SURE process oxidizes sour gas to recover sulfur and compress carbon dioxide for enhanced oil recovery.
A centrifugal separator uses a radial fan to separate particles from fluid effluent streams.
An interlocking filter bank connects units via a one-piece flexible locking mechanism, preventing airflow bypass and enabling quick assembly.
Oxidation catalyst converts NO to higher order NxOy molecules for solvent absorption, eliminating ammonia reactant injection costs.
A cyclone separator extracts cooling liquid droplets from machine tool mist via centrifugal force, enabling fluid recirculation and air purification.
Selective sulfur dioxide recirculation via scrubber reduces PCDD/F emissions without lowering combustion temperature.
A cyclonic particle separator uses tangentially oriented apertures to impart rotational velocity on incoming gas streams for efficient filtration.
A chilled ammonia capture system uses two absorbers operating at distinct temperatures to remove carbon dioxide from flue gas streams.
A honeycomb filter uses crosslinked spherical ceramic particles to form a robust three-dimensional network structure on cell walls.
Composite polyurethane end discs with embedded reinforcement plates maintain sealing reliability under extreme temperature fluctuations and vibrations.
A coalescing filter assembly uses a weephole to seep liquid pooling from an upstream chamber into a downstream chamber for filtration.
A filter cartridge uses asymmetric geometry and differentiated seal lips for secure installation.
Segmenting the catalyst into spaced main bodies within the outer cylinder maximizes purification length while protecting brazed connections from heat damage.
Segmented filter cartridges with independent electric heating elements reduce peak electrical power consumption during particulate combustion.