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PowerMX3 1350 kVA Stage V Tri Engine Generator

The PowerMX3 is unique to Aggreko, housing three 450 kVA Stage V engines, housed in 20 ft ISO container. The PowerMX3 offers power flexibility, efficiency and resilience. The intelligent design means it can seamlessly switch between single, twin or tri engine modes, enabling each engine to run independently, load share, operate as load on demand or as a standby package – maximising fuel efficiency. With Stage V certification, the PowerMX3 meets the latest emission requirements, it is also fully compatible with alternative fuels such as HVO. Designed for rapid deployment and scalability, it is suitable for a range of uses, from smaller scale standby packages to multi MW installations.

Equipment shown may not be representative of equipment currently available.

100% prime power 50 Hz - 256 l/hr
75% prime power 50 Hz - 198 l/hr
50% prime power 50Hz - 124 l/hr
Sound Pressure at 7M 88 dBa
Length (m) 6.1 m
Width (m) 2.44 m
Height (m) 2.93 m
Weight (kg) 19,506 kg
NOx (Oxides of Nitrogen) 0.252 g/kWh
PM (Particulate Matter) 0.013 g/kWh
CO (Carbon Monoxide) 0.001 g/kWh
HC (Unburnt Hydrocarbons) 0.007 g/kWh
Information to be used as a guide, full specification data please contact us.

Features

  • 3 x 450 kVA engines in a 20 ft ISO Container 
  • Low load efficiency 
  • Load on demand proficiency and automated rightsizing 
  • Stage V certified 
  • Single, twin or tri engine mode
  • Independent engine operation
  • Power granularity 
  • Approved for diesel, HVO, GTL and B10 alternative fuels 
  • Long service intervals 
  • Variable speed cooling and ventilation fans 
  • Fuel efficiency 
  • Bespoke coolant pack 
     
 

Benefits

  • Excellent power density, containerised design ensures fast deployment 
  • PowerMX3 runs efficiently even at lower loads 
  • Effective load on demand solution that rapidly and efficiently responds to the required power demand, minimising both fuel and emissions whist maximising performance.
  • Suitability for environmentally sensitive projects due to reductions in emissions such as HC, PM, and NOx 
  • Flexible power to adapt to running engines independently or load sharing, base load and co-generation operation modes
  • Ability to run engines independently ensures maximum resilience in case of singular engine failure   
  • Ability to adjust output in tight increments for applications requiring precise control 
  • Keeps emissions to a minimum including CO2 intensity
  • Longer service intervals with approximately 250 extra hours than a standard generator set
  • Improves operation, enables increased power density and reduces noise at lower loads and in lighter ambient conditions 
  • Reduced fuel consumption over most non-emissioned gen sets of comparable power ratings
  • High efficiency air flow system for improved thermal performance
     
 
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