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BAMa - Sensor bypass armature (modular)

For Efficiency in Water Treatment Monitoring.

The BAMa is a bypass armature used to secure all ProMinent potentiometric, amperometric and conductivity sensors for water treatment. It is typically installed within a bypass waterline to monitor variables in water treatement applications. Its modular design allows it to be maintained, cleaned and adjusted without the use of tools.

Product description

Modular sensor bypass armature BAMa: flexible process connection for all ProMinent sensors for water treatment

Depending on the application, the modular bypass armature can be selected in different variants:

For saving sample water: Typical armatures require flow rates of 8 GPH, whereas the BAMa utilizes flow rates down to 1.3 gph (5 l/h), which adds up to a savings of 84% on water supplied and wasted.

For process water which is clear or has low levels of solids where the sample water is returned to the process; or for process water which has moderate levels of solids and/or for higher temperatures and/or pressure requirements: The BAMa is designed to minimize common issues that arise with sensor armatures such as high sample water waste, chemical incompatibility, temperature and pressure limitations, particles affecting flow, and maintenance complexity.

Features and Benefits

  • Cost savings in reduced water consumption and waste
  • Flexibility to adapt to changing processes
  • Easily cleaned and maintained
  • More likely compatible with proprietary processes & systems
  • Functions when water contains particles
  • Greater flexibility, function and adaptation to more applications
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    Modular sensor bypass armature BAMa: flexible process connection for all ProMinent sensors for water treatment

Technical Data

 Drinking / clear water with sample water drained and sent to wasteRecreational / pool water with sample water returned to processIndustrial water with solids or (higher temperatures / pressures)
Flow through the BAMa fiiting1.3…6.6 gph (5…25 l/h)5.3…15.9 gph (20…60 l/h)5.3…26.4 gph (20…100 l/h)
Minimum priming pressure without flow limiter and with clean filter, for a total of 9 modules0.36 psi (0.025 bar)0.73 psi (0.05 bar)7.25 psi (0.5 bar)
Minimum priming pressure with flow limiter and with clean filter, for a total of 9 modules22 psi (1.5 bar)22 psi (1.5 bar)29 psi (2.0 bar)
Maximum operating pressure101.5 psi at 68 °F (7.0 bar at 20 °C)101.5 psi at 68 °F (7.0 bar at 20 °C)101.5 psi at 68 °F (7.0 bar at 20 °C)
Maximum operating temperature140 °F at 51 psi (60 °C at 3.5 bar)140 °F at 51 psi (60 °C at 3.5 bar)158 °F at 43.5 psi (70 °C at 3.0 bar)
Ambient temperature range14 °F…140 °F (-10 °C…60 °C)14 °F…140 °F (-10 °C…60 °C)14 °F…140 °F (-10 °C…60 °C)
Particle mobility (proved with non-agglomerating, non-sedimentary model particles)< 300 µm< 300 µm< 1,000 µm

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Overview

Modular sensor bypass armature BAMa: flexible process connection for all ProMinent sensors for water treatment

Depending on the application, the modular bypass armature can be selected in different variants:

For saving sample water: Typical armatures require flow rates of 8 GPH, whereas the BAMa utilizes flow rates down to 1.3 gph (5 l/h), which adds up to a savings of 84% on water supplied and wasted.

For process water which is clear or has low levels of solids where the sample water is returned to the process; or for process water which has moderate levels of solids and/or for higher temperatures and/or pressure requirements: The BAMa is designed to minimize common issues that arise with sensor armatures such as high sample water waste, chemical incompatibility, temperature and pressure limitations, particles affecting flow, and maintenance complexity.

Features and Benefits

  • Cost savings in reduced water consumption and waste
  • Flexibility to adapt to changing processes
  • Easily cleaned and maintained
  • More likely compatible with proprietary processes & systems
  • Functions when water contains particles
  • Greater flexibility, function and adaptation to more applications

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Technical Data

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