- High-Altitude Research Outposts: Ensures stable O₂ levels in scientific shelters at 4 000–5 500 m elevations. - Military & Expedition Camps: Prevents hypobaric hypoxia in forward operating bases and mountaineering expeditions. - Medical & Acclimatization Tents: Supports patient therapy and controlled acclimatization in emergency or field hospitals. - Aerospace & Aviation Testing: Simulates cabin-altitude environments for equipment validation and physiological trials. - Sports Physiology & Training: Creates hypoxic/normoxic conditions for athlete training, endurance testing, and recovery protocols. - Tunnel & Mine Ventilation: Supplements oxygen in deep underground worksites where natural ventilation is limited. - Pharmaceutical & Biotech Labs: Provides controlled-oxygen chambers for cell culture, drug stability, and enzyme kinetics studies. - Emergency Response Shelters: Rapid-deploy units for disaster relief, avalanche rescue sites, and remote medical camps.
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1. System Purpose & Operational Context At elevations around 5000 m—where barometric pressure is approximately half that at sea level—the partial pressure of oxygen drops enough to induce hypobaric hypoxia, leading to acute mountain sickness, impaired cognition, and cardiovascular strain. The Neometrix Oxygen Enrichment Facility (OEF) addresses these challenges by raising indoor oxygen concentration from 21% (ambient) to 27–30%, simulating a much lower equivalent altitude. Deployed in research outposts, military encampments, medical tents, and acclimatization shelters, the OEF ensures personnel maintain optimal physiological function during prolonged high-altitude exposure. 2. Core Technology: PSA Oxygen Generation • Dual-Column PSA Towers: Two parallel adsorption columns packed with lithium-exchanged zeolite alternately adsorb nitrogen and regenerate, providing a continuous oxygen stream. • Molecular Sieve Design: High-performance sieves deliver >93% purity oxygen in the 80 LPM model, while 40% purity in the 130 LPM and 230 LPM models is blended into room air for energy efficiency. 3. Modular Variants & Performance Metrics