• Medical & Emergency Response: ▹ Hospital Bulk Fill: Capable of refilling 200 K-size cylinders in an 8-hour shift at 140 bar. ▹ Mobile Field Units: ISO-containerized variant combines diesel-driven air compressor (150 kVA genset) and oxygen booster for self-sustained operation in disaster zones. • Industrial Gas & Combustion: ▹ Oxy-Fuel Cutting/Welding: Precise oxygen dosing integrated via analog 4–20 mA input to plant DCS, reducing fuel consumption by up to 12%. ▹ Advanced Oxidation Processes: High-pressure O2 injection into catalytic reactors accelerates degradation of recalcitrant organics in wastewater. • Defense & Aerospace: ▹ Forward Operating Bases & Armored Vehicles: Lightweight trailer skid (~900kg) supports portable breathing-apparatus fills; incorporates quick-release anchor mounts. ▹ Test Stands & Chambers: Supplies high-purity oxygen to missile-propulsion test cells; synchronized with ignition sequences via factory-programmed PLC timing functions. • Research & Analytical Laboratories: ▹ Cryogenic Probe Stations: Maintains oxygen supply pressure within ±0.1 bar to ensure repeatable thermal contraction in low-temperature physics experiments. ▹ Analytical Instrumentation: Continuous, pulsation-free oxygen feed for FT-IR, GC/MS, and plasma reactors requiring < 1 ppm particulate and oil.
and we will get back to you.
Thank You!
Your enquiry has been received, We will get back to you shortly.
1. Overview & Design Philosophy The Oxygen Boosting System is meticulously engineered to convert low-pressure oxygen (3–6 bar) from PSA/VPSA generators into high-pressure output (up to 140 bar) for cylinder filling, entirely via pneumatic actuation. By removing electrical drives from the oxygen circuit, it inherently eliminates ignition sources, streamlines oxygen-service certification, and reduces maintenance associated with motors and gearboxes. Core design principles include: • Modularity & Scalability: Interchangeable skid modules—drive-air conditioning, dual-stage boosters, intercooler, receivers, control panel—connect via quick-release clamps and standardized flanges to facilitate field upgrades or capacity expansions (e.g., adding a third booster stage). • High Reliability: Pneumatic actuators and booster pistons rated for >1 million cycles; dynamic seal redundancy; critical relief and check valves selected per MIL-STD-901D for shock/vibration environments. • Serviceability & Accessibility: Front-facing service bay encloses filters, valves, and seals behind a hinged door. Color-coded pneumatic tubing with quick-disconnect couplers reduces maintenance downtime to < 2 hours per routine service. 2. Detailed Applications • Medical & Emergency Response: ▹ Hospital Bulk Fill: Capable of refilling 200 K-size cylinders in an 8-hour shift at 140 bar. ▹ Mobile Field Units: ISO-containerized variant combines diesel-driven air compressor (150 kVA genset) and oxygen booster for self-sustained operation in disaster zones. • Industrial Gas & Combustion: ▹ Oxy-Fuel Cutting/Welding: Precise oxygen dosing integrated via analog 4–20 mA input to plant DCS, reducing fuel consumption by up to 12%. ▹ Advanced Oxidation Processes: High-pressure O2 injection into catalytic reactors accelerates degradation of recalcitrant organics in wastewater. • Defense & Aerospace: ▹ Forward Operating Bases & Armored Vehicles: Lightweight trailer skid (~900kg) supports portable breathing-apparatus fills; incorporates quick-release anchor mounts. ▹ Test Stands & Chambers: Supplies high-purity oxygen to missile-propulsion test cells; synchronized with ignition sequences via factory-programmed PLC timing functions. • Research & Analytical Laboratories: ▹ Cryogenic Probe Stations: Maintains oxygen supply pressure within ±0.1 bar to ensure repeatable thermal contraction in low-temperature physics experiments. ▹ Analytical Instrumentation: Continuous, pulsation-free oxygen feed for FT-IR, GC/MS, and plasma reactors requiring < 1 ppm particulate and oil. 3. Technical Specifications