| External Power | Working voltage: AC 220V+-10% 50Hz |
| Operating Temperature | 20-40 deg C |
| Type | Photochemical Reactor |
| Usage/Application | parallel light reactor is mainly used in university chemistry, chemical engineering, materials, medi |
| Weight | 10 kg |
Minimum order quantity: 1 Unit
The Tianyi Zhongke PhotoSyn4.0 Parallel Photoreactor - Visible Light Reaction Instrument is an experimental device that uses visible light to promote chemical reactions. Its operating principle is based on visible light irradiation to excite substrates or catalysts, thereby generating highly reactive free radical species through energy or electron transfer, accelerating chemical reactions. This allows previously difficult chemical transformations to be achieved under mild conditions. By controlling the visible light irradiation conditions and the properties of the catalyst, researchers can achieve rapid and environmentally friendly chemical reactions, potentially contributing to sustainable development and green chemistry.
2Technical Parametersa: Working voltage: AC 220V±10% 50Hz
b: Power: 800W
c: Workplace temperature: 10-40℃.
d: Suitable humidity in the workplace: 20%-80%.
e: Number of response bits: 16 bits.
f: Light wave: 253-765nm optional.
g: Light source: Various light sources such as ultraviolet light can be selected at will.
h: Various reaction tubes can be matched arbitrarily.
03Features
a: It uses a 7-inch capacitive touch LCD screen, which is easy to operate.
b: Use two light sources as a group, and the same parallel reaction light source maintains homogeneity.
c: The light source adopts a plug-in module design and wireless group connection. The light source can be replaced at will and the operation is simple.
d: With magnetic stirring function, 16 sample positions are divided into 4 blocks. The stirring control of each block can be turned on and off separately, and the stirring speed can be set.
e: Built-in cooling circulation device. Can be connected to a cold water system.
f: The light source intensity can be set arbitrarily. The light source intensity can be adjusted in real time according to needs to adapt to different reactions.
g: The parallel light source design adopts even-digit control. The 16 light source assemblies are divided into 8 groups, each with 2 light sources, divided into 4 blocks. Each group of light sources can be turned on and off independently, and the light source intensity can be controlled independently.