Pressure tanks can be coupled to water pumps (surface or submersible) to provide a self-contained pressurised supply for direct connection into an existing piped system without the need for header tanks or float switches.
Pressure Tanks
Tank Size Ltr | Price (Bare Tank) | Control System |
24ltr Horizontal | £65.00 | £140.00 |
60 ltr Horizontal | £215.00 | £140.00 |
100 ltr Horizontal | £265.00 | £140.00 |
200 ltr Horizontal | £465.00 | £140.00 |
300 ltr Horizontal | £565.00 | £140.00 |
8 ltr Vertical | £50.00 | |
24 ltr Vertical | £65.00 | |
60 ltr Vertical | £215.00 | £140.00 |
100 ltr Vertical | £265.00 | £140.00 |
200 ltr Vertical | £465.00 | £140.00 |
300 ltr Vertical | £565.00 | £140.00 |
500 ltr Vertical | £795.00 | £140.00 |
Call to enquire 01769 579487
Download Product Specification PDF
Description
100, 200 & 300 litre tanks normally supplied in horizontal form. Vertical form available on request. 500 ltr tanks available in vertical form only.
A larger tank provides a greater reserve of water stored under pressure to cope with peak demands and will minimise the on/off switching rate of the pump.
Tank Size Ltr | Max Pressure | Connection size | H (mm) | W (mm) | L (mm) |
24 ltr Horizontal | 8 bar | 1″ | 300 | 320 | 350 |
60 ltr Horizontal | 8 bar | 1″ | 410 | 370 | 670 |
100 ltr Horizontal | 8 bar | 1″ | 485 | 450 | 756 |
200 ltr Horizontal | 8 bar | 1.5″ | 602 | 550 | 825 |
300 ltr Horizontal | 8 bar | 1.5″ | 654 | 640 | 1188 |
8 ltr Vertical | 16 bar | 1″ | 300 | 200 | |
24 ltr Vertical | 8 bar | 1″ | 330 | 370 | |
60ltr Vertical | 8 bar | 1″ | 825 | 379 | |
100 ltr Vertical | 8 bar | 1″ | 910 | 450 | |
200 ltr Vertical | 8 bar | 1.5″ | 1250 | 554 | |
300 ltr Vertical | 8 bar | 1.5″ | 1370 | 624 | |
500 ltr Vertical | 8 bar | 1.5″ | 1460 | 775 |
Control Systems Include:
- Pressure switch
- Pressure gauge
- Non return valve
- Isolating valve
Basic systems have a single outlet but can also be supplied with 2,3 or 4 way manifolds. Tank air pressure must be checked regularly and topped up if necessary. Failure to do so could result in damage to the membrane and/or pump.
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