The carbon dioxide pressurization system is an experimental device that integrates carbon dioxide pressurization and high-temperature and high-pressure reactions, specifically designed for material synthesis, chemical reactions, or foaming process research under supercritical carbon dioxide conditions. The system process flow is complete: firstly, gaseous carbon dioxide is liquefied by a condenser, then precisely pressurized to the set pressure by a high-pressure plunger pump, and then transported to the NSV reactor for reaction; After the reaction is complete, the instantaneous release of the product can be achieved through a rapid pressure relief valve.
CO2 pressurization system
Product Introduction
CO2 pressurization systemThis system is an experimental device that integrates carbon dioxide pressurization and high-temperature and high-pressure reactions, specifically designed for material synthesis, chemical reactions, or foaming process research under supercritical carbon dioxide conditions. The system process flow is complete: firstly, gaseous carbon dioxide is liquefied by a condenser, then precisely pressurized to the set pressure by a high-pressure plunger pump, and then transported to the NSV reactor for reaction; After the reaction is complete, the instantaneous release of the product can be achieved through a rapid pressure relief valve.
The core parameters of the system include: NSV reactor design pressure of 15MPa, design temperature of 200 ℃, full volume of 100mL, and top sapphire mirror; The supporting carbon dioxide booster pump has an output pressure of 30MPa and a flow range of 0.01-50ml/min, which can achieve precise delivery and pressure control of high-pressure fluids.
The entire system adopts a modular layout, with core components made of 316L stainless steel material, which has excellent pressure and corrosion resistance performance. The control system integrates real-time temperature and pressure monitoring and two-level safety alarm interlocking, and can achieve automatic constant pressure control through the linkage of pressure sensors and booster pumps.
The system supports dual mode operation of local touch screen and remote computer, facilitating precise control and data recording of the experimental process, providing a safe, reliable, and intelligent experimental platform for supercritical carbon dioxide related research.
Product Features
1. Ultra high pressure capability: The design pressure of the reaction vessel is 15MPa, and the output of the booster pump is 30MPa.
2. Intelligent pressure linkage control: The pump and sensor are closed-loop linked to automatically maintain the target pressure.
3. Complete CO ₂ supercritical process: integrated condensation liquefaction, pressurized transportation, and reaction control.
4. Modular and flexible layout: The pressurization and reaction modules can be separated, with a compact structure.
5. Double safety protection: equipped with a burst valve and two-stage pressure temperature interlock.
6. Remote intelligence, convenient control: supports remote viewing and control on computers or mobile phones, enabling real-time monitoring and experimentation in different locations.
Technical Specifications
volume |
100mL |
design pressure |
15MPa |
design temperature |
200℃ |
Material of kettle body and kettle head |
316L stainless steel |
Inlet and exhaust valves |
Fitok ball valve, Fitok needle valve |
safety valve |
Fitok safety valve |
explosion-proof valve |
X-tec blasting valve |
Pressure measuring element |
WIKA pressure gauge, MEAS pressure transmitter |
Heating method |
electric heating |
Control method |
Color touch screen displays temperature, speed, working time, etc |
Material release structure |
/ |
Other safety designs |
Overtemperature alarm, overpressure alarm |
power supply |
AC220V, The overall power of the machine is 2.5KW |
Overall dimensions |
480mm (length) * 700mm (width) * 1600mm (height) |
Industry classification and application direction: Material changes in supercritical carbon dioxide atmosphere