Modular container design
The equipment adopts a container-type structure, which has the ability to be deployed quickly and can be directly transported to the mining site without complex infrastructure. It is especially suitable for remote gold mines or underground mining scenarios, greatly shortening the equipment installation cycle.
Plateau and underground operation capabilities
The product is clearly marked as suitable for "mining" and emphasizes the "anti-high-reaction design of exhaust and heat dissipation holes", indicating that it has been optimized for plateau hypoxia environments (such as high-altitude gold mines) and closed mine environments to ensure stable operation of the equipment.

100%
Safe Oxygen Production
100%
On-site Oxygen Production
100%
Effective Oxygen Production
100%
Stable Oxygen Production

why choose our psa O2 generator?
Technical performance advantages
- High-purity oxygen output
- PSA pressure swing adsorption technology
Energy saving and low maintenance cost
The equipment integrates "high-efficiency oxygen production" technology to reduce the energy consumption per unit of oxygen production, which meets the cost reduction needs of long-term operation of mines.
The molecular sieve system has a mature design and simple maintenance, which reduces the downtime and maintenance time of the mine area.
NEWTEK's Core Competitiveness
| Dimensions | Advantages |
|---|---|
| Scenario adaptation | Containerized rapid deployment, plateau/mine environment optimization |
| Technical performance | PSA technology guarantees 93%-99% oxygen purity, low energy consumption design |
| Sustainability | Reduced transportation carbon emissions, efficient resource utilization in line with ESG trends |
| Economical | Long-term costs are lower than liquid oxygen supply, multi-functional expansion reduces comprehensive procurement costs |
FAQ
Q: How does it ensure easy transportation and quick deployment in emergency situations?
A: It ensures easy transportation and quick deployment due to its compact, containerized design. The entire system is integrated into a standard shipping container, which can be moved by truck, ship, or even helicopter if needed.
Q: What is its oxygen production capacity, and can it meet the demands of large - scale operations?
A: It has a flexible oxygen production capacity, with models ranging from small units producing a few cubic meters per hour to larger systems generating hundreds of cubic meters hourly. This scalability allows it to meet the demands of large - scale operations, such as temporary hospitals, industrial sites requiring oxygen for processes, or remote mining camps.
Q: How cost - effective is it compared to relying on delivered oxygen cylinders or tanks?
A: It is highly cost - effective compared to delivered oxygen. While the initial investment is higher, it eliminates recurring costs like transportation, cylinder rental, and refilling fees. Over time, the savings add up significantly, especially for operations needing a continuous oxygen supply. It also reduces the risk of supply chain disruptions, which can lead to costly downtime.
Q: What safety features does it have to prevent oxygen leaks and ensure operational security?
A: It is equipped with multiple safety features to prevent leaks and ensure security. These include high - precision pressure sensors that monitor oxygen levels and trigger alarms if leaks are detected, automatic shut - off valves that stop production in case of abnormal pressure, and flame arrestors to prevent ignition in oxygen - rich environments. The container itself is often designed with ventilation systems to disperse any leaked oxygen, and it may have explosion - proof components to handle potential risks.
Q: How suitable is it for use in remote or off - grid locations with limited infrastructure?
A: It is highly suitable for remote or off - grid locations. Many models can be powered by diesel generators, solar panels, or other alternative energy sources, making them independent of grid electricity. The containerized design protects the system from harsh weather conditions like extreme temperatures, rain, and dust, ensuring reliable operation in challenging environments.
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