Fugitive VOC Emissions in Roto, Flexo & Lamination
Key Factors
Fugitive VOC emissions are solvent vapors that escape from solvent-based converting processes without being captured by the intended exhaust or abatement system. In flexible packaging, their magnitude depends on process design, machine layout, containment, drying and airflow management, operating practices, environmental conditions, and machine age. Roto, Flexo and solvent-based Lamination therefore do not have identical fugitive-emission profiles.
Roto
Typically the highest fugitive-emission variability because of solvent-intensive printing, extended press layouts and legacy equipment.
Flexo
Often benefits from compact CI configurations and enclosed systems, while older or stack-configured presses can present higher fugitive losses.
Lamination
Modern solvent-based laminators can achieve relatively efficient containment, with emissions concentrated around adhesive application and drying.
Capture first
Containment, hood performance, airflow, LEL recirculation and operator practices determine how much solvent reaches the VOC-control system.
In the flexible packaging industry, solvent-based converting activities like Rotogravure (Roto) printing, Flexographic (Flexo) printing, and Coating/Lamination/Lacquering are cornerstone processes for delivering durable, high-quality packaging materials. These operations rely on solvent-based inks, lacquers, varnishes and adhesives to achieve rapid drying and strong adhesion, but they also generate fugitive emissions, uncontrolled releases of volatile organic compounds (VOCs) in the production floor, that differ markedly across the three methods. These variations are driven by the distinct printing/converting processes, machine layouts, and the often-overlooked factor of machine age. For engineers tasked with optimizing emission controls (through a SRU™, Solvent Recovery Units or RTO™, Regenerative Thermal Oxidizers) while ensuring compliance with environmental regulations, dissecting these influences is critical.

Fugitive VOC Emissions: Scope and Significance
Fugitive emissions are VOCs that evade capture systems during solvent-based converting processes, escaping from ink, lacquer, varnish or adhesive application, drying stages, and ancillary tasks like machine cleaning or solvent handling. These emissions contribute to air pollution, operators exposure risks, and regulatory scrutiny, making their management a priority in modern packaging facilities.
The differences in emission profiles among Roto, Flexo, and Lamination reflect both operational mechanics and equipment design, amplified by the age of the machinery in use.
Even in single-line converting systems, peripheral operations and ancillary solvent handling, such as ink dispensing, adhesive mixing, and cleaning with solvent-soaked rags or automated CIP systems, require rigorous scrutiny, as they can elevate fugitive VOC concentrations beyond primary process emissions. A good operator training can help reduce the fugitive emissions: ink or adhesive tanks left open encourage solvent evaporation. Air conditioning the production room, maintaining a temperature that is not excessively hot, helps to drastically reduce fugitive emissions, also improving working conditions.
Rotogravure (Roto) Printing: Process, Layout and Machine Age
Rotogravure printing utilizes engraved metal cylinders with recessed cells to transfer solvent-based ink/lacquer/varnish onto substrates. A doctor blade ensures precision by removing excess ink, followed by high-speed drying, via hot air, typically heated through hot oil heat exchangers, or through steam coils, or through an indirect burner or through electric batteries.
Fugitive emissions in Roto are shaped by:
Roto typically generates higher fugitive emissions than Flexo or Coating/Laminating due to its solvent-intensive process, with machine age and regional manufacturing variations, significantly widening the gap in older setups lacking modern containment technology.
Flexographic (Flexo) Printing: Process, Layout and Machine Age
Flexo printing employs flexible plates mounted on a rotating cylinder, often in a central impression (CI) configuration, to apply low-viscosity, solvent-based inks. Drying occurs via hot air, typically heated through hot oil heat exchangers or an indirect burner.
Fugitive emissions in Flexo arise from:
Flexo’s fugitive emissions are generally lower than Roto’s, with older machines amplifying losses due to outdated dryers and ink pans layout.
Solvent-Based Lamination: Process, Layout and Machine Age
Lamination bonds multiple substrate layers (e.g., films, alu-foils, paper) using solvent-based adhesives to enhance barrier properties or durability. Unlike printing, it focuses on adhesive application rather than ink.
Fugitive emissions in Lamination arise from:
Recent lamination lines typically generates the lowest value of fugitive emissions among the three processes, thanks to its efficient layout and capture systems.
Why Fugitive VOC Emissions Vary: Key Influencing Factors
Estimated solvent loss as fugitive VOCs. Estimated fugitive VOC emissions by converting process. Fugitive emission levels differ across Rotogravure (Roto), Flexographic (Flexo), and solvent-based Coating/Lamination (SB_Lam) converting lines due to a combination of technical and operational variables. As a rough engineering estimate, the values below represent the percentage of solvent input estimated to be lost as fugitive VOC emissions.
Roto
Estimated fugitive VOC emissions
12-25%
Estimated percentage of solvent input lost as fugitive emissions.
Flexo
Estimated fugitive VOC emissions
8-15%
Estimated percentage of solvent input lost as fugitive emissions.
Solvent-Based Lamination
Estimated fugitive VOC emissions
8-12%
Estimated percentage of solvent input lost as fugitive emissions.
The variations of the estimated values of fugitives, are influenced by the below main factors:
These factors collectively shape the observed emission profiles, with Roto exhibiting the highest variability due to its solvent-intensive process and its spread-out layout, Flexo balancing moderate losses with layout advantages, and SB_Lam maintaining lower fugitives via efficient design, having only one (duplex) or two (triplex) coating stations.
Engineering principle: capture before abatement. A downstream Solvent Recovery Unit (SRU), thermal oxidizer or VOC concentrator can only treat the VOC load that reaches it. Reducing fugitive losses therefore starts with containment, drying-hood performance, airflow management, LEL control and disciplined solvent handling.
Engineering Solutions and Considerations
Precision-engineered solutions can mitigate fugitive emissions:
Conclusion: Reducing Fugitive VOC Emissions
Fugitive VOC emissions in solvent-based Roto, Flexo and Lamination processes depend on process mechanics, machine configuration, containment and equipment age. Roto can present the highest fugitive losses and variability, while modern Flexo and Lamination configurations can benefit from more compact or enclosed process layouts. The engineering response should begin with source containment and airflow management, followed where appropriate by DEC.RBC™ concentration and downstream solvent recovery or thermal oxidation.

