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SEMA side channel pump: specialist for the safe pumping of ammonia NH3
SERO PumpSystems GmbH

SEMA side channel pump: specialist for the safe pumping of ammonia NH3

The SEMA-S product series offers a variant that is specialized in the conveyance of ammonia NH3 - among other things through the appropriate material design and the leak-proof seal variant using a magnetic drive.

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Reliable pumping of low flow rates at high differential heads is the core competence of SERO PumpSystems, the recognized technology leader of side channel pumps. SERO‘s Model SEMA-S is a sealess, magnetically driven pump designed for the safe conveyance of ammonia and many other volatile process fluids. The leak-proof “mag-drive” sealing arrangement guarantees a high level of reliability and safety. The SEMA-S has extremely low NPSH requirements as well as high entrained gas capabilities to ensure maximum operational functionality. Pump users and operators will also benefit from SERO‘s modular design principle allowing for optimal adaptation of flow and head conditions.

For pumping services involving ammonia, a strong-smelling, toxic, colorless, water-soluble liquid, the SEMA-S sealless design provides a safe, environmentally sound solution. Depending upon the type of ammonia, aqueous or anhydrous, the materials of construction can be either ductile iron or all stainless steel.

The sealless magnetic coupling design eliminates the use of mechanical seals in the pump and the inherent problem of seal leaks and the release of fugitive emissions. Safety is greatly enhanced along with increased reliability.

The mag coupling creates contactless torque transmission from the motor to the pump via permanent magnets attached to the motor shaft and the pump shaft. A containment can separates the magnets and enables the pump to be completely sealed off from the surrounding environment. The corrosion resistant sealless mag drive system ensures zero-leakage!
A service where the SEMA-S can be utilized is pumping ammonia where the ammonia acts as a transport medium for hydrogen. Given the rapid development of fuel cell technology, this application will gain new significance. The SEMA-S hydraulic flow range of 0.3 m3/hr to 42 m3/hr with pressures up to 40 bar fits nicely into the fuel cell design criteria.

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