Operating instructions and technical parameters of photochemical reactor controllers


Operating Instructions of Photochemical Reactor

The controller adjusts the light source selection on the controller, so that the light source used is consistent with the one on the controller (different according to the type of light source and power)

4. Turn on the fan switch, the reactor and the light switch on the controller in sequence, and the fan starts to work (the air in the reaction dark box starts to drain out.

5. Turn on the power switch on the eight-position reactor (or magnetic stirrer) and adjust the stirring speed as required.

6. The light source power adjustment is located in the center of the controller, and the light source power can be adjusted as needed.

7. There is a microcomputer timer on the upper right of the controller, and the working time can be set as needed.

Note: When using mercury or xenon lamps for experiments, the lamp source must be placed in a quartz cold trap (it is recommended to use a low-temperature cooling circulation device at the same time to avoid instrument damage due to excessive temperature).

Reaction black box

The main box is the place where the illumination device of the series photochemical reaction instrument is placed, and has the following characteristics:

The inside of the cabinet is black to reduce light reflection.

There are 2 cooling water inlets and outlets at the rear of the cabinet.

The photoelectric parameters of the high-pressure mercury lamp are as follows:

The light emitting part of the mercury lamp is a quartz tube. Direct contact with the hand will cause pollution and affect the light intensity. The outside of the quartz vessel is usually cleaned with a small amount of alcohol and wiped with a small amount of alcohol, and the inside is cleaned with lotion.

The controller panel is equipped with switches for total power, light selection, light power, and light start. There is a fan in the controller to remove heat. There is a fuse holder on the back of the chassis. The back of the controller is provided with a 220V power input line interface.

Full quartz glass light source protection cold trap

The all-quartz or improved glass material light source protection cold trap not only has high-efficiency penetration rate of ultraviolet light, but also takes away the temperature problems caused by the light source working for a long time, ensuring that the reaction substance only receives light and does not contain effects other than the experiment itself. .

YM- GHX -V special reactor

The YM-GHX-V special reactor is a new type of reactor developed by our company. The product has a good trial effect in the laboratory of major universities in the country and is well received by users.

1. Adopt 8 sets of magnetic stirring devices and 8 sets of full quartz material test tubes to provide customers with 8 different types of experimental containers, suitable for the experiment and collection of multi-type samples.

2. The main parts of the machine are excellent in material selection, and the motor uses DC high-power motor, which has large stirring torque and low noise. The magnet uses the "NdFeB" water magnet with the strongest magnetic force as the rotor to ensure sufficient sharpness and torque.

Specification model

Stirring capacity

Stirring speed

YM-GHX-V special reactor

Max 200ml

Stepless speed regulation 0 ~ 1600

Stirring method

Operating Voltage

Strong magnetic force

220V / 50HZ

Low-temperature coolant circulation device

1. Closed circulation: Cooling coil, thermal insulation casing and other closed loop circulation devices.

2. Air-cooled freezer: equipped with air-cooled freezer, the refrigeration system has delay, overheat, overcurrent

Various protection devices. They are imported original high-quality devices to ensure reliability and service life.

3. Equipped with imported high-pressure pump: the piping size is longer, which can smoothly carry out long-distance circulation, cooling or experiment container outside the constant temperature machine or establish a second constant temperature field.

4. High-density corrosion-resistant materials: The key interfaces of circulating pumps, cooling coils, discharge ports, and return ports that can circulate pure water are all made of stainless steel (SUS304).

5. Types of circulating media: silicone oil, water, brine, pure alcohol and other commonly used circulating media in laboratories.

Skill

Note: The above product structure is explained according to the conventional configuration, and the specific configuration is subject to purchase.

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