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The Labshark high pressure reactor (also referred to as a high pressure lab reactor, pressure reactor, or pressurized reactor) is a benchtop instrument that integrates stirring, heating, and reaction functions. It adopts a static seal structure with magnetic drive technology to prevent medium leakage, making it suitable for chemical reactions involving gas-liquid, liquid-liquid, and liquid-solid three-phase materials.
Available in three series—L-TGYF-B, L-TGYF-C, and L-CF—this lab scale high pressure reactor covers capacities from 0.05L to 20L with design pressure up to 22 MPa. The high pressure unit features PID temperature control with ±1°C accuracy, LCD keypad operation, and rapid cooling via separable vessel and heater. Whether you need a pressure reactor for hydrogenation, a high pressure reactor for catalysis research, or a pressurized reactor for materials science, Labshark provides reliable and safe solutions.
Parameter | 0.05L | 0.1L | 0.25L | 0.5L | 1L |
|---|---|---|---|---|---|
Material | 304 (standard); 316L / Hastelloy C276 (optional) | ||||
Design Pressure | 22 MPa | 22 MPa | 22 MPa | 22 MPa | 22 MPa |
Design Temperature | 200°C | 200°C | 200°C | 200°C | 200°C |
Sealing Method | Magnetic drive, static seal, Type A | ||||
Stirring Speed | 0-1000 rpm | ||||
Stirring Type | Magnetic stirring | ||||
Heating Method | Electric heating (jacketed oil bath heating) | ||||
Heating Power | 0.6 kW | 0.6 kW | 0.8 kW | 1.5 kW | 1.5 kW |
Temperature Control Accuracy | ±1°C | ±1°C | ±1°C | ±1°C | ±1°C |
Temperature Set Range | 0-230°C | ||||
Time Set Range | 0-9999 min | ||||
Product Dimensions | 310×370×345 mm | 330×330×525 mm | 330×330×525 mm | 350×330×570 mm | 395×285×505 mm |
Product Weight | 10 kg | 13 kg | 16.5 kg | 20 kg | 34 kg |
Parameter | 0.05L | 0.1L | 0.25L | 0.5L | 1L |
|---|---|---|---|---|---|
Material | 304 (standard); 316L / Hastelloy C276 (optional) | ||||
Design Pressure | 22 MPa | 22 MPa | 22 MPa | 22 MPa | 22 MPa |
Design Temperature | 350°C | 350°C | 350°C | 350°C | 350°C |
Sealing Method | Magnetic drive, static seal, Type A | ||||
Stirring Speed | 0-1000 rpm | ||||
Stirring Type | Magnetic coupling stirring | ||||
Heating Method | Electric heating (jacketed oil bath heating) | ||||
Heating Power | 0.6 kW | 0.8 kW | 0.8 kW | 1.5 kW | 1.5 kW |
Temperature Control Accuracy | ±1°C | ±1°C | ±1°C | ±1°C | ±1°C |
Temperature Set Range | 0-320°C | ||||
Operating Voltage | 220 VAC ±10% (110 VAC available on request), 50/60 Hz | ||||
Product Dimensions | 310×370×370 mm | 330×330×545 mm | 330×330×545 mm | 350×330×590 mm | 395×285×535 mm |
Product Weight | 11.5 kg | 14.5 kg | 18 kg | 22 kg | 38 kg |
Parameter | 0.05L | 0.1L | 0.25L | 0.5L | 1L | 2L | 3L | 5L | 10L | 20L |
|---|---|---|---|---|---|---|---|---|---|---|
Material | 304 (standard); 316L / Hastelloy C276 (optional) | |||||||||
Design Pressure | 22 MPa | |||||||||
Product Weight | 5.5 kg | 7.5 kg | 10 kg | 15 kg | 24 kg | 46 kg | - | - | - | - |
Product Dimensions | 310×300×320 mm | 330×260×350 mm | 330×260×400 mm | 350×338×425 mm | 370×307×500 mm | 450×450×520 mm | - | - | - | - |
The high pressure reactor utilizes advanced magnetic drive static seal technology, which completely prevents medium leakage. This is a critical safety feature for high pressure reactions involving flammable, explosive, or highly toxic media, ensuring a contamination-free environment and prolonging the lifespan of the pressure reactor.
This pressurized reactor features an integrated control system with digital display of temperature and rotational speed. The temperature control accuracy is ±1°C, providing precise and reproducible reaction conditions. This makes it ideal for sensitive chemical synthesis and catalysis research in lab scale high pressure reactors.
