QSB Deep Water Self-priming Submersible Jet Aerator
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QSB Deep Water Self-priming Submersible Jet Aerator

The QSB deep-water self-priming submersible jet aerator is a specialized aeration device designed for applications requiring efficient oxygen transfer and mixing in deep water. Its unique design integrates aeration and agitation functions, making it suitable for wastewater treatment and other environmental engineering processes.
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  • QSB

  • Lan ling

Product Description

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1. Working Principle

The QSB aerator operates by using a submersible pump to draw water and create a high-speed jet. This jet generates negative pressure at the nozzle, enabling air to be sucked in and mixed with the water. The resulting air-water mixture is then discharged into the water body, effectively increasing dissolved oxygen levels and promoting circulation.


2. Structural Features

  • Submersible Pump: Drives the water flow to create the high-speed jet.

  • Jet Nozzle: Produces a high-velocity water stream that induces air suction.

  • Venturi Tube: Ensures efficient mixing of air and water, enhancing aeration performance.

  • Aeration Pipe: Draws atmospheric air or oxygen into the system.

  • Compact Design: The submersible structure allows for easy installation and operation in confined spaces.


3. Applications

  • Wastewater Treatment: Used in aeration tanks, lagoons, and equalization basins to enhance oxygen levels.

  • Aquaculture: Provides oxygenation in fish and shrimp ponds.

  • Industrial Water Treatment: Improves water quality in cooling towers, reservoirs, and process tanks.

  • Environmental Remediation: Aerates polluted water bodies to restore aquatic ecosystems.


4. Advantages

  • High Efficiency: Combines aeration and mixing in one system, reducing energy consumption.

  • Deep-Water Capability: Effective in water depths beyond the reach of traditional surface aerators.

  • Easy Installation: Does not require additional air compressors or blowers, simplifying setup.

  • Versatile Design: Suitable for a variety of water treatment scenarios, including high-solid-content environments.

  • Low Maintenance: Submersible design minimizes wear and tear, with fewer mechanical components exposed to the environment.


5. Precautions

  • Ensure the aerator is submerged to the recommended depth for optimal performance.

  • Periodically inspect the pump, nozzle, and venturi tube for blockages or wear.

  • Use appropriate materials for components when operating in corrosive or abrasive environments.

  • Avoid overloading the pump with excessive solids to prevent damage


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