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CEL-OPTH -Ⅵ photocatalytic system

Product ID:SYHCchpj026

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  • Product Introduction
  • Consulting
  • Model NumberCEL-OPTH -Ⅵ
    Brand NameZHONGJIAOJINYUAN
    Payment TermsTT,PAYPAL
    CEL-OPTH - photocatalytic system
    Introduction:
    CEL-OPTH - photoinduced synthesis catalytic system (photothermal synergy) realizes the synthesis of new catalytic materials and characterization of photothermal catalytic activity under the action of photoinduction. The system is composed of high temperature reaction furnace, quartz reaction tube, flange joint, light guide column, console, etc. The advantage of the system is that during the high temperature heating process, the light generated by the xenon lamp light source selected above can be introduced into the quartz reaction tube from the outside to the inside through the light guide column and irradiated on the reaction sample, realizing the photothermal catalysis synergy.
    characteristic:
    1. The high-temperature photothermal catalytic reaction system realizes the photocatalytic reaction system in the high-temperature process, and the temperature difference in the working area is less than ± 1 ;
    2. Light sources such as ultraviolet, visible and infrared light can be irradiated on the surface of catalyst materials to achieve photothermal synergy;
    3. Photothermal catalytic reactor is made of quartz glass tube with high transmittance, including a special sample table for quartz;
    4. It can realize the functions of atmosphere protection, vacuum extraction, multiple gas flow control, etc;
    5. The system adopts an integrated structural design, which can adjust the sample position at any time to achieve rapid heating or cooling;
    6. Adopt modular design, light source, high-temperature reaction furnace, high-temperature quartz reactor, high vacuum, etc., which can be adjusted according to the experiment.
    Technical parameters:
    Heating power: 1-stage temperature control heating, 1000W (220V, 50Hz)
    Furnace body heat insulation: air-cooled heat insulation, the advantages of which can realize the configuration of any 300W photocatalytic xenon lamp light source of China Education Fund;
    Temperature control range: normal temperature~800 (precision 0.1 ), 64 segment program temperature control;
    Working area:>30mm, temperature difference<± 1 , light inlet 30mm;
    Heating tube: diameter 30mm, material: ultraviolet high transmittance and high purity quartz; The reaction zone is 28mm * 22mm;
    Control system: over-temperature alarm, power-off protection, 7-inch touch computer screen, Kunlun on-state control software
    Interface: 3 temperature measurement interfaces and 2 external heat tracing interfaces to realize external pipeline temperature control; 1 set of optical interface;
    Pipeline interface: 3mm, ferrule joint, KF16 flange cross;
    Outline specification: 400 * 425 * 505mm;
    Light source (optional): CEL-PF300-T3/T8/T9/T10 xenon light source system
    Gas distribution (optional): gas distribution system module, CEL-GPPCN mass flowmeter; CEL-GPPCL float flowmeter.
    Internal circulation reaction and online sampling detection (optional): optional III. Gas internal circulation pump
    Optional IV. Automatic online valve group and GC detection system, GC7920;
    Online analysis (optional): the synthesis and catalytic online sample injection module cooperates with the GC detection system;
    Vacuum (optional): high vacuum system module, molecular pump unit, 10-3Pa;
    Low vacuum system module, using oil vacuum pump;

  • Introduction:
    CEL-OPTH - photoinduced synthesis catalytic system (photothermal synergy) realizes the synthesis of new catalytic materials and characterization of photothermal catalytic activity under the action of photoinduction. The system is composed of high temperature reaction furnace, quartz reaction tube, flange joint, light guide column, console, etc. The advantage of the system is that during the high temperature heating process, the light generated by the xenon lamp light source selected above can be introduced into the quartz reaction tube from the outside to the inside through the light guide column and irradiated on the reaction sample, realizing the photothermal catalysis synergy.

     
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