Protect equipment
Reduce mineral attachment inside pumps, plumbing, valves, nozzles, heaters, and treatment equipment.
Smart Water Program
Prevent hard-water deposits
Hard water creates cost when calcium carbonate bonds to pumps, pipes, nozzles, heating surfaces, and vehicle finishes. WaterIQ conditions the water so minerals are more likely to form as suspended particles in the water stream—reducing scale attachment, maintenance demand, salt use, and interference with wash chemistry.
The operating challenge
When calcium carbonate forms on equipment instead of in the water, it restricts flow, increases maintenance, consumes salt and chemistry, and can contribute to mineral residue on the vehicle. WaterIQ changes where mineral formation begins so the wash can operate with cleaner surfaces and more consistent water.
Reduce mineral attachment inside pumps, plumbing, valves, nozzles, heaters, and treatment equipment.
Limit the bonded scale that drives descaling, cleaning, part replacement, and avoidable downtime.
Reduce the burden placed on softeners and help detergents perform in a more stable water environment.
Support cleaner rinsing and less mineral adhesion on vehicle surfaces while retaining RO as the final protection against evaporation spots.
The WaterIQ™ process
WaterIQ manages the conditions that control calcium-carbonate nucleation, then keeps the resulting mineral particles moving through the water stream.
Measure hardness, alkalinity, pH, temperature, conductivity, and saturation conditions that determine where calcium carbonate can form.
Use hydrodynamic conditioning and nanobubbles to increase mixing and provide interfaces where mineral nucleation can begin within the water.
Encourage calcium carbonate to form as small suspended particles before dissolved minerals can crystallize on equipment or vehicle surfaces.
Maintain circulation and flow so preformed particles are carried downstream instead of accumulating as bonded scale.
Track water chemistry, salt and chemical consumption, maintenance frequency, equipment condition, and wash quality.
The engine beneath WaterIQ
Nanobubbles create extremely small gas-to-water interfaces and improve oxygen transfer. Under suitable water conditions, interfacial reactions and bubble collapse can contribute to reactive oxygen species that support oxidation.
Actual response depends on water chemistry, dissolved gases, equipment configuration, residence time, and site conditions.
Increase the opportunity for oxygen to dissolve and remain available.
Distribute highly active gas-to-water surfaces through the treated volume.
Promote measurable oxidation conditions through controlled treatment.
Use circulation and monitoring to manage the water over time.
Program architecture
The treatment point and goal change across the wash. WaterIQ evaluates every stream separately, then connects them into one water-management strategy.
Condition source water before chemistry mixing and downstream treatment.
Support more efficient operation and evaluate salt use against verified results.
Manage pretreatment and stored permeate to protect final-rinse quality.
Increase oxygen and circulation to support biology, oxidation, clarity, and reuse.
Managed by measurement
Site-specific operating goals are established from the water analysis, wash configuration, equipment, chemistry, treatment demand, and intended application.
The operator benefit
Support greater use of appropriately conditioned reclaim water.
Optimize water-treatment operation using measured site performance.
Give ChemistryIQ a more stable environment in which to perform.
Manage RO and spot-free water through treatment, storage, and application.
Start with the water
BioTech will review your water sources, equipment, chemistry, reclaim system, and operating goals to identify the strongest opportunity for measurable savings.