Fluidized Bed Reactor

Fluidized Bed Reactor

A fluidized bed is composed of several parts: the shell body, the gas distribution device, internal components, heat exchange device, gas-solid separation device, and solid particle discharge device.
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Product introduction

 

A fluidized bed reactor is a device that fluidizes solid particles in a gas stream and undergoes a reaction. It is widely used in research on processes such as catalytic reactions and fuel conversion.

 

Product advantages

 

Precise Control
Equipped with a multi-channel pressure and temperature monitoring system, it achieves a control accuracy of ±0.5%, ensuring stable reaction conditions.

 

Safety Protection
Equipped with a safety valve and alarm, it automatically shuts off the gas supply in the event of overpressure to prevent accidents.

 

Corrosion-Resistant Materials
Using 304L stainless steel and fluororubber seals, it offers long-term resistance to corrosion from acids, alkalis, and organic solvents.

 

Efficient Heat Transfer
Using a double-jacketed insulation structure and equipped with high-thermal conductivity metal pipes, it returns to the set temperature within 10 seconds.

 

Product Specifications

 

Size: Non-standard design
Weight: Non-standard design
Power: AC 220V, 50/60Hz
Operational Environment: 0-50°C, 5%-95% RH

 

System Configuration Module

 

Process Module: Feed, separation, transfer, reaction, and regeneration.

Reactor Structure: Cylindrical bottom cone made of stainless steel.

Gas Distribution System: Bend type, reduction type, concentric circular cone, flower aspersed, and guide plate structures.

Heat Exchange Unit: Single-tube and tube-bundle ring type heat exchangers.

Gas-Solid Separation Unit: Cyclone separator and bag-type dust collector.

Feed & Transfer System: Gravity flow, mechanical transmission, and pneumatic conveying.

Pressure & Flow Monitoring: Wind pressure tubes measuring inlet and outlet pressures.

Sampling & Analysis Interface: Bypass shunt interface with GC connection and gas analysis capability.

Material Transfer: Riser-based air transfer system for solid movement.

Pneumatic Valve: Air-driven valve with L- or U-shaped structure.

Gas Stream: Forward air blower for stable gas flow.

Automation Control: PLC-based control system for velocity and preheating temperature.

Installation: Integrated device with supporting frame and lifting mechanism.

 

FAQ

 

Q: How effective is gas-solid separation?

A: Equipped with a cyclone separator and bag filter system, the separation efficiency can reach over 99.5%.

Q: Does the equipment support continuous operation?

A: It supports long-term continuous operation, with stable operation for over 1,000 hours.

Q: Can the reactor be customized to meet customer needs?

A: We support full customization, including volume, gas connections, heating methods, and automated controls.

Q: How long does the customization process take?

A: Standard equipment is approximately 15–20 business days, while customized equipment is approximately 30–45 business days.

Q: How is the price calculated?

A: We provide a customized quote based on specifications, configuration, and features, along with a detailed price list.

 

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