There are usually three ways to control the temperature of laboratory reactors

1. Manual control: Manually operate the knob on the front of the reactor controller.
2. Control by PC: The PC and the controller are connected by a network cable, and the operation is carried out on the PC.
3. Controlled by thermostat: Silicone oil is heated through the thermostat, and the thermostat naturally has a temperature control function. Although the thermostat heating limit (usually 250°C) is not as high as that of electric heating (can be as high as 400-500°C), the thermostat rises and falls smoothly, and the low temperature can reach -60/-80°C.
Our LNEYA laboratory reactor temperature control system belongs to the third category. However, the temperature control range is from -120 degrees to 350 degrees. It adopts a fully enclosed pipeline design and a high-efficiency plate heat exchanger, which reduces the demand for heat transfer oil, improves the heat utilization rate of the system, and realizes rapid temperature rise and fall. Continuous temperature control can be achieved in the temperature range of minus 90 degrees to 195 degrees and minus 70 degrees to 220 degrees without pressure.
Jacketed glass reactors are popular in current chemical experiments. The supporting temperature control equipment has also become a matter of widespread concern in the industry. It is known that the cooling and heating temperature in the reaction process has an absolute influence on the reaction process and results. The analysis of the temperature control equipment’s ability to increase and decrease the temperature of the material has become the basic basis for choosing chiller. Then the cooling and heating capacity is not only estimated by imagination and experience, but requires scientific analysis and calculation methods, and needs to calculate the required heating power and cooling power according to the heating rate and cooling rate.
When our technicians communicate with customers, they will first understand the requirements of engineering parameters, such as high and low temperature, how long is the temperature control time, etc., so as to calculate the cooling power and heating power of the chiller required, and determine the available chiller. model, to give customers the most complete temperature control solution. If you also have this need, you can contact us.
関連推奨品
-
高温試験装置関連のトラブルシューティング
1077高温の試験装置は、水循環の水不足が主な原因です。このように、水槽の右下にある水位計が約80%になるまで、浄化された水を水槽に補給する ...
詳細を見る -
Specific conditions of high and low temperature test of EV (electric vehicle) battery
1272There are mainly 2 types of vehicles:1. Battery for pure electric vehicle2. Fuel cell, dedicated to fuel cell electric vehicles Thermal test: This test is performed to characterize the reaction of cells to the high-temperature environment. a) Adju...
詳細を見る -
40GW極低温冷凍機の機種選定と分類の説明
1145無錫官哉40GW極低温冷凍機は、企業や業種が違えば、機種選定も異なります。ですから、40GW極低温冷凍機の選択のニーズを明確に理解する方がよいでしょう。
詳細を見る -
流体伝熱温度制御システムの操作ミスを防ぐには?
991流体伝熱温度制御システムの運転中、流体伝熱温度制御システムが故障した場合、主な原因は操作ミスである。では、どうすればミスを避けることができるのか。1.1.流体熱伝達温度制御システムの操作...
詳細を見る