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Submersible Aerator Agitator for Industrial Wastewater. 1
Submersible Aerator Agitator for Industrial Wastewater. 2
Submersible Aerator Agitator for Industrial Wastewater. 3
Submersible Aerator Agitator for Industrial Wastewater. 4
Submersible Aerator Agitator for Industrial Wastewater. 5
Submersible Aerator Agitator for Industrial Wastewater. 6
Submersible Aerator Agitator for Industrial Wastewater. 1
Submersible Aerator Agitator for Industrial Wastewater. 2
Submersible Aerator Agitator for Industrial Wastewater. 3
Submersible Aerator Agitator for Industrial Wastewater. 4
Submersible Aerator Agitator for Industrial Wastewater. 5
Submersible Aerator Agitator for Industrial Wastewater. 6

Submersible Aerator Agitator for Industrial Wastewater.

A submersible aerator agitator for industrial wastewater is a compact motor-driven unit that sits underwater to stir and add air into waste tanks. It mixes liquids, keeps solids from settling, and adds oxygen to help microbes break down waste. Built with corrosion-proof parts and sealed motors, it runs quietly and uses little power. It is easy to fit into tanks or ponds and can run continuously or by timer. Routine checks of seals and the impeller keep it working well.

Usage scenarios:

- Aerating activated sludge tanks to boost oxygen for bacteria and speed up treatment.

- Mixing equalization tanks, sumps, or digesters to prevent sludge build-up and keep solids suspended.

- Aerating lagoons, ponds, or emergency holding tanks to cut odors, control algae, and improve water quality.

5.0
brand name:
QILEE
Shipping:
Support Sea freight
Payments:
L/C,D/A,D/P,T/T,Western Union,MoneyGram,OA
Lead Time:
1-1(sets):30(days),>1(sets):To be negotiated(days)
Place of Origin:
China
design customization

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    Diameter
    260mm
    rpm
    960r/min
    Rated current
    4A
    Thrust
    290N
    Capacity
    40 L
    Power (kW)
    1 kW
    dimension(l*w*h)
    630*500
    additional capabilities
    Submersible mixer
    product type
    Submersible mixer
    material processed
    Chemicals
    mixer type
    Agitator
    voltage
    220V/380V
    weight (kg)
    100
    warranty
    1 Year
    place of origin
    Shanghai, China

    Efficient Aeration, Durable Construction 

    The Submersible Mixer provides reliable, continuous mixing and aeration to prevent sedimentation, raise dissolved oxygen, and stabilize municipal or industrial wastewater treatment. Its compact, low‑profile shape and low‑speed flow propeller style are built to industrial quality with IP68 protection and F‑class insulated motors for 24‑hour operation up to 20 m submersion. Delivered in sturdy, export‑ready packaging with customizable mounts and simple installation, it meets service conditions (pH 5–9, media ≤40°C, density ≤1150 kg/m3) for consistent field performance.

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    Here are five four-word subtitle options:

    The Submersible Mixer features an IP68-rated, F-class insulated motor designed for continuous 24-hour operation on a 380V/50Hz supply, capable of safe submersion to 20 m with media temperature up to 40°C, pH 5–9 and density up to 1150 kg/m3. Its core function combines low-speed flow propeller and mixing agitator designs to generate ring flows for municipal and industrial wastewater treatment—promoting homogenization, oxygen transfer, sediment prevention, and landscape water circulation in tanks, bioreactors, equalization basins and sludge silos. Constructed with a compact, corrosion-resistant housing and streamlined propeller geometry, the unit delivers energy-efficient, reliable agitation with easy installation and low maintenance, providing long-term value through improved process stability and water quality.

    Industrial Submersible Aeration Agitator 

    The Submersible Mixer combines a mixing agitator and a low-speed flow propeller to provide efficient mixing, agitation and ring flow generation for municipal and industrial sewage processes such as activated sludge tanks, bioreactors, mixing tanks, sludge silos, equalization reservoirs and sewage tanks. It also supports landscape water maintenance by creating flow, increasing dissolved oxygen to improve water quality and effectively preventing sedimentation of suspended solids. Designed for continuous 24-hour operation, the unit is rated IP68 with F-class motor insulation, requires full submersion and is suitable for media up to 40°C, pH 5–9, density ≤1150 kg/m3, immersion depths up to 20 m and a 380 V, 50 Hz power supply.


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    Efficient Durable Powerful Oxygenation

    Built by a team with decades of wastewater treatment expertise, our Submersible Mixer aerator agitator is engineered for industrial wastewater use with corrosion-resistant alloys, sealed IP68 motor housings, and dynamically balanced propellers for extended service life. It provides high-efficiency mixing and oxygen transfer to keep sludge suspended, prevent sedimentation, and accelerate biological processes while minimizing noise and energy consumption. Key features and advantages include compact submersible design for easy installation, variable-speed control and anti-clogging impellers for process flexibility, and low-maintenance seals and durable coatings that reduce downtime and lifecycle costs.

