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3 Inch AODD Pumps BA80AL-0TT3-A - Aluminium Body PTFE Diaphragm -BSK

3 Inch AODD Pumps BA80AL-0TT3-A - Aluminium Body PTFE Diaphragm -BSK

Regular price AED 10,410.00
Regular price Sale price AED 10,410.00
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The BA80AL-0TT3-A is a high-performance, air-operated double diaphragm (AODD) pump constructed with a durable aluminum body and a chemically resistant PTFE diaphragm. Designed for corrosive fluid handling and chemical transfer, this pump is engineered to reliably transfer corrosive chemicals and aggressive fluids in demanding chemical processing and heavy industrial environments. With a maximum flow rate of 903 L/Min and a maximum suction lift of 5.3 m, it provides efficient and safe operation for a wide range of applications

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Specifications

  • Wetted Material: Aluminium
  • Seat Material: PTFE
  • Ball Material: PTFE
  • Diaphragm Material: PTFE
  • O-ring Materials: NBR
  • Discharge Port: BSP
  • Fluid Outlet: 3"
  • Fluid Inlet: 3"
  • Max Flow: 1400 L/Min
  • Max Suction Lift-Dry: 8.5 m
  • Max Air Pressure: 8.3 bar
  • Weight: 58.5kg
  • Noise: <80dB
  • Temperature Range: -40°C to 149°C
  • Dimensions/Size: 495×620×480mm
  • Color/Finish: Anodized Aluminium
  • Applications/Industry: Chemical Processing
Product Features
  • Heavy-Duty Aluminum Body: Provides exceptional resistance to corrosion and robust durability, ensuring longevity and reliability in extreme high-volume aggressive chemical environments.
  • All-PTFE Wetted Parts Design: Provides maximum chemical compatibility and temperature resistance for the most demanding ultra-high-volume chemical applications.
  • PTFE Diaphragm Material: Offers superior chemical compatibility and temperature resistance for handling massive quantities of aggressive chemicals, acids, and high-temperature process fluids.
  • 1400 L/Min Max Flow: Enables ultra-efficient and rapid massive-volume chemical processing, aggressive fluid transfer, and industrial-scale chemical handling operations.
  • Self-Priming & Can Run Dry: Reduces downtime and prevents damage, critical for continuous ultra-high-volume aggressive chemical processing operations.
  • Seal-Less, Leak-Proof Design: Eliminates the risk of costly leaks and protects the environment from massive volumes of aggressive chemicals in industrial-scale operations.
  • Air-Operated (Intrinsically Safe): Critical for ultra-high-volume hazardous chemical environments where electrical sparks could cause catastrophic reactions in massive-scale operations.
  • High Temperature Range (-40°C to 149°C): Handles high-temperature chemical processes and extreme operating conditions in massive-scale applications.
  • Maximum Chemical Resistance: PTFE construction provides unmatched compatibility with ultra-high volumes of aggressive acids, solvents, and corrosive chemicals.
  • Industrial-Scale 3" Port Design: Massive flow capacity design for the most demanding industrial chemical processing applications requiring maximum throughput.
Applications & Industries
  • Massive-Scale Chemical Processing: Ultra-high-volume handling of strong acids, caustic solutions, aggressive solvents, and corrosive chemical processing fluids in major industrial facilities.
  • Industrial High-Temperature Applications: Massive-scale processing of heated chemicals, high-temperature process fluids, and applications requiring operation up to 149°C with maximum throughput.
  • Major Pharmaceutical Manufacturing: Ultra-high-capacity transfer of active pharmaceutical ingredients, cleaning solvents, and process chemicals in large-scale pharmaceutical production facilities.
  • Industrial Semiconductor Manufacturing: Massive-volume handling of ultra-pure chemicals, aggressive etchants, and specialty processing fluids in major semiconductor fabrication facilities.
  • Bulk Chemical Production: Ultra-high-capacity processing of aggressive intermediates, specialty solvents, and bulk chemicals in major chemical manufacturing facilities.
  • Note: The BA80AL-0TT3-A's 3" port design with 1400 L/Min capacity and all-PTFE construction represents the ultimate in industrial-scale chemical processing capability. This model is specifically engineered for massive-volume aggressive chemical applications where maximum flow capacity, chemical compatibility, and temperature resistance are required for major industrial operations demanding the highest levels of performance and safety.
Why Choose This Pump?
The BA80AL-0TT3-A from BSK Fluid Technology represents the ultimate in industrial-scale chemical processing technology, combining all-PTFE construction with massive 3" port capacity to deliver unmatched performance in the most demanding ultra-high-volume chemical processing applications requiring maximum throughput and chemical compatibility.
Key Product Highlights:
  • Industrial-Scale All-PTFE Construction: Maximum chemical compatibility with massive volumes of aggressive acids, caustic solutions, and corrosive chemicals
  • Ultra-High-Volume Capacity: Massive 1400 L/Min flow through 3" ports for industrial-scale chemical processing operations
  • Maximum Chemical Resistance: Unmatched compatibility with ultra-high volumes of aggressive chemicals in major industrial applications
  • Industrial-Grade Temperature Performance: Operates reliably across -40°C to 149°C for massive-scale high-temperature chemical processes
  • Proven Industrial AODD Technology: Self-priming, seal-less operation ideal for continuous massive-scale aggressive chemical handling
  • Heavy-Duty Industrial Construction: Built for continuous operation in the most demanding industrial chemical processing environments
  • Maximum Throughput Design: 3" port configuration delivering industry-leading flow rates for major chemical processing facilities
  • Industrial Safety Compliance: Intrinsically safe operation critical for massive-scale hazardous chemical environments
The BA80AL-0TT3-A is the ultimate choice for major chemical processing facilities, industrial pharmaceutical production, bulk chemical manufacturing, and large-scale semiconductor operations where maximum chemical compatibility, ultra-high-volume capacity, temperature resistance, and industrial-grade reliability are essential for successful operation in the most demanding massive-scale chemical processing environments.