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cryogen-30-liquid-nitrogen-generator

CRYOGEN.30

SMART & CLEVER Liquid Nitrogen Generator
cryogen-30-ra-liquid-nitrogen-generator

CRYOGEN.30-RA

SMART & CLEVER Liquid Nitrogen Generator
calypso-m-nitrogen-generator

CALYPSO M

Membrane Technology
calypso-2g-br-nitrogen-air-generator

ZEPHYR

Haute pureté - Technologie PSA
deimos-uza-ultra-zero-air-generator

DEIMOS UZA

H2O, HCS free
deimos-toc-free-air-generator

DEIMOS TOC

H2O, CO2, HCS free
 TOC
z-prospero-nitrogen-air-generator

PROSPERO

High Purity - PSA Technology
themisto-mp-nitrogen-air-generator

THEMISTO MP

PSA Technology
cryogen-40-ra-liquid-nitrogen-generator

CRYOGEN.40-RA

SMART & CLEVER Liquid Nitrogen Generator
cryogen-65-liquid-nitrogen-generator

CRYOGEN.65

SMART & CLEVER Liquid Nitrogen Generator
calypso-dp-th-nitrogen-generator

CALYPSO DP.TH

For Thermo - Double Different Purities
test

CALYPSO

PSA Technology
calypso-dp-ag-nitrogen-generator

CALYPSO DP.AG

For Agilent 6400 & 6500 - Double Different Purities
calypso-dp-wa-nitrogen-generator

CALYPSO DP.WA

For Waters ESI/APGC - Double Different Purities
calypso-ds-nitrogen-generator

CALYPSO DS

Double Step PSA Technology
calypso-ds-hp-nitrogen-generator

CALYPSO DS.HP

Double Step PSA High Pressure Technology
calypso-duo-nitrogen-generator

CALYPSO DUO

PSA Technology - Two Nitrogen outlet
celeno-nitrogen-generator

CELENO

PSA Technology
non-contractual-photo-jpg

COSMOS N2.M

Standard Purity - Membrane Technology - Up to 35 L/min

Compressed Air Quality

The compressed air is formed by compressing the ambient air. During this process, substances are taken with the ambient air and during the compression and delivery of the air, other substances are added.

compressed-air-quality

International ISO Standards ISO 8573.1 for compressed air is classified in 3 main component of the air: solid, water and oil.

SOLID
WATER
OIL
CLASS
Maximum particle size
Maximum concentration size
Maximum pressure Dewpoint
Maximum concentration size
Micron
ppm
(mg/m3)
°C
(°F)
ppm
(mg/m3)
1
0.1
0.08
(0.1)
-70
(-94)
0.008
(0.1)
2
1
0.8
(1)
-40
(-40)
0.08
(0.1)
3
5
4.2
(5)
-20
(-4)
0.83
(0.1)
4
15
6.7
(8)
+3
(+37)
4.2
(0.1)
5
40
8.3
(10)
+7
(+45)
21
(0.1)
6
+10
(+50)

3-main-component-of-the-air

  • At the outlet of the compressor the air is saturated with water vapors which can reach 116°C. The air cools with the room temperature in the distribution lines and water condenses throughout the air distribution system. About 2/3 of the total water content of the air will be condensed when the air has cooled to 38°C. A condensate drain on the Air buffer will remove most of the water load from the system, additional filter located after the vessel will protect instrument after the tank. By adding a fridge dryer and filters located at end-use points which will be required to remove water condensed downstream from the main line filter, you will reach an air class 2.4.2 with a lubrificated compressor and 1.4.1 class with a non lubrificated compressor, which will be enough for certain application.
  • The source of oil in compressed air is the compressor lubricant. To remove oil vapor from the air you can add an adsorption dryer after the fridge dryer with filtration adapted: just like water vapor, oil vapor will condense to liquid when the temperature reduced or the air pressure is increased at constant temperature. You can add also active carbon filter for residual oil vapor.
  • To protect refrigerated dryer, you will need to use a coalescing pre filter to prevent oil and condensed water from entering the dryer. Oil entering dryer coats the cooling coil and reduces its efficiency, condensed water increases the cooling load and reduce dryer capacity.
  • Desiccant dryer are very sensitive to water and oil droplets: water can saturate the desiccant and reduce its drying efficiency or even destroy it. Oil can coat the desiccant, rending it ineffective, that’s why it is always installed after adapted filtration and fridge dryer.
  • Membrane dryers are sensitive to water and oil droplets. Oil can permanently damage the hollow fiber core. That’s why it’s always important to change filters, once per year. The filter cartridge can continue to coalesce indefinitely, but solids loading in the depth of the cartridge will cause a pressure drop. The element should be changed when the pressure drop reach 10 psi.
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