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GHX-A photochemical reaction instrument for chemical synthesis

Product ID:SYHChxhc009

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Supply Ability:20SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberGHX-A
    Brand NameSHJP
    Payment TermsT/T, paypal
    Introduction:
    Photochemical reaction apparatus GHX-A can provide analysis of reaction products and free radicals samples, determination of reaction kinetic constants, determination of quantum yield, extensive application of chemical synthesis, environmental protection and life sciences and other research areas. It is intended to be used to study photochemical reactions in gas or liquid media, fixed or flowing systems, ultraviolet or simulated visible light, and whether the reaction vessel is loaded with TiO2 photocatalysts. The photochemical reaction apparatus GHX-A has the functions of providing samples for analyzing reaction products and free radicals, measuring reaction kinetic constants, measuring quantum yield, and widely used in chemical synthesis, environmental protection, and life science research fields. Photochemical reaction apparatus GHX-A The appearance of this reactor greatly accelerated the pace of experiments, realized multiple parallel reactions, improved the experimental efficiency, and effectively ensured the consistency of experimental conditions.
    Features:
    1, microcomputer controller, step-by-step timing function.
    2. Power control range: 100W ~ 1200W power continuously adjustable.
    3, mercury lamp: 300W, 500W, 1000W. (3 select 1 power continuously adjustable)
    4, xenon lamp: 300W, 500W, 1000W. (3 select 1 power continuously adjustable)
    5, metal halide lamp: 500W (power continuously adjustable)
    6, the controller is equipped with ammeter and voltmeter, easy to observe the current and voltage changes.
    7, using JPKJ integrated control, for mercury lamps, xenon lamps, metal halide lamps and other light sources.
    8. There is a special socket on the left side of the box for the light source inside the box and the stirring reactor plug.
    9. Reaction black box: drawer type operation platform, adjustable bracket, cooling fan, vent hole, cooling water pipe, anti-ultraviolet observation window, double layer device: plug-in UV baffle and opening and closing observation door.
    10. Eight reactors: 8 samples can be processed at the same time, 8 samples can be adjusted synchronously, and an adjustable stand can be installed.
    11, magnetic stirrer: large-screen LCD display, you can adjust the temperature, time, speed, animation icon display.
    12, cooling water circulation pump can achieve precise temperature control.
    13, equipped with a movable reaction black box, easy to move and fixed.
    14, with a variety of filter specifications, UV filters (optional specifications)
    Configuration:
    Microcomputer controller 1;
    One medium dark box,
    Magnetic heating stirrer 1;
    Large-screen LCD display,
    Including: glass reactor, 250ml, 500ml two alternatives;
    One full quartz glass cold well: Φ70×380mm (used to reduce light source heating)
    One mercury lamp, one xenon lamp and one metal halide lamp. (self-ordered but water circulation pump)

  • Introduction:
    Photochemical reaction apparatus GHX-A can provide analysis of reaction products and free radicals samples, determination of reaction kinetic constants, determination of quantum yield, extensive application of chemical synthesis, environmental protection and life sciences and other research areas. It is intended to be used to study photochemical reactions in gas or liquid media, fixed or flowing systems, ultraviolet or simulated visible light, and whether the reaction vessel is loaded with TiO2 photocatalysts. The photochemical reaction apparatus GHX-A has the functions of providing samples for analyzing reaction products and free radicals, measuring reaction kinetic constants, measuring quantum yield, and widely used in chemical synthesis, environmental protection, and life science research fields. Photochemical reaction apparatus GHX-A The appearance of this reactor greatly accelerated the pace of experiments, realized multiple parallel reactions, improved the experimental efficiency, and effectively ensured the consistency of experimental conditions.
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