Industrial vapor recovery and air pollution control equipment background

Catalytic Oxidizer for Printing and Packaging VOC

Back to catalytic oxidizer casesPRINTING VOC CASE

A zeolite rotor plus catalytic oxidizer concept for large airflow and low-concentration printing VOC exhaust.

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PROJECT CONDITIONS

Design basis and emission source

Industry Printing and flexible packaging
VOC source Drying ovens, ink rooms and solvent exhaust
Key risk Large airflow with low VOC concentration
Selected approach Concentration by zeolite rotor followed by catalytic oxidation
Catalytic oxidizer VOC treatment system for printing and packaging exhaust
ENGINEERING REVIEW

Challenges

Large-volume, low-concentration exhaust can make a stand-alone oxidizer inefficient. Solvent compatibility and desorption temperature must be checked before choosing a concentration system.

SOLUTION

Selected treatment approach

A concentration-and-oxidation page explains pre-filtration, zeolite rotor selection, desorption air control, catalytic oxidizer sizing and heat reuse.

OUTCOME

Operating result

The page targets long-tail searches from printing buyers who are comparing rotor concentration, catalytic oxidation and RTO systems.

Values are examples for page structure and should be replaced with measured project data when the final case record is available.

PROJECT EVALUATION

Send VOC data for catalytic oxidizer sizing

Share airflow, VOC composition, concentration range, temperature, humidity, dust or mist content, operating schedule and required emission limit. We will review whether a catalytic oxidizer, RCO, RTO, zeolite rotor or carbon system is the better fit.

Start project evaluation