


Meltblown nonwoven's microscopic fibers form a complex fabric that can effectively trap even the smallest particles. Thanks to this structure, it offers an exceptional balance between filtration efficiency and air permeability, making it an ideal media for a wide range of applications. When precision filtration matters, Delpore™ and NeenahPure™ meltblown nonwoven filter media are a trusted solutions. Designed to deliver exceptional efficiency up to 99.9%, our advanced meltblown media provide the ideal balance of performance and reliability, ensuring superior filtration for various air filtration applications. Whether you’re in critical industries or seeking specialized filtration solutions, our meltblown media guarantees high efficiency with a low-pressure drop, keeping your operations smooth and efficient.
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A high-efficiency particle layer is what differentiates ordinary air filtration products from exceptional ones. NeenahPure™ - our meltblown nonwoven filter media provide superior filtration performance with high dust holding capacity, low resistance to airflow, and high removal efficiency.
NeenahPure™ is highly adaptable for pleatable and bag filter applications in HVAC systems, air purification units, and pollution control solutions.
Learn more about Nonwoven with Activated Carbon
Cranglas™ is an innovative, high-performance nonwoven material designed to address the challenges of climate control. By delivering advanced insulation, moisture regulation, and temperature management, Cranglas™ is setting a new standard for sustainable and effective climate control. Uniform density and flame retardancy help to use this wet-laid nonwoven as support for climate control.
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Range of Efficiencies
Our filter media delivers efficiencies from MERV 8 to MERV 16 (ASHRAE), ePM10 to ePM1 (ISO 16890), and G4 to F9 (EN779), ensuring cleaner air and healthier environments
Comprehensive Solutions
We offer filter media for pleatable and bag filter elements backed by multiple technologies, including meltblown nonwovens, activated carbon and glass wetlaid nonwoven.
Developed for Optimal Performance






When it comes to air filtration, efficiency and simplicity are key. One innovative solution that has emerged is combining filter media and pleat support into a single, ready-to-convert product. This combination not only optimizes the manufacturing process but also enhances the performance of air filters.
Here’s a deeper look at the advantages of this laminated solution and why it’s a game-changer in air filter production.
A Streamlined Production Process - Save an extra production step. This ready-to-convert solution simplifies the manufacturing workflow, enabling faster production cycles. For filter manufacturers, this translates into reduced operational costs and improved production efficiency
Versatile Compatibility - Any nonwoven material can be seamlessly integrated with Naltex™ and Conwed™ nettings or Delnet™ apertured films
Enhanced Pleat Separation and Durability - Naltex™ and Conwed™ nettings actively maintain pleat separation, ensuring optimal airflow and extending the filter’s dust-holding capacity (DHC). These nettings are available in various polymer options, including PA, PP, and PET, each with multiple features tailored for specific applications. By keeping the pleats evenly distributed, this solution ensures consistent, reliable performance over time
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Even if fully synthetic materials and components do not always have a good reputation, they are often the better solution compared to metal alternatives. In filtration technology, synthetic filter components offer a range of compelling benefits that make them the superior choice over components made from metal or other raw materials.

More than ten years ago, GESSNER pioneered a proprietary gradient technology for cellulose and cellulose‑polyester filter media - an innovation that continues to set new performance standards in filtration.
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GESSNER announces wage saturation to open its technology portfolio to customers for optimizing material performance for filtration and specialty applications.