Reaction kettles are widely used for hydrolysis, neutralization, crystallization, distillation, evaporation, storage, hydrogenation, hydrocarbonization, polymerization, condensation, heating and mixing, and constant temperature reactions in oil, chemicals, rubber, pesticides, dyes, pharmaceuticals, and pharmaceuticals, as well as in a variety of scientific research projects. The temperature is stable during temperature control, the rate of temperature rise and fall is fast, continuous and stable operation is possible, and the temperature of the reaction process is recorded in real time.
Microchannel reactors can perform different types of reactions, and are suitable for rapid (strongly exothermic), liquid-liquid, liquid-hydride, and adsorption/exothermic reactions, as well as nitrification, sulfonation, oxidation, peroxidation, alkylation, amination, and photoluminescence reactions. It can be used for the development of microreaction processes and the synthesis of fine chemicals.
Wide temperature range, high precision intelligent temperature control, single-fluid temperature control, no need for additional heat transfer media, high efficiency and stable production.
In the new energy automotive industry, temperature control is mainly used in testing, inspection stands and material testing. Most of the components in automobiles are tested under extreme temperature variations to ensure proper operation and reliability before they are put to practical use. Testing many different components on test stands is important for quality and reliability. Simulating extreme ambient temperatures over a wide temperature range is an important part of materials testing. Temperature control of multiple samples simultaneously and the ability of the control system to record and export temperature data during testing are sufficient to test most components under extreme temperature variations.
Provides historical alarms, temperatures, curves, and can export temperature data.
Totally enclosed piping design improves heat utilization and reduces the risk of heat-conducting medium volatilization and moisture absorption.
When 200℃ high temperature, the compressor automatically turns on to reduce the temperature.
-80 ℃ ~ 200 ℃ temperature range without replacing the heat conduction medium to achieve continuous temperature control
Multi-function alarm system and safety function, superior performance, high precision, intelligent temperature control.
Model |
DMC-1020 |
DMC-1030 |
DMC-1040 |
DMC-1060 |
DMC-1090 |
DMC-1120 |
|
Temp. Range (℃) |
-35~200 |
-35~200 |
-40~200 |
-40~200 |
-40~200 |
-40~200 |
|
Display |
0.1 |
0.1 |
0.1 |
0.1 |
0.1 |
0.1 |
|
Temp. Accuracy (℃) |
±0.5 |
±0.5 |
±0.5 |
±0.5 |
±0.5 |
±0.5 |
|
Expansion Volume(L) |
3 |
3 |
9 |
9 |
9 |
9 |
|
Minimum Filling Volume(L) |
3.5 |
3.5 |
4.5 |
4.5 |
7 |
7 |
|
Heating Power(kW) |
2.5 |
3.5 |
5.5 |
7.5 |
11.5 |
14.5 |
|
Cooling Capacity |
(200℃/kW) |
2.2 |
3.5 |
5.5 |
7.5 |
10 |
13.5 |
(45℃/kW) |
2.2 |
3.5 |
5.5 |
7.5 |
10 |
13.5 |
|
(25℃/kW) |
2 |
3 |
4.4 |
6.2 |
9 |
12 |
|
(0℃/kW) |
1.8 |
2.7 |
3.8 |
5.8 |
8.6 |
11.5 |
|
(-10℃/kW) |
1.5 |
2 |
3.2 |
5.2 |
7.5 |
10 |
|
(-20℃/kW) |
0.9 |
1.5 |
2.2 |
3.3 |
4.2 |
5.5 |
|
(-30℃/kW) |
0.3 |
0.5 |
0.82 |
1.4 |
2.1 |
3 |
|
(-40℃/kW) |
/ |
/ |
0.3 |
0.5 |
0.8 |
1.1 |
|
Circulating Pump |
Maximum Flow |
20 |
20 |
40 |
40 |
60 |
60 |
Maximum Pump Pressure(bar) |
4 |
4 |
4 |
4 |
4 |
4 |
|
Interface size |
G1/2 internal thread |
G1/2 internal thread |
G3/4 internal thread |
G3/4 internal thread |
G1 internal thread |
G1 internal thread |
|
Noise Level (dB) |
62 |
65 |
68 |
69 |
70 |
73 |
|
Weight(kg) |
65 |
70 |
120 |
135 |
180 |
190 |
|
Dimension |
450x680x1100 |
450x680x1100 |
540x680x1420 |
540x680x1420 |
750x890x1770 |
750x890x1770 |
|
Total Power(kW) |
3.8 |
5.1 |
7.9 |
11 |
16 |
21 |
|
Power Supply |
220V/50Hz~1 |
380V/50Hz~3 |
380V/50Hz~3 |
380V/50Hz~3 |
380V/50Hz~3 |
380V/50Hz~3 |
Note: Water-cooled models are optional, model number suffixed with “s”; explosion-proof models are optional, model number suffixed with “EX”