Compressed Air & Gas Dryers
Heatless Desiccant Dryer
Bone-dry air down to −70 °C, with no heater, no hot surfaces and, if you need it, no electricity at all.

Product overview
Deep, dry air wherever you need it, with no heat
Our heatless desiccant dryer takes the water vapour out of your compressed air by pressure swing adsorption. It delivers pressure dew points of −20 °C, −40 °C or −70 °C, and regenerates its desiccant with a share of its own dried air, without heaters, blowers or steam.
Two towers of desiccant take turns: one dries your air while the other is regenerated, and they swap every few minutes, so drying never stops and your outlet dew point holds steady whichever tower is in service. At −40 °C, the air leaving carries less than 0.25 % of the water vapour that entered.
Drying and regeneration both run close to ambient temperature, so the dryer has no hot surfaces and draws very little power, and pneumatically operated versions need no electricity at all. That suits it to hazardous areas, offshore platforms, rolling stock, remote sites and drying right beside a single machine.
- −70 °CLowest pressure dew point
- Class 1ISO 8573-1:2010 water class at −70 °C
- 99.77 %Of the water vapour removed at −40 °C
- ZeroHeating energy for regeneration
Benefits
The problems it solves
Compression packs the water from eight cubic metres of air into one, and the air leaves your aftercooler saturated. Here is what that water does to a plant, and how the dryer stops it.
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Rust in your pipework
The problem
Rust flakes block orifices, jam valve spools and score cylinder bores.
How it solves it
Air at −40 °C pressure dew point has a relative humidity of under 1 % at any pipe temperature above 0 °C, so internal rust stops forming.
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Ice in the cold
The problem
Ice blocks outdoor instrument lines, rail brake systems and air lines that pass through cold stores.
How it solves it
−40 °C and −70 °C pressure dew points keep outdoor piping, cold-store lines and moisture-sensitive processes free of condensate and ice.
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Heat where it isn’t allowed
The problem
Hazardous areas limit surface temperatures and prohibit electrical ignition sources, and offshore and remote sites have little space or power.
How it solves it
With no hot surfaces and optional pneumatic operation, the dryer can be installed in ATEX and IECEx zones, drawing typically tens of watts, or none at all.
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Microbes in your air
The problem
Wherever air touches food or medicines, moisture lets microorganisms multiply in the network.
How it solves it
−40 °C pressure dew point is below the −26 °C threshold for microbial growth and meets BCAS Class 2 for air in direct contact with food.
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Drains all over the plant
The problem
Drip legs, point-of-use drains and sloped runs collect condensate, and lose compressed air as they do.
How it solves it
A network carrying air at −40 °C needs none of them, and the dryer itself has no drain connection.
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Dew point upsets
The problem
Brief overloads, inlet temperature spikes and start-up after a shutdown can push wet air downstream.
How it solves it
Short cycles keep the moisture front well inside the bed, and after start-up or an upset the dryer returns to its specified dew point within a few cycles.
Where it’s used
Where deep, dry air has to be simple and safe
From instrument air in hazardous zones to air that touches food, medicines and paint, a heatless dryer brings deep dew points wherever your air needs them.
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Food and beverage
Class 2:2:1 air for direct food contact under BCAS Guideline 102, and conveying of milk powder, sugar, flour and cocoa without caking.
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Pharmaceuticals and healthcare
Tablet coating, fluid-bed granulation and capsule filling, and medical air within the European Pharmacopoeia limit of 67 ppm v/v water.
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Automotive and surface finishing
Spray painting, powder coating and abrasive blasting, which all fail when moisture is present.
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Plastics
PET preform blowing at 30–40 bar g, and dry air for hygroscopic resins such as PA, PC and PET.
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Chemicals
Reactor blanketing and handling of moisture-reactive materials such as isocyanates.
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Power generation
Instrument air for dampers and valve operators, and dry air for high-voltage switchgear with pneumatic operating mechanisms.
Also instrument air in oil, gas, refining and petrochemical plants, including ATEX and IECEx zones, electronics and semiconductors at −70 °C, feed air for nitrogen and ozone generators, rail brake air, portable compressors in mining and tunnelling, laboratories and cold stores.
How it works
Dry, vent, purge, swap
While one tower dries your air at line pressure, the other is vented to atmosphere and swept with a little of the dry air. Expanded to atmospheric pressure, that air is dry enough to strip the water off the desiccant.
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1. AdsorbWet air enters the bottom of Tower A and rises through the desiccant, which adsorbs its water vapour. Dry air leaves the top of the tower for your network.
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2. DepressuriseTower B’s inlet closes and its exhaust opens. The tower vents from line pressure to near atmospheric pressure within seconds, and the sudden pressure drop starts desorption.
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3. PurgeA metered flow of dry air from the top of Tower A expands to atmospheric pressure, flows down through Tower B collecting the released water, and leaves through the silencer. Purge typically takes 14–20 % of rated flow at 7 bar g.
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4. RepressuriseTower B’s exhaust closes, and purge air raises it back to line pressure, typically over 30–60 seconds, so the changeover causes no pressure dip or dew point spike.
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5. Change overTower B takes over drying, and Tower A depressurises and regenerates. For −40 °C a typical cycle lasts 10 minutes, and for −70 °C it is commonly shortened to 4 minutes.
Typical figures for −40 °C pressure dew point at 7 bar g, with a 10-minute cycle.
Get the full details
Our brochure covers it in detail, and our questionnaire tells us what we need to recommend the right one for your plant.
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Dew Point Meter
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Pressure Sensor
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Health Testing of Compressed Air & Gas Dryers
Measured proof your dryer delivers its rated dew point.
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Commissioning and Service of Compressed Air & Gas Dryers
Verified dew point from first start-up through your dryer's service life.
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Compressed Air Quality Testing
Measured, documented proof of your compressed air purity class.
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Dew Point Measurement Testing
Verified pressure dew point at the points that matter in your network.
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Compressed Air Flow Testing
Measured air demand, leakage and cost for your plant, not estimates.
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Wall Thickness Testing
Know the remaining wall, corrosion rate and safe life of your equipment.
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Sourcing
Spares, consumables and whole systems for your plant, sourced globally.
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