The reactor vessel and heater can be separated, enabling rapid cooling of the reaction mixture. This feature allows for quick quenching of reactions, saving time and improving experimental efficiency for high pressure reactions and high pressure units.
Equipped with a pressure gauge and an explosion-proof device, this high pressure reactor ensures maximum safety during operation. Users can monitor the internal pressure in real-time, and the explosion-proof device provides an additional layer of protection against overpressure conditions. This makes it a reliable high pressure unit for demanding laboratory environments.
The pressure reactor is made of high-quality 304 stainless steel (standard) with optional 316L stainless steel or Hastelloy C276 for highly corrosive applications. The high-strength metal structure ensures structural stability, durability, and a long service life, making it a reliable high pressure reactor for demanding lab environments.
The pressure reactor features an intuitive LCD display with keypad operation, allowing for easy setting of temperature, time, and stirring speed. The user-friendly interface makes it convenient for researchers to program and monitor their experiments. This makes it one of the most user-friendly high pressure reactors available.
The high pressure reactor features integrated molding for enhanced durability, providing structural stability, high safety, and long service life. The built-in temperature sensor captures temperature fluctuations accurately, ensuring good stability and easy cleaning.
Your Need | Recommended Model |
|---|---|
Standard high-pressure reactions up to 200°C | L-TGYF-B – 22 MPa, 200°C, magnetic stirring. |
High-temperature reactions up to 350°C | L-TGYF-C – 22 MPa, 350°C, magnetic coupling stirring. |
Simple, cost-effective reactions (0.05L-20L) | L-CF – Basic design, multiple capacities. |
Place the high pressure reactor on a stable, flat, and level work surface.
Ensure the power supply meets the specified voltage requirements (220 VAC or 110 VAC).
Check that the pressure gauge and explosion-proof device are properly installed.
Open the reactor vessel and load your chemical reactants.
Close the vessel lid securely, ensuring the static seal is properly seated.
When tightening the main nuts, apply force diagonally and symmetrically in multiple steps, with uniform pressure. The reactor cover must not tilt to one side.
Use the keypad and LCD display to set the desired temperature (within the model's range).
Set the stirring speed (0-1000 rpm) using the digital control.
Set the reaction time (0-9999 min) as required.
Turn on the heating and stirring functions.
Monitor the temperature display to ensure it maintains the set value (±1°C accuracy).
Monitor the pressure gauge to ensure it remains within safe limits.
When the reaction is complete, turn off the heating.
Rapid cooling: The reactor vessel can be separated from the heater to speed up cooling.
Wait until the temperature drops to a safe level before opening the vessel.
Precautions:
When tightening the main nuts, apply force diagonally and symmetrically in multiple steps.
Do not exceed the design pressure (22 MPa) or design temperature (200°C / 350°C) of the reactor.
Take special care not to scratch the sealing surfaces of the reactor body and cover.
If a leak is detected, immediately stop the operation and check the sealing ring.
The filling degree of the reactor should not exceed 80%.
Our high pressure reactors are widely used in:
Chemical Synthesis: High-pressure reactions such as hydrogenation, oxidation, and polymerization.
Catalysis Research: Heterogeneous and homogeneous catalytic reactions.
Pharmaceutical R&D: Drug synthesis and intermediate production.
Material Science: Supercritical fluid extraction and nanomaterial synthesis.
Petrochemical Industry: Cracking, reforming, and other high-pressure processes.
Whether you need a high pressure lab reactor for research, a pressure reactor for pilot-scale testing, or a pressurized reactor for industrial applications, Labshark provides reliable and safe solutions.
A: The high pressure reactor is designed for a maximum pressure of 22 MPa, ensuring safe operation for high-pressure reactions.
A: Yes. Hastelloy C276 is available as an optional material for highly corrosive environments where 304 or 316L stainless steel is not sufficient.
A: The magnetic drive transmits torque from the motor to the stirring shaft without any dynamic seal, preventing medium leakage and ensuring a contamination-free reaction environment.
A: The pressure reactor features a temperature control accuracy of ±1°C, providing precise and reproducible reaction conditions.
A: Yes. The reactor vessel and heater can be separated, enabling rapid cooling of the reaction mixture and improving experimental efficiency.
Whether you are a chemist, materials scientist, or pharmaceutical researcher, Labshark high pressure reactors offer the perfect combination of safety, precision, and durability. Choose from L-TGYF-B, L-TGYF-C, or L-CF models to match your specific reaction requirements.
Order your Labshark high pressure reactor today! Bulk inquiries and custom configurations are welcome – contact our team for assistance.