Cycles of concentration
Higher cycles can save water but increase scaling and corrosion risk if chemistry is not controlled.
Industrial water treatment
Maintain heat-transfer performance by controlling dissolved solids, corrosion, microbiological growth and deposition in open recirculating cooling systems.

Engineering approach
As water evaporates, dissolved minerals concentrate. Treatment must therefore balance cycles of concentration, blowdown, scale inhibition, corrosion control and biocide effectiveness.
Process flow
Higher cycles can save water but increase scaling and corrosion risk if chemistry is not controlled.
Oxidising or non-oxidising programmes should be selected around system conditions and microbiological risk.
Conductivity, pH, inhibitor residuals and microbiological indicators provide feedback for the treatment programme.
No chemical programme can compensate for blocked strainers, poor flow distribution or heavily fouled heat-exchange surfaces.
Services include water testing, chemical dosing optimisation, cooling-tower cleaning, troubleshooting and AMC.
Final equipment configuration, chemical dosing and operating targets should be based on actual water analysis, plant load and applicable discharge/process requirements.
Technical resource
The expanded cooling-tower guide covers water chemistry, cycles, treatment chemistry and troubleshooting.
Open technical guideThey describe how concentrated the recirculating water becomes relative to the makeup water, often tracked using conductivity or another conservative tracer.
Evaporation removes water but leaves dissolved salts behind. Without sufficient blowdown, those salts accumulate.
Not always. Mechanical fouling, poor circulation, inadequate blowdown, drift issues or tower fill condition may also need attention.