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Outlet pressure (MPa)Flow (Nm³/h)
356009001200150018002000
50



Technical Specifications


NITROGEN INJECTION

Nitrogen Generation Skid
Utilizing efficient and reliable nitrogen generation technology, this skid-mounted system delivers a stable nitrogen supply for various industries—enhancing production efficiency and reducing operational costs.
Working Principle: The system processes compressed air from the air compressor through a nitrogen generator that separates oxygen and nitrogen to produce high-purity nitrogen. The system is composed of several key components, including the air compressor, nitrogen generator, air receiver tank, and associated piping system, ensuring efficient and stable operation throughout the entire process.

Nitrogen Booster Skid
With its high-efficiency and stable pressure-boosting performance, the nitrogen booster skid provides reliable high-pressure nitrogen supply for a wide range of industrial applications.
Working Principle: Nitrogen is pressurized to 35–50 MPa in the skid to meet the requirements of specific industrial applications. It is particularly for oil & gas applications, where high-pressure nitrogen is injected into gas wells to enhance oil recovery (EOR) or other production stimulation techniques.

FLUE GAS INJECTION

Utilizes flue gas—exhaust gases produced by boiler combustion—for injection purposes. Harmful and corrosive gases such as sulfur compounds and acids are removed through purification processes that treat the complex gas composition. The purified flue gas is then transported via long-distance pipelines to the wellhead for pressurized injection. This method not only addresses environmental issues related to flue gas emissions but also significantly reduces feed gas costs.

CARBON DIOXIDE INJECTION

Carbon Capture, Utilization and Storage (CCUS) is an advanced technology aimed at reducing carbon dioxide emissions from industrial processes and power plants. The core principle involves capturing CO₂ generated from combustion or industrial activities at the emission source, followed by its transportation, utilization, or storage. This prevents the CO₂ from entering the atmosphere, thereby reducing greenhouse gas emissions, supporting energy transition, and promoting sustainable development.


NATURAL GAS INJECTION

After undergoing purification, natural gas is pressurized using compressors and injected into underground reservoirs to enhance oil recovery. This method offers several advantages, including high gas purity, high injection pressure, and safe operational performance.
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