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Home Catalogue Steam equipment Fabricated Packaged Units & Skids ADCAMat® Electric condensate recovery unit ADCA ECRU (ATEX design) with full stainless steel construction

Specifications

  • Application

    hot condensate

  • Material

    Condensate vessel material – Stainless steel,
    Metal frame – Fabricated stainless steel,
    Pipework, valves and ancillaries – Stainless steel

  • Max. operating temperature

    hot condensate up to 98 ºC

  • Vessel capacity

    Max.: up to 850 liters,
    Min.: from 225 liters

  • Delivery head

    Max.: up to 30 metres,
    Min.: from 10 metres

  • Max. flow rate

    2 m³/h (with 225L vessel) and 10 m delivery head,
    4 m³/h (with 225L vessel) and 10 m delivery head,
    10 m³/h (with 600L vessel) and 10 m delivery head,
    10 m³/h (with 600L vessel) and 20 m delivery head,
    10 m³/h (with 600L vessel) and 30 m delivery head,
    20 m³/h (with 600L vessel) and 10 m delivery head,
    30 m³/h (with 850L vessel) and 10 m delivery head,
    30 m³/h (with 850L vessel) and 20 m delivery head.

  • Electric pumps

    Two pumps in stainless steel (3~ 380 to 415 V, 50 Hz),
    Single pump in stainless steel (non standard) (3~ 380 to 415 V, 50 Hz)

  • Control panel

    Control panel with stainless steel enclosure, magnetic level indicator, bi-stable switches and wiring

ADCAMat® Electric condensate recovery unit ADCA ECRU (ATEX design) with full stainless steel construction

Product code: EC225ID2T10IIIT

Available on request

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ADCAMat® Electric condensate recovery unit ADCA ECRU (ATEX design) with full stainless steel construction

The ADCAMAT ECRU series electric condensate recovery units are recommended in the transfer of high-temperature water such as hot condensate, to a higher elevation or pressure. This condensate is usually used as boiler feedwater. The standard models are prepared for flows up to 30 m³/h, or higher on request. The units are composed of an horizontal condensate vessel (receiver), a metallic support frame, electric pumps, level controls, valves, prewired control panel and pipework for connections between the different elements of the units.

OPERATION

The condensate is brought into the vessel through the inlet connections, with stainless steel sparge pipes, located on the top of the vessel. As the condensate level rises it will trigger the level control system to start the pumping process. In normal operating conditions, the pumps will work in alternating mode, which means they will alternate duty at the end of each cycle. In the event of a peak load, the level will continue rising eventually triggering the cascading switch which will make both pumps work simultaneously to relieve this peak demand.

MAIN FEATURES

Condensate vessel – Completely manufactured from AISI 316 stainless steel or carbon steel, with inlet connections, overflow, air vents, drain, pump feeding outlets and a magnetic level indicator with bi-stable switches.

Pipework, valves and ancillaries – Includes full bore ball valves at the pump suction ports, manual regulating valves for system head regulation at the pumps discharge, pipework, strainers and pressure gauges. Metal frame – Manufactured from structural steel (sandblasted and painted) or stainless steel (sandblasted).

Pumps – Manufactured from cast iron or stainless steel, capable of handling hot condensate up to 98 ºC and designed for low NPSH.

Control panel – Metal enclosure rated to IP 65 or higher. Features alternating and cascading (simultaneity) functions,

pump fault indication for each pump, low and high-level alarms, pump dry run inhibitor, operating mode selector switch

and volt-free telemetry terminals for remote stats. The unit requires a 3 phase, 380 to 415 V AC, 50 Hz power supply.

OPTIONS

Thermal insulated vessel.

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