Anti-Fog CPP Cast Film Is Suitable For Fruit And Vegetable Packaging And Frozen Packaging
Special Anti-Fog CPP Cast Film: Elevate Fresh Produce Preservation

Our anti-fog CPP (Cast Polypropylene) film is a game-changer in fresh produce packaging, crafted through a precision-engineered process to meet the strict demands of preserving fruit and vegetable freshness.
At its core, this film begins with custom-blended special polypropylene granules—a unique formulation that lays the foundation for its exceptional performance. These carefully selected granules are then processed on advanced 5-layer co-extrusion casting equipment, a cutting-edge technology that ensures uniform material distribution, consistent thickness, and optimal integration of functional properties. The result is a CPP film that stands out in three key aspects critical to fresh produce storage:
1. Superior High Transparency
Boasting exceptional clarity, our CPP film offers unobstructed visibility of the enclosed produce. Whether it’s crisp lettuce, vibrant strawberries, or juicy avocados, customers can easily inspect the quality, color, and freshness of the items without opening the packaging. This high transparency not only enhances the product’s visual appeal on retail shelves but also builds trust by showcasing the produce’s natural quality.
2. Reliable Anti-Fog Performance
Fogging is a common issue in produce packaging, as temperature fluctuations can cause condensation, obscuring visibility and creating a moist environment that accelerates spoilage. Our film is engineered with a powerful anti-fog additive that effectively prevents condensation buildup on the inner surface. Even in cold storage or during transportation with varying temperature conditions, the film remains clear, ensuring the produce stays visible and maintaining its marketable appearance.
3. Balanced Breathability for Extended Freshness
Unlike fully sealed packaging that traps ethylene gas and excess moisture (leading to rapid ripening or mold growth), our anti-fog CPP film features controlled breathability. It enables a proper exchange of oxygen and carbon dioxide—mimicking the natural respiration process of fruits and vegetables. This balanced gas exchange slows down metabolic activity, reduces ethylene accumulation, and maintains the ideal humidity level inside the package. As a result, the produce retains its crispness, juiciness, and nutritional value for a longer period, reducing waste for retailers and extending shelf life for consumers.
Recommended Usage
To maximize the performance of our anti-fog CPP film and adapt to diverse packaging needs, we recommend the following application methods:
1. Direct Packaging or Surface Printing + Packaging: The film can be used directly for packaging fresh produce (such as wrapping individual fruits or forming pouches for leafy greens) due to its food-safe properties and inherent anti-fog, high-transparency features. It also supports surface printing—you can add brand logos, product information, or freshness guidelines on the film surface before packaging, without compromising its core functional performance.
2. Lamination with Anti-Fog BOPP/BOPET: For scenarios requiring enhanced barrier properties, tensile strength, or heat-sealability, the film can be laminated with anti-fog BOPP (Biaxially Oriented Polypropylene) or anti-fog BOPET (Biaxially Oriented Polyethylene Terephthalate). This lamination combination amplifies the anti-fog effect, improves the packaging’s durability (resisting tears during transportation), and can be tailored to meet specific moisture or oxygen barrier requirements for different produce types.
3. Dry Lamination Recommended; Solvent-Free Lamination Not Recommended: When lamination is needed, we strongly suggest adopting dry lamination technology. Dry lamination ensures strong adhesion between the anti-fog CPP film and the paired BOPP/BOPET layers, while preserving the film’s anti-fog additive effectiveness and breathability balance. Solvent-free lamination is not recommended, as it may interfere with the film’s functional additives or disrupt the controlled gas exchange structure, affecting anti-fog performance and produce preservation results.







