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4A Molecular Sieve

Sodium A-type zeolite with 4 Å pores that adsorbs water, CO2 and H2S, used for natural gas, air and refrigerant drying.

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4A Molecular Sieve specifications

PropertyUnitBead Ø1.6–2.5 mmBead Ø3.0–5.0 mmPellet 1/16"Pellet 1/8"Test condition
Static water adsorption% wt≥ 22.5≥ 22.5≥ 22.5≥ 22.5RH 75%, 25 °C
Bulk densityg/ml≥ 0.74≥ 0.72≥ 0.66≥ 0.66Tapped
Crush strengthN≥ 40≥ 80≥ 40≥ 80Avg. of 25 beads
Loss on attrition% wt≤ 0.10≤ 0.10≤ 0.20≤ 0.30—
Loss on ignition% wt≤ 1.5≤ 1.5≤ 1.5≤ 1.5550 °C, 1 h
Particle size ratio%≥ 97≥ 99——In stated size range
Typical values. Each lot ships with a COA.

Where is 4A Molecular Sieve used?

4A molecular sieve is the standard desiccant for drying natural gas, air, refrigerants and solvents, and for removing low levels of CO₂ and H₂S.

Natural gas dehydration

Dries gas below 0.1 ppmv water ahead of LNG and NGL units.

Read the application guide →

Compressed air drying

Reaches −70 °C pressure dew point in desiccant dryers.

Read the application guide →

Air brake dryers

Keeps truck and rail air-brake systems free of moisture.

Refrigerant & solvent drying

Removes water from refrigerants, solvents and liquid hydrocarbons.

4A Molecular Sieve vs other adsorbents: which do you need?

Choose 4A for general drying; switch to 3A when product molecules such as ethanol or olefins would co-adsorb, and to 13X when H₂O and CO₂ must be removed together at higher capacity.

GradePoreAdsorbsTypical use
3A3 ÅH₂O onlyEthanol, olefins, insulating glass
4A (this product)4 ÅH₂O, CO₂, H₂SNatural gas, air, refrigerant drying
5A5 Ån-paraffins, CO, CO₂PSA hydrogen, paraffin separation
13X≈ 10 ÅH₂O + CO₂ together, mercaptansGas sweetening, purification

What is 4A Molecular Sieve?

4A molecular sieve is a synthetic sodium A-type zeolite (NaA) with a uniform 4 Å pore opening that adsorbs molecules smaller than 4 Å, above all water.

Type

Sodium A-type zeolite

Adsorbs

H₂O, CO₂, H₂S, NH₃, C₂H₆

Excludes

Propane and larger hydrocarbons

How does 4A Molecular Sieve work?

Water and other small polar molecules enter the 4 Å pores and are held by the sodium cations, while larger molecules pass through the bed.

  • Wet feed enters the bed — gas or liquid flows through packed 4A beads or pellets.
  • Water is adsorbed in the pores — outlet moisture falls to ppm level.
  • Dry product leaves the bed — the bed is switched to regeneration before water breaks through.

When should you use 4A Molecular Sieve?

Use 4A whenever you need deep drying of a gas or liquid whose main components are larger than 4 Å and no special selectivity is required.

  • Target dew point is below what glycol or refrigerated dryers can reach.
  • Feed is natural gas, air, refrigerant or a solvent.
  • Small amounts of CO₂ or H₂S should come out with the water.

How do you regenerate 4A Molecular Sieve?

Regenerate 4A by heating the bed with dry purge gas, typically at 250–290 °C, then cooling it before it returns to service; in heatless dryers it is regenerated by pressure swing.

Temperature

250–290 °C

Purge gas

Dry product gas or N₂

Bed life

3–5 years


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