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PCX-50C Discover multi-channel photocatalytic reaction system

Product ID:SYHChxhc031

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Supply Ability:50 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberPCX-50C
    Brand NameBOFEILAI
    PCX-50C Discover multi-channel photocatalytic reaction system
     
    Introduction:
    Application fields of PCX-50C Discover multi-channel photocatalytic reaction system: photocatalytic water splitting to produce hydrogen/oxygen (temperature controllable); photocatalytic total water splitting (temperature controllable); photocatalytic CO2 reduction (temperature controllable); photodegradation Liquid pollutants (such as dyes, benzene and benzene series, etc.); photocatalytic quantum efficiency measurement; PEC photoelectrochemistry; photochromic; photosynthesis; photodegradation of gas pollutants (such as VOCs, formaldehyde, nitrogen oxides, sulfur oxides, etc. )
    Features:
    1. High-throughput parallel reaction device, which can realize parallel experiments of 1 to 9 reaction sites;
    2. The bottom receives light, and the bottom of the optical grade quartz bottle ensures the utilization rate of incident light;
    3. Modular design, easy and convenient to update the light panel;
    4. Multiple wavelengths are optional, and the wavelength combination can be customized;
    5. Water cooling temperature control, used to screen the effect of temperature on the experimental results.
    Technical parameter:
    Irradiation Module
    Rated power: 10 W × 9
    Multiple wavelength options: VLight lamp panel (white light); optional 365 nm, 385 nm, 420 nm, 450 nm, 485 nm, 520 nm, 595 nm, 620 nm, 630 nm, 760 nm, 880 nm, 940 nm, and any combination);
    Optional multi-wavelength combination: the combination of lamp panel and lamp beads can be customized separately;
    React module
    The number of reaction positions: 9; the reaction position is fixed, and it is convenient to take gas samples and liquid samples;
    Reaction bottle: optical grade quartz bottle bottom, standard: 50 mL×9; optional: 1.5 mL, 5 mL, 10 mL
                 The bottom of the reaction bottle (<50 mL) has a reflector to improve the utilization rate of incident light;
    Pressure resistance of reaction flask: 0.05 MPa;
     Multiple types are available: ordinary bottle, high-efficiency bottle with reflective film;
    High flexibility: The photocatalytic reaction in different environments such as vacuum, inert gas protection, and fluid atmosphere can be realized by using different types of reaction caps, and the detection of gas samples and liquid samples can be realized;
    Cap configuration: C1 (degradation), C2 (airtight three holes can be equipped with automatic sampler) optional;
    Reaction bottle support: The reaction bottle has a fixed clamping function and can be used in conjunction with an automatic sampling device;
    Temperature control mode
    Temperature control method: constant temperature circulating water temperature control, integrated water cooling design;
    Temperature control range: 10 ~80 (low temperature can be customized);
    Temperature control accuracy: 0.1 (determined by the temperature control accuracy of the circulating chiller)
    With condensed water collection device to avoid the influence of condensed water on the device;
    Standard condensate quick-plug interface, simple and easy to operate.
    Stirring method: patented magnetic levitation mid-position stirring technology (patent number: 201520764853.2);
    Using microcomputer chip-mechanical linkage, the magnetic stirring speed of each reaction position is consistent (adjustable);
    Stirring speed: 0~500 r/min.
    Operating voltage: 220VAC/50Hz
    Current: 1 A
    Time switch function: 1~999 min
  • Introduction:
    Application fields of PCX-50C Discover multi-channel photocatalytic reaction system: photocatalytic water splitting to produce hydrogen/oxygen (temperature controllable); photocatalytic total water splitting (temperature controllable); photocatalytic CO2 reduction (temperature controllable); photodegradation Liquid pollutants (such as dyes, benzene and benzene series, etc.); photocatalytic quantum efficiency measurement; PEC photoelectrochemistry; photochromic; photosynthesis; photodegradation of gas pollutants (such as VOCs, formaldehyde, nitrogen oxides, sulfur oxides, etc. )
     
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