the adsorbent in cartridge B from upside to downside, so as to regain its adsorbent ability. The regenerated air will be exhausted into the atmosphere via the valve B2 and silencer in the downstream pipe.
Pressure balance--- Once the adsorbent regeneration is completed, the valve B2 is switched off. The pressure in drying cartridge B will then gradually rise to the online working pressure and get ready to correct switch.
 
 

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Deepak Rohilla (Proprietor)
Hindustan Pneumatics
Khasra No. 756, Ghevra
Mundka, New Delhi - 110081, Delhi, India
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