The TCU temperature control system uses a centralized cold and heat source (primary system) to supply heat to the circulation loop (secondary temperature control system) that controls the temperature of the process equipment. The secondary temperature control system (ARDJ series models) is used to accurately control the temperature of the process system and achieve only one heat transfer medium in the reactor jacket.
The TCU temperature control system uses a centralized cold and heat source (primary system) to supply heat to the circulation loop (secondary temperature control system) that controls the temperature of the process equipment. The secondary temperature control system (ARDJ series models) is used to accurately control the temperature of the process system and achieve only one heat transfer medium in the reactor jacket.
1. Existing cold and heat sources (such as steam, boiler heat sources, cooling water, low-temperature freezing sources, etc.) can be utilized.
2. By using a heat exchanger for cold and hot heat exchange and utilizing high and low temperature heat sources for heat transfer and temperature control, a wide temperature range can be achieved, allowing for temperature control over the entire range of -110~300 ℃ and stabilizing the temperature of process equipment.
3. Customize temperature control systems for different cold and heat sources
4. It can be equipped with an electric heater to assist in heating, allowing the TCU temperature control system to reach a higher design temperature; The maximum design temperature can reach 400 ℃, and the working temperature is 380 ℃.
5. Adopting cascade control to accurately and quickly calculate and control the temperature change process of the entire reaction, the endothermic and exothermic reactions in the entire reaction process can be accurately and quickly responded to.
6. DCS realizes intelligent control of the entire plant's Internet of Things.
Temperature rangeTemp Accuracy power supplyHeat transfer mediaHeating methodPump PressureMaximum power consumptionCooling water pipingExpansion tank capacity
| (UNIT) | Model | ||||||
| ARDJ-20 | ARDJ-30 | ARDJ-50 | ARDJ-60 | ARDJ-75 | |||
| Temp control range | ℃ | (-40℃-135℃ | |||||
| Tempcontrol accuracy | ℃ | PID±1℃ | |||||
| Power supply | / | 3P AC380V/480V 50HZ(3phase+Earth) | |||||
| Heat transfer medium | / | Ethylene glycol aqueous solution | |||||
| Cooling method | Cooling method | / | Indirect cooling | ||||
| Heating method | / | Indirect heat | |||||
| Heat Exchange Area | Heat transfer area | m² | 3.5 | 5 | 8 | 12.5 | 20 |
| Pump horsepower | Horsepower of pump | hp | 2 | 3 | 5.0 | 6.0 | 7.5 |
| Pump flow rate | Pump flow | L/min | 200 | 250 | 300 | 400 | 533 |
| Pump pressure | kg/cm² | 2.0 | 2.2 | 3.0 | 4.0 | 5.0 | |
| Max.power consumption | KW | 1.5 | 2.2 | 4 | 4.5 | 5.5 | |
| Alarm | Alarm function | / | Pump reversal/Water shortage/Excess temperature/Overload | ||||
| Cooling water pipe | inch | 1.5″ | 1.5″ | 2″ | 2.5″ | 3″ | |
| Circulating water piping | Circulating water pipe | inch | 1.5″ | 1.5″ | 2″ | 2.5″ | 3″ |
| Expansion tank volume | L | 100 | 150 | 200 | 350 | 500 | |
| ★The specifications above are subject to changes without notice ,some specifications may be customized. | |||||||

One-stop service

Quick after-sales response

Internal on-site troubleshooting

Technical Service