Compact compressor ICL
centrifugalair and dry gaselectric

compact compressor
compact compressor
compact compressor
compact compressor
compact compressor
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Characteristics

Technology
centrifugal
Type
air and dry gas
Power source
electric
Portability
stationary
Applications
precision, for offshore applications
Other characteristics
compact, low-noise, high-efficiency, small, electric
Pressure

300 bar
(4,351.13 psi)

Flow

Min.: 500 m³/h
(17,657.33 ft³/h)

Max.: 40,000 m³/h
(1,412,586.67 ft³/h)

Power

Min.: 4,000 kW
(5,438.48 hp)

Max.: 16,000 kW
(21,753.94 hp)

Description

Compact motocompressor (single or multistage configuration) for limited spaces Benefits Zero emissions because there is no oil lubrication, no venting, and no seal leakage High, stable efficiency over wide operating range: 35-105% of nominal speed vs. 70-105% of typical compressors Exceptional reliability and availability with a 10-year maintenance interval in clean gas applications Features Motor and compressor are directly flanged and fully integrated in a single sealed casing with no alignment needed Compact configuration saves up to 60% in space and footprint Magnetic bearings ensure frictionless shaft support, eliminating lubricant and minimizing maintenance Applications Pipeline, gas storage, gas gathering Small-scale LNG Onshore and offshore associated gas compression Overview The field-proven ICL zero-emissions integrated compressor combines high-technology components in a simple, robust, and easy-to-operate system that's emission-free and particularly advantageous for applications where high efficiency, small footprint, and low noise are important. The design draw on more than 100 years of experience and innovation to deliver proven performance for clean gas and mild sour gas applications—in the upstream, midstream, and downstream segments. Complies with the most stringent environmental regulations The ICL zero-emissions integrated compressor is a centrifugal compressor directly driven by a high-speed motor, with both arranged in a common pressurized casing. This architecture eliminates leakage and avoids, on average, 40,000 m3 of methane emissions per year.

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