Cold Storage & Enclosed Spaces

Piped-Output Ozone Systems for Cold Rooms and Controlled Enclosures

Generate ozone in an accessible equipment area, then deliver a measured gas stream through tubing to the required distribution points. Oxygen-feed configurations can help minimize nitrogen-oxide by-products in sensitive storage and food-related environments.

Why Piped Output

Keep the ozone source serviceable and the gas path controllable

Remote installation

The generator can remain outside the cold, wet or difficult-to-access treatment space while ozone is distributed through ozone-resistant tubing.

Measured delivery

Gas concentration, flow, duty cycle and distribution can be selected for the enclosure and ventilation conditions.

Feed-gas choice

Prepared dry air or oxygen can be selected according to concentration, consistency and by-product requirements.

Typical Projects

Application examples

Cold rooms

Controlled ozone distribution in unoccupied cycles or engineered low-level processes with monitoring and ventilation.

Produce and food storage

Equipment integration for storage projects where materials, exposure limits, product compatibility and local rules are validated.

Other closed spaces

Process enclosures, containers, chambers and non-occupied treatment zones requiring remote gas generation and defined distribution.

NOx Consideration

Why oxygen feed may matter in cold storage

Ambient air contains nitrogen. In electrical-discharge ozone generation, nitrogen-containing feed gas can contribute to formation of nitrogen oxides, especially when gas preparation and operating conditions are not well controlled. Supplying oxygen minimizes nitrogen entering the discharge cell and can help reduce these by-products while supporting higher ozone concentration.

Important: Oxygen feed can improve gas quality, but ozone itself remains hazardous at elevated exposure. Monitoring, interlocks, ventilation and operating procedures are still required.
Architecture Comparison

Piped-output system versus an exposed fan-blown source

ConsiderationPiped-output ozone generatorExposed plate / fan-blown tube
Feed gasPrepared dry air or oxygen can be controlledUsually uses surrounding ambient air
NOx managementOxygen feed can minimize nitrogen-derived by-productsLimited control over nitrogen and humidity in the incoming air
Generator locationCan be installed outside the cold or wet spaceGenerating element is normally in the treated airflow
DistributionTubing and manifolds can place ozone at designed pointsDepends mainly on the local fan and room circulation
Initial costNormally higher due to gas preparation, tubing and controlsNormally lower
Service accessGenerator can remain accessibleMay require work inside the treatment area
RFQ Inputs

Information needed for system selection

  • Room or enclosure volume
  • Temperature and humidity
  • Airflow, ventilation and air changes
  • Stored materials or products
  • Occupied or unoccupied operating cycle
  • Target gas concentration and control range
  • Required ozone output and gas flow
  • Air or oxygen feed preference
  • Tubing distance and distribution points
  • Monitor, alarm, interlock and off-gas requirements
B2B & OEM

Configured for manufacturers, distributors and project companies

Morhon Tech was established in 2015, with ozone-industry experience dating to 2007. We supply standard platforms and customized/OEM configurations. Many customer-specific systems cannot be displayed publicly; send the operating data for engineering review.

Validation: This page supports equipment selection. It does not guarantee disinfection, shelf-life or product-quality results. The completed process must be validated under actual conditions and applicable regulations.

Plan a cold-storage ozone system

Send enclosure data, target concentration, operating schedule and feed-gas requirements.