Core Advantages
- Superior Corrosion Resistance
- Made from graphite-modified PP and food-grade polyethylene (PE), capable of withstanding acids, alkalis, solvents, and high-purity liquids .
- Ideal for aggressive media such as sulfuric acid, chlorides, and organic solvents, with a service life 2–3× longer than traditional metal exchangers .
- High Thermal Efficiency & Compact Design
- Thin-walled graphite-PP tubes enhance heat transfer by 30% compared to standard PP models, achieving rapid temperature control .
- Modular structure reduces footprint by 40%, suitable for space-constrained facilities .
- Lightweight & Easy Maintenance
- PP material (density: 0.91–0.93 g/cm³) ensures portability and lowers installation costs .
- Smooth inner surfaces resist scaling and microbial growth, minimizing downtime .
- Broad Temperature & Pressure Tolerance
- Operates reliably from -20°C to 130°C and withstands pressures up to 0.3 MPa, adaptable to volatile or high-temperature fluids .
- Eco-Friendly & Cost-Effective
- Zero chemical leaching and compliance with CE certification ensure environmental safety .
- Low energy consumption and 15+ years of operational lifespan reduce total ownership costs by 25% .
Technical Specifications
Parameter | Specification |
---|---|
Material | Graphite-modified PP/PE |
Temperature Range | -20°C to 130°C |
Pressure Resistance | ≤0.3 MPa |
Heat Transfer Area | 2–200 m² (customizable up to 300 m²) |
Thermal Conductivity | 0.1–0.3 W/m·K |
Certifications | ISO 9001, |
Industry Applications
- Chemical & Petrochemical
- Cooling/condensation of acids, alkalis, and organic solvents in reactors .
- Pharmaceuticals
- Solvent recovery and temperature regulation in drug synthesis .
- Food & Beverage
- Heat exchange for edible oils, syrups, and sterilization processes (GMP-compliant) .
- Energy & Electronics
- Thermal management in battery electrolyte production and ultrapure water systems .
- Environmental Protection
- Waste heat recovery and emission control in wastewater treatment .