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Process water with technical control.

We apply ozone where water quality affects continuity, hygiene or performance of an industrial process.

Ozone systems installed for cooling-tower water
Grupo 7DesignFabricationInstallationTechnical service

The application

Every circuit has its own chemistry and function.

A cooling tower recirculates and blows down. A reverse-osmosis tank feeds a sensitive process. A CIP system runs in cycles. Where and how ozone is applied changes with the water’s role.

We design around existing hydraulics: where water enters, how long it stays, which materials it touches and whether the downstream process tolerates oxidant residual.

Treatment options

Place treatment where it provides control.

The same generator cannot simply be placed beside every tank. Decide whether a sidestream, tank recirculation or stage immediately before use is appropriate.

Cooling towers

Study biofilm and water quality alongside blowdown, scale and corrosion. Ozone fits within a circuit strategy.

RO and ultrapure water

Storage may need microbiological control; check whether final use tolerates residual or needs its removal.

Laundry and surfaces

Validate against wash quality, material compatibility and actual consumption using comparable cycles.

Related applications

Other solutions.

Wastewater

Advanced treatment of municipal and industrial effluent.

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Specific applications

Water circuits with different duties.

A tower, a reverse-osmosis tank and a laundry each need their own application point, contact time and controls.

Cooling towers

Cooling circuits face linked issues of biofilm, scale, corrosion and makeup water. Ozone can form part of a recirculating-water control strategy.

Review volume, recirculation, blowdown, conductivity, temperature, materials and existing chemical treatment. Inject into a suitable sidestream with mixing and contact; automation and monitoring must match actual tower operation.

How to verify: Track microbiology, water chemistry, circuit condition and chemical use under the operating program.

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RO and ultrapure-water tanks

Stored reverse-osmosis, distilled or polished water may need microbiological control without compromising downstream use. Ozone can be applied in recirculation or before the use point.

Assess tank volume, turnover, material, required purity and downstream process sensitivity. Monitor transfer and residual; where the end use cannot accept oxidant, include a removal step before use.

How to verify: Check microbiology, dissolved ozone and process-specific criteria at defined sampling points.

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Fire-water storage tanks

Fire-water reserves can remain stored for long periods. Ozone recirculation can be assessed to limit deterioration without interfering with the emergency function.

The priority is preserving fire-system availability, pressure and reliability. Any treatment is designed as an auxiliary loop with material compatibility, isolation, interlocks and coordination with fire-safety personnel.

How to verify: Verify stored-water quality and continued compliance with the fire system availability tests.

Surface washing

Ozonated water can be assessed for washing compatible floors, equipment or surfaces within a documented cleaning program.

Physical soil removal is separate from the hygiene stage. Review materials, contact time, application method, ventilation and worker safety; validate the protocol on the actual surface.

How to verify: Check visible cleaning and surface samples under the facility hygiene plan.

Materials oxidation

ZonoSistem also describes oxidation applications for materials including textiles, paper, cork and cellulose. These are specialized industrial processes requiring material and product trials.

Before proposing a reactor, define the property to change, required exposure, gas treatment and possible effect on strength, color or finish. Results from one material do not transfer automatically to another.

How to verify: Compare material properties before and after pilot tests, together with emissions and specific consumption.

Industrial and hotel laundry

Ozone is introduced into wash water to assess lower-temperature cycles and reduced use of some chemicals while maintaining required wash quality.

Feasibility depends on fabric, soils, load, program and water quality. Separate hygiene, whiteness, odor and textile-life goals; adjust the wash recipe through actual trials.

How to verify: Compare microbiology, visual quality, water, energy and detergent consumption, and garment life.

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Next step

Review the circuit where ozone will be used.

Share a process diagram, water quality and materials to locate the treatment stage.

Decision criteria

Circuit operation and compatibility

Application point

A tank, wash line and closed loop have different flow and contact conditions. Define where ozone enters, what happens downstream and how unintended effects on materials or product are avoided.

Operational continuity

The proposal should cover alarms, spare parts, maintenance access and response to shutdowns. The goal is to sustain the result through the actual production cycle, not just obtain a reading in one test.