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Air Separation Plants produce oxygen and nitrogen, often with argon as a byproduct.
Cryogenic air separation entails compressing air with a large centrifugal compressor, removing moisture and CO2 by adsorption or through reversing heat exchangers, cooling down the incoming air to near its liquefaction temperature against exiting oxygen and nitrogen, and separating the air by fractional distillation. An expansion turbine provide refrigeration by extracting mechanical energy from a high pressure stream. Cryogenic air separation is the only means to attain high purities and recoveries.
EPSIM provides technical and engineering consulting services worldwide, including:
Hydrogen is emerging as the fuel of choice for the carbon reduction of stationary and vehicular power generation. Hydrogen presents challenges with safety, handling, and storage.
EPSIM puts at your service its expertise, including cryogenic process engineering, reformer and electrolyzer processes, bulk storage, risk assessments, IEC 60079-10 zone classification for onshore and maritime regulatory compliance.
We offer project feasibility studies to help clients assess the viability of their engineering projects. We provide valuable insights and recommendations to help clients make informed decisions about their projects.
Combining 35 years of practical experience and process modeling capabilities, EPSIM provides specialty Cryogenic and Process engineering services to customers around the world: