ZKG Series Vacuum Drum Drying Machine for Chemical Industry - 300L to 3000L Capacity with 3.2-14.2 m² Heating Area
This vacuum drum drying machine features a simple structure, convenient operation, long service life, stable performance, low steam consumption, and strong applicability. It delivers high-quality drying results, particularly suitable for heat-sensitive paste materials that are flammable, prone to oxidation, or require temperature control.
| Specification | ZKG-500 | ZKG-1000 | ZKG-2000 | ZKG-3000 | ZKG-4000 | ZKG-5000 |
|---|---|---|---|---|---|---|
| Working Volume (L) | 300 | 600 | 1200 | 1800 | 2400 | 3000 |
| Heating Area (m²) | 3.2 | 5.1 | 8.1 | 10.6 | 12.3 | 14.2 |
| Stirring Revolution (rpm) | 8-18 | |||||
| Power (kW) | 4 | 5.5 | 7.5 | 11 | 15 | 18.5 |
| Design Pressure of Jacket (MPa) | 0.3 | |||||
| Pressure in the Cylinder (MPa) | -0.096-0.15 | |||||
- Strong adaptability for various material states, especially explosive, easily oxidized, and paste materials
- High-quality product output with continuous stirring to prevent overheating and ensure moisture escape
- Low steam consumption with efficient latent heat utilization (1.3-1.8 kg steam per kg product)
- Flexible sealing options including packing seal and mechanical seal for optimal performance
- Easy operation with minimal controls and reduced environmental impact
- Pharmaceutical, food, and chemical industries
- Thick liquids, pastes, lotions, and powdery materials
- Temperature-sensitive materials requiring low-temperature drying
- Explosive, strong, stimulating, or toxic substances
- Materials requiring organic solvent recovery
This horizontal batch vacuum drying equipment uses conduction evaporation with scraper agitators to remove material from heated surfaces. The system operates under high vacuum conditions with steam-jacketed indirect heating, making it ideal for materials that cannot withstand high temperatures or are prone to oxidation. Moisture content can be reduced from 90% down to 0.05% through continuous material circulation and efficient vapor removal.
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