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Fixed speed liquid ring vacuum pumps

The pump that does not mind if your process is wet and dirty.

Technical data

Working pressure
33 – 160 bar g
Motor power
2 – 447 kW
Weight
37 – 8,930 kg
Fixed speed liquid ring vacuum pumps

Overview

A ring of liquid spinning inside the housing does the sealing and the compressing. Because the pumping element is liquid, the pump can swallow water, vapour, slugs of condensate and a fair amount of dirt without any damage.

That is why liquid ring pumps dominate paper mills, sugar plants, chemical works and anywhere a process throws liquid at the vacuum system.

Key benefits

Handles liquid carry-over

Slugs of condensate pass straight through. No other pump type tolerates this.

Isothermal compression

The liquid absorbs the heat, so the pump runs cool and is safe on flammable vapour.

Very few wearing parts

One rotating assembly with generous clearances.

Closed-loop options

Recirculation systems available where sealing water cost or disposal is an issue.

How it is built

A ring of liquid spinning inside the housing does the sealing and the compressing. Because the pumping element is a liquid, the pump can swallow water, vapour and slugs that would stop a dry pump within minutes.

There is no dry rubbing contact anywhere and no oil in the gas path. The gas is cooled and washed as it passes through, which is why this design survives duties nothing else will take.

Materials are chosen for the process rather than for the catalogue. On corrosive duty the whole wetted path is specified, not just the impeller.

  • Liquid ring seals and compresses
  • Takes water, vapour and slugs
  • No dry contact and no oil in the gas path
  • Gas cooled and washed in passing
  • Once through, partial or closed recovery
  • Corrosion resistant materials available
  • Very tolerant of difficult processes
  • Continuous duty rated

Controls and monitoring

Seal liquid flow and temperature are the two readings a liquid ring pump lives on, and they are the two most often left unmonitored.

Loss of seal liquid damages the pump quickly, so it is interlocked rather than merely alarmed. The pump stops instead of running dry.

Vacuum level and motor load complete the picture. Together they show whether the pump is still doing the duty it was selected for.

  • Seal liquid flow and temperature monitored
  • Loss of seal liquid interlocked, not just alarmed
  • Vacuum level and motor load shown
  • Recovery system condition monitored
  • High temperature alarm
  • Service countdown in hours
  • Volt free contacts for plant alarms
  • Remote monitoring available

Parts and service

Seals, bearings and the wetted parts, with the interval set by the process rather than by the calendar. Two identical pumps on different duties do not wear alike.

Water quality decides life on this design. Scale and solids in the seal liquid wear the pump far faster than the process gas ever will, which is why the recovery system is part of the service.

We record achieved vacuum and motor load at every visit, so a decline is a number rather than an impression.

  • Seal and bearing kits by interval
  • Intervals set by the process
  • Recovery system serviced with the pump
  • Seal liquid quality checked
  • Achieved vacuum recorded at every service
  • Corrosion resistant spares where fitted
  • Held in local stock
  • Fixed price under a service plan

Model range

GAC-LR 0030 B1.5 kW / 2.0 hp
33 mbar
31 m³/h
Weight
37 kg
Dimensions L x W x H
369 x 200 x 250 mm
GAC-LR 0063 A4.0 kW / 5.4 hp
33 mbar
65 m³/h
Weight
77 kg
Dimensions L x W x H
664 x 250 x 320 mm
GAC-LR 0140 C4.0 kW / 5.4 hp
33 mbar
120 m³/h
Weight
92 kg
Dimensions L x W x H
568 x 330 x 347 mm
GAC-LR 0180 C5.5 kW / 7.4 hp
33 mbar
144 m³/h
Weight
112 kg
Dimensions L x W x H
564 x 330 x 374 mm
GAC-LR 0260 C7.5 kW / 10.0 hp
33 mbar
239 m³/h
Weight
145 kg
Dimensions L x W x H
635 x 365 x 402 mm
GAC-LR 0355 A15 kW / 20.0 hp
33 mbar
400 m³/h
Weight
183 kg
Dimensions L x W x H
958 x 300 x 472 mm
GAC-LR 0435 A19 kW / 25.0 hp
150 mbar
500 m³/h
Weight
159 kg
Dimensions L x W x H
857 x 300 x 520 mm
GAC-LR 0726 A40.2 – 49.6 hp
33 mbar
770 m³/h
Weight
278 kg
Dimensions L x W x H
1166 x 400 x 470 mm
GAC-LR 0890 A224 kW / 300.0 hp
160 mbar
8900 m³/h
Weight
3880 kg
Dimensions L x W x H
2370 x 1330 x 1865 mm
GAC-LR 1207 A56 kW / 75.0 hp
33 mbar
1380 m³/h
Weight
600 kg
Dimensions L x W x H
1432 x 610 x 750 mm
GAC-LR 1757 A93 kW / 125.0 hp
33 mbar
2000 m³/h
Weight
770 kg
Dimensions L x W x H
1682 x 610 x 750 mm
GAC-LR 1910 A447 kW / 600.0 hp
160 mbar
19100 m³/h
Weight
8930 kg
Dimensions L x W x H
2732 x 1785 x 2560 mm
GAC-LR 3809 A120 – 177 hp
130 mbar
3400 – 3800 m³/h
Weight
2030 kg
Dimensions L x W x H
1665 x 800 x 1400 mm
GAC-LR 5109 A147.5 – 201.2 hp
130 mbar
4400 – 5100 m³/h
Weight
2150 kg
Dimensions L x W x H
1790 x 800 x 1400 mm

FAD measured to ISO 1217 Edition 4, Annex C and E at 1 bar a intake, 20°C, 0% humidity. Noise measured to ISO 2151 in free field conditions, tolerance ± 3 dB(A). Water-cooled versions of every model are available. Ask us for their sheet.

Frequently asked questions

How does a liquid ring pump work?

An off-centre impeller spins a ring of liquid, usually water, inside the casing. The moving liquid forms the sealing and compression surface.

What makes it different?

There is no dry rubbing contact and no oil. Because the gas is cooled and washed by the liquid, it copes with things that destroy other pumps.

What can it handle that others cannot?

Wet, dirty, corrosive and vapour-laden gas. If your process carries slugs of liquid or condensable vapour, this is usually the right technology.

What vacuum does it reach?

Limited by the vapour pressure of the service liquid: about 33 mbar with water at 20 °C. Colder water gives deeper vacuum, warmer water less.

Why does water temperature matter so much?

Because the water boils in the pump if the vacuum approaches its vapour pressure. A rise of a few degrees can visibly lose you vacuum.

How much water does it use?

Once-through systems use a lot. Partial or full recirculation with a heat exchanger cuts that dramatically and is normal on new installations.

Can it use something other than water?

Yes, oil or a process-compatible liquid where water would react or contaminate. The choice affects both vacuum level and materials.

What maintenance does it need?

Very little mechanically: seals, bearings and impeller clearance. The real maintenance is water quality, because scale and fouling do the damage.

Is it efficient?

Less efficient than dry technologies in energy terms. You accept that in exchange for tolerating gas that would wreck anything else.

Where is it most used?

Paper, sugar, food, chemical processing, power station condenser evacuation and anywhere the gas is genuinely wet.

Related products

Not sure which model you need?

Send us your air demand, working pressure and running hours. Our engineers will size the machine and send a written recommendation, no cost, no obligation.