Krowne A2020 20 Inch Baffle Grease Filter Aluminum Construction - Durable
- High-performance aluminum construction ensures durability
- Designed for seamless integration into standard hoods
- Optimized grease trapping supports high throughput
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The Krowne A2020 Baffle Grease Filter is a durable, commercial-grade exhaust hood filter designed for high-performance foodservice ventilation systems. Constructed from high-quality aluminum with a thickness of 1-3/4", this filter measures 19-1/2" in height and width, with actual dimensions of 19-1/2" x 19-1/2" (nominal 20" x 20"). It effectively captures grease particles and airborne contaminants, ensuring regulatory compliance and maintaining air quality in busy kitchens. Ideal for installations in restaurant kitchens, cafeteria lines, and cafeteria ventilation systems, the A2020 filter provides reliable filtration with a standardized size tailored for efficient airflow and easy replacement.
The Krowne A2020 Baffle Grease Filter offers expert-level performance tailored for commercial exhaust systems, featuring aluminum construction for corrosion resistance and durability. Its precise dimensions facilitate seamless integration into standard ventilation hoods, reducing maintenance downtime. Designed for high-efficiency grease trapping, the filter supports easy disassembly for cleaning, ensuring longevity in demanding kitchen environments. It offers a standardized size for straightforward replacement in multiple-unit setups, supporting workflow continuity and optimizing air filtration efficiency.
Designed for high-demand commercial kitchens requiring effective grease removal and straightforward maintenance
The Krowne A2020 exhaust hood filter operates with no electrical requirements and is purely a mechanical grease filtration device. Crafted entirely from aluminum, it weighs approximately 15 lbs, providing substantial durability without imposing significant load on the hood structure. Its dimensions are precisely 20" x 20" nominal and 19-1/2" x 19-1/2" actual, with a thickness of 1-3/4". The filter features a robust aluminum construction with a simple slide-in mounting system compatible with standard commercial hoods. It is non-electrical, requiring no power, and relies solely on airflow to trap grease particles effectively. Maintenance involves disassembly for cleaning, supporting hygiene and prolonged filter lifespan. This filter's design ensures efficient grease capture while minimizing airflow resistance, essential for optimized kitchen ventilation.
A commercial exhaust hood filter is a vital component of ventilation systems used in foodservice establishments. It functions to trap grease, smoke, and airborne particles generated during cooking processes, maintaining air quality and safety standards. The Krowne A2020 is designed with aluminum baffles that optimize grease capture and airflow management. Installed within kitchen ventilation hoods, it supports efficient extraction in moderate to high-volume foodservice settings, such as restaurants or cafeterias, by reducing grease buildup in ductwork and ensuring compliant operation.
These filters are engineered for reliable grease removal and long-term durability in commercial kitchens. Krowne A2020 models provide a robust aluminum design suited for medium-volume operations, ensuring consistent airflow and ease of maintenance without metal fatigue. Ideal for restaurant ventilation systems, these filters offer efficient grease capture and simple replacement, supporting streamlined kitchen workflows.
Designed with durable aluminum construction and precise sizing, the Krowne A2020 Baffle Grease Filter ensures reliable performance and ease of maintenance in commercial kitchen ventilation systems. Its standardized 20" x 20" nominal dimensions make it compatible with a wide range of hoods, while its corrosion-resistant materials and straightforward cleaning process enhance operational efficiency. This model offers an effective, long-lasting solution for grease management that maintains air quality and supports safety in busy foodservice environments.
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