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Applications and Use Cases of Ozone Decomposition Catalysts


  • Addtime: 2024-11-27 02:46:13 / View: 97

Ozone decomposition catalysts have become an indispensable part of managing ozone emissions across various industries. These catalysts provide a reliable solution for converting harmful ozone into harmless oxygen, ensuring safety, compliance with environmental regulations, and improved air quality.

 

 

 

Key Applications of Ozone Decomposition Catalysts

 

 

1. Water Treatment Facilities

 

Ozone is widely used as an oxidant and disinfectant in the treatment of potable water and wastewater. While effective, the residual ozone in off-gas emissions poses a hazard. Ozone decomposition catalysts are used to break down this ozone into oxygen, ensuring the off-gas meets discharge standards.

– Benefit: Long catalyst lifespan reduces maintenance costs and provides a sustainable alternative to thermal destruction methods.

 

 

2. Industrial Air Purification Systems

 

Industries such as semiconductor manufacturing and cleanrooms rely on air purification systems where ozone is a by-product. These catalysts neutralize ozone without introducing secondary pollutants.

– Use Case: Removing excess ozone from air streams in ventilation and filtration systems to protect sensitive equipment and maintain compliance with safety standards.

 

 

3. Printing and Packaging (Corona Treatment)

 

Ozone is produced during corona treatment, a process used to improve the adhesion of inks, coatings, or adhesives. Ozone decomposition catalysts ensure the safe handling of ozone by converting it into oxygen at ambient temperatures.

– Why It’s Effective: Reduces operational hazards and eliminates the need for costly, energy-intensive thermal treatment.

 

 

4. Commercial Digital Printers

 

Ozone emissions are prevalent in high-speed digital printing. Catalysts help maintain a safe working environment by breaking down ozone to prevent respiratory risks and equipment corrosion.

– Advantage: Unlike activated carbon, ozone catalysts offer extended service life and do not produce by-products such as carbon dioxide or monoxide.

 

 

5. Medical and Laboratory Equipment

 

Devices that use ozone for sterilization or air cleaning often emit residual ozone. Catalysts ensure the removal of this ozone, enabling safer operations in medical and research settings.

– Impact: Enhances equipment longevity and supports healthier indoor environments.

 

 

 

Benefits of DEAI CHEM’s Ozone Decomposition Catalysts

 

 

At DEAI CHEM, we specialize in ozone decomposition catalysts designed for optimal performance and versatility:

– Customizable Shapes and Sizes: Available in granular, cylindrical, and irregular forms like our 4×8 mesh catalysts to suit different applications.

– Eco-Friendly Design: Converts ozone to oxygen without secondary pollutants.

– Extended Lifespan: Durable materials ensure long operational lifetimes, reducing replacement frequency and overall costs.

– Energy Efficiency: Ambient temperature operation minimizes energy usage compared to thermal destruction.

 

 

 

Why Choose Ozone Decomposition Catalysts?

 

Industries worldwide are adopting these catalysts to meet stringent environmental standards, protect human health, and optimize operational efficiency. By implementing these solutions, companies can achieve sustainable air and water treatment goals while ensuring safety and regulatory compliance.

 

 

 

Contact DEAI CHEM

 

Looking for ozone decomposition solutions tailored to your needs? DEAI CHEM is committed to delivering high-quality, customizable catalysts that empower industries to manage ozone emissions effectively. Let’s innovate together for cleaner air and water.