Resistant To Acids And Alkalis Acrylic Filter Media High Porosity For Filtration
Product Overview
The Acrylic Filter Media is a high-performance filtration product designed for industrial and commercial applications. Manufactured from premium quality acrylic polymer, this filter media offers exceptional clarity, durability, and chemical resistance, with a density of 1.18 G/cm³ for optimal strength and lightweight performance.
Key Features
- Available in both transparent and white color options
- Excellent resistance to acids and alkalis for chemical processing applications
- High porosity design for efficient filtration with optimal flow rates
- Particle size range: 0.5 - 2 mm
- Durable acrylic polymer construction with density of 1.18 g/cm³
- Can be cleaned and reused, reducing operational costs
- Large surface area for enhanced filtration capacity
- Environmentally friendly and recyclable material
Technical Specifications
| Parameter |
Specification |
| Application |
Water Purification, Air Filtration |
| Chemical Resistance |
Resistant To Acids And Alkalis |
| Temperature Range |
-20°C To 80°C |
| Particle Size |
0.5 - 2 mm |
| Porosity |
High Porosity For Filtration |
| Material |
Acrylic Polymer |
| Flow Rate |
Optimized For High Flow Rates |
| Density |
1.18 g/cm³ |
| Regeneration |
Can Be Cleaned And Reused |
| Surface Area |
Large Surface Area |
Applications
The Acrylic Filter Media is suitable for diverse industrial and commercial applications:
- Air Filtration: HVAC systems, clean rooms, ventilation units
- Water Treatment: Industrial wastewater, aquaculture, food processing
- Automotive/Aerospace: Engine air intake systems, cabin air filters
- Laboratory Use: Gas and liquid filtration for scientific research
- Chemical Processing: Acid/alkali resistant filtration solutions
- Pharmaceutical: Sterilization and purification processes
With its temperature stability (-20°C to 80°C) and chemical resistance, this filter media delivers reliable performance across various operating conditions while maintaining structural integrity and filtration efficiency.