    Material introduction

    The Submersible Mixer is built from corrosion-resistant materials such as AISI 316 stainless steel for shafts and propellers and epoxy-coated cast iron or duplex stainless housings to withstand aggressive industrial wastewater environments. Critical components use oil-filled, IP68-rated motors with F-class insulation, ceramic/SiC mechanical seals and neoprene or Viton gaskets to ensure continuous 24-hour operation and prevent leakage up to 20 m submersion. Abrasion- and fouling-resistant propeller options (stainless steel, composite or polyurethane) and heavy-duty marine-grade power cables complete the design to maintain mixing performance across pH 5–9, temperatures up to 40°C, and media densities up to 1150 kg/m3.


    ◎ Corrosion Resistant Construction 

    ◎ Sealed Reliable Motors

    ◎ Wear Resistant Propellers

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    FAQ

    1
    What is a submersible aerator agitator and in which industrial wastewater scenarios is it most commonly used?
    A submersible aerator agitator is a submerged mechanical device combining mixing and aeration by using an underwater motor-driven impeller or propeller. It is commonly used in aeration basins, activated sludge tanks, oxidation ditches, equalization tanks, lagoons, sludge mixing/resuspension, flotation feed tanks, leachate treatment, and industrial process effluent pits where simultaneous oxygen transfer and bulk mixing are required. It’s especially useful where space is limited, where high solids or surface foam must be controlled, or for retrofits where diffused air systems are impractical.
    2
    How do I choose the right unit and size for my particular tank or process?
    Select based on tank volume and geometry, required oxygen transfer or mixing intensity, liquid depth, wastewater characteristics (TSS, viscosity, oil/grease, corrosives), and desired control (fixed speed vs VFD). Start with process targets (e.g., required DO, turnover time or mixing time), then use manufacturer performance curves for air/O2 transfer (KLa or OTR) and flow/mixing patterns. Consider impeller type (high-shear for oxygen transfer, axial for bulk flow), material compatibility (SS316, coatings), and environmental requirements (explosion-proof motors for hazardous sites). Multiple smaller units often give better redundancy and hydraulic coverage than a single large unit.
    3
    Can a submersible aerator agitator handle high solids, viscous or abrasive industrial wastewater?
    Many models are designed for high-solids and viscous streams with large-clearance or vortex impellers, anti-clogging geometries, and abrasion-resistant materials. However, heavily fibrous or extremely thick sludges may still require upstream screening, maceration, or specialized high-torque mixers. For abrasive or chemically aggressive fluids choose hardened alloys, ceramic coatings, or suitable stainless grades and verify motor sealing and mechanical seal systems are rated for those conditions.
    4
    What are the typical installation and operational considerations I should plan for?
    Install units submerged at manufacturer-recommended depths with adequate clearance from walls and bottom to avoid recirculation and solids buildup. Anchor securely with guide rails or mounting frames to allow removal for service. Use VFDs for soft starts and to optimize energy and DO control. Provide proper cable routing, strain relief, and corrosion-resistant connectors. Ensure power supply matches motor ratings and include overload/phase-failure protection. Plan spacing so flow patterns overlap for full tank coverage and include isolation valves or retrieval systems for maintenance.
    5
    How effective are submersible aerator agitators for oxygen transfer and energy efficiency compared with other aeration methods?
    They deliver moderate-to-high oxygen transfer while simultaneously providing strong bulk mixing. Compared with surface paddle aerators they often have better sub-surface oxygen dispersion and lower splashing/odor, and compared with fine-bubble diffusers they can be more robust in high-solids or oily streams and easier to retrofit. Fine-bubble systems typically achieve higher pure OTR per kW in clean water, but submersible aerator agitators can be more energy-efficient for combined mixing/aeration tasks and where fouling of diffusers is an issue. Actual performance depends on impeller design, depth, speed, and tank geometry—use vendor OTR/KLa data and consider VFD control for best energy use.
    6
    What routine maintenance and safety practices are required for these devices?
    Regular inspections should include mechanical seal integrity, bearings, impeller wear, motor temperature, and power cable condition. Clean debris from propellers/cages as needed and verify protective cages/grills are intact. Follow manufacturer intervals for lubricants and seal checks; keep critical spares (seals, bearings, impellers) on hand for fast turnaround. For safety: de-energize and lockout-tagout before retrieval, ensure lifting gear is rated, use explosion-proof units where required, and follow confined-space and electrical codes when accessing tanks. Regular vibration and amp-draw monitoring help detect problems early.
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