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2400℃ Carbon Nanotube High Temperature Purification Furnace
keyword:
Carbon Nanotube High Temperature Purification Furnace
high temperature vacuum purification furnace
mesoporous carbon vacuum purification furnace
2400℃ Carbon Nanotube High Temperature Purification Furnace
Product Description:
Applications: High-temperature purification of materials such as carbon nanotubes. The carbon nanotube purification furnace employs a high-temperature purification method. This method primarily involves controlling the temperature to heat the carbon nanotube material to (1800~2200℃), then using physical techniques such as filtration, deposition, and high-temperature distillation to separate the metallic impurities and volatile components from the carbon nanotubes, thereby achieving purification.
Features:
- Low energy consumption. The product features a rapid cooling system, significantly shortening the production cycle compared to traditional equipment which has long cooling times.
- High operating temperature: Maximum operating temperature 2200℃.
- The equipment employs a constant temperature field optimization design and graphite rod (plate) resistance heating, ensuring a uniform temperature field within the furnace.
- Equipped with a programmable controller and human-machine interface, it allows for fully automated operation and monitoring, offering both fully automated and manual modes.
- High safety features: Utilizing PLC-based automatic control and protection for water, electricity, and gas, it includes protection against over-temperature, water pressure, water flow, furnace over-pressure, and water temperature issues.
Technical Parameters and Model Specifications:
- Configuration: One-to-one or one-to-two
- Maximum Operating Temperature: 2200℃
- High-Temperature Zone Dimensions: L: 200-6000mm × W: 200-1500mm × H: 200-1500mm (or customized according to user requirements)
- Furnace Operating Environment: Vacuum, Nitrogen, Argon, Hydrogen
- Temperature Uniformity: ≤±5-±15℃ (depending on the size of the high-temperature zone)
- Temperature Measurement Accuracy: 0.1%-0.5%
- Temperature Measurement Method: Low Temperature: Tungsten-Rhenium Thermocouple; High Temperature: Far-Infrared Thermometer
- Control Method: PID segmented program control and manual control.
Product Specifications:
| Product Model Specification | ZY-CHL-400 | ZY-CHL-600 | ZY-CHL-800 | ZY-CHL-1050 | ZY-CHL-1500 | |
| Size and Volume (mm) | 400×400×800 128L | 600×600×1800 648L | 800×800×2000 1280L | 1050×1050×2900 3200L | 1500×1500×6000 13500L | |
| Rated Temperature (°C) | 2400 | 2400 | 2400 | 2400 | 2200 | |
| Limiting Temperature (°C) | 2400 | 2400 | 2400 | 2400 | 2300 | |
| Configuration Power (KW) | 150 | 350 | 450 | 700 | 2000 | |
| Temperature Difference in high Temperature Zone (℃) | ±5 | ±8 | ±10 | ±15 | ±15 | |
| Temperature Control Method | PID segmented programme control and manual control (Japanese conductive instruments) | |||||
| Heating Method | Graphite rod (plate) resistance | |||||
| Operating Atmosphere | Vacuum, nitrogen, argon, hydrogen | |||||
| Ultimate Vacuum (pa) | 5 (empty furnace, cool state) (or customised according to customer requirements) | |||||
Product Showcase:

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