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BYGHX-D Photocatalytic Reaction Instrument

Product ID:SYHCchpj023

Price: Please inquire PDF Format
Supply Ability:50 SETS/MON
Port:SHENZHEN
  • Product Introduction
  • Other information
  • Model NumberBYGHX-D
    Brand NameSHBINGYUE
    Payment TermsTT,PAYPAL,Alibaba.com Pay
    BYGHX-D Photocatalytic Reaction Instrument
     
    Product Introduction
    The BYGHX-D Photocatalytic Reaction Instrument is designed for studying photochemical reactions in gas-phase or liquid-phase media, fixed or flowing systems, and under ultraviolet or simulated visible-light irradiation.
    The instrument can be used to investigate whether reaction vessels are loaded with TiO₂ photocatalysts, analyze reaction products and free radicals, determine reaction kinetic constants, and measure quantum yields. It is widely used in chemical synthesis, environmental protection, photocatalysis research, and life science studies.

     


    Performance Features
    •  Intelligent microcomputer control: Monitors and displays real-time current and voltage changes.
    •  Integrated light source control: Compatible with mercury lamps, xenon lamps, metal halide lamps, and other light sources.
    •  Continuously adjustable light power: Provides flexible control of irradiation intensity.
    •  Step timing function: Supports programmed multi-step reaction timing for convenient operation.
    •  Radiation-resistant reaction chamber: The dark chamber uses radiation-resistant inner-wall materials and includes an observation window.
    •  Internal illumination design: Provides sufficient light exposure to the reaction samples.
    •  Durable lamp structure: The lamp uses high-pressure-resistant and shock-resistant materials.
    •  Powerful magnetic stirring: Ensures thorough sample mixing and uniform light exposure.
    •  Temperature control: Double-layer quartz cold traps can be connected to circulating cooling water to maintain reaction temperature.
    •  High-temperature protection: Automatically cuts off power when an over-temperature condition occurs.
    •  Integrated water connections: External circulating-water inlet and outlet ports simplify cooling-water connection.
    •  Dedicated electrical outlets: Two internal sockets are provided for the light source and stirring reactor.

     


    Working Principle
    The sample is placed in a quartz tube or glass reaction vessel and exposed to a selected light source, such as a mercury lamp, xenon lamp, or metal halide lamp. The light activates the photocatalyst or initiates the required photochemical reaction.
    The reaction may be conducted in a gas-phase or liquid-phase medium, under fixed or flowing conditions, and with or without a TiO₂-loaded reaction vessel. The light power can be continuously adjusted to study the influence of irradiation intensity on reaction performance.
    For liquid samples, the magnetic stirring system synchronously mixes the samples to improve contact between the reactants, photocatalyst, and light. A circulating-water cold trap helps maintain the desired reaction temperature. Reaction products or radical samples can then be collected for further analysis, kinetic evaluation, and quantum-yield measurement.

     


    Technical Specifications
    Main Unit
    Parameter Specification
    Product Model BYGHX-D
    Light Power Adjustment Continuously adjustable
    Light Source Controller Integrated light source controller
    Compatible Light Sources Mercury lamp, xenon lamp, metal halide lamp, and other compatible sources
    Mercury Lamp Power 0–1000 W, continuously adjustable
    Xenon Lamp Power 0–1000 W, continuously adjustable
    Metal Halide Lamp Power 0–500 W, continuously adjustable
    Control System Intelligent microcomputer control
    Monitoring Real-time current and voltage display
    Timing Function Step timing
    Reaction Chamber Radiation-resistant inner wall with observation window
    Illumination Mode Internal illumination
    Stirring System High-power magnetic stirring
    Cooling Method Double-layer quartz cold trap with circulating cooling water
    Safety Protection High-temperature protection and automatic power-off
    External Structure Circulating-water inlet and outlet
    Internal Outlets Two dedicated sockets for light source and stirring reactor
    Small-Capacity Reaction Unit
    Parameter Specification
    Reaction Vessels Quartz tubes
    Standard Tube Volumes 30 mL and 50 mL
    Customized Tubes Available
    Simultaneous Sample Capacity 8 samples
    Customized Capacity Available
    Stirring System Eight-position magnetic stirring unit
    Stirring Control Synchronous adjustment of stirring speed for 8 samples
    Large-Capacity Reaction Unit
    Parameter Specification
    Reaction Vessels Glass reaction vessels
    Standard Volumes 250 mL, 500 mL, and 1000 mL
    Customized Vessels Available
     


    Applications
    The BYGHX-D photocatalytic reaction instrument is suitable for:
    •  Gas-phase photochemical reaction research
    •  Liquid-phase photocatalytic reaction research
    •  UV photocatalysis experiments
    •  Simulated visible-light photocatalysis
    •  TiO₂ photocatalyst evaluation
    •  Fixed-bed and flowing reaction studies
    •  Chemical synthesis and photochemical synthesis
    •  Environmental pollutant degradation research
    •  Reaction kinetic constant measurement
    •  Quantum yield measurement
    •  Reaction product and free-radical sample preparation
    •  Life science and interdisciplinary photochemical research

     


    Comparison with Conventional Photochemical Reaction Equipment
    Feature BYGHX-D Photocatalytic Reaction Instrument Conventional Photochemical Reactor Basic Laboratory Light Reactor
    Light Source Compatibility Mercury, xenon, metal halide, and other compatible sources Usually limited Usually limited
    Light Power Adjustment Continuously adjustable Depending on model Often fixed or manually adjusted
    Small-Sample Capacity Up to 8 samples simultaneously Usually one or a few samples Usually one sample
    Synchronous Stirring Eight-position magnetic stirring Depending on model Usually unavailable
    Reaction Vessel Options 30/50 mL quartz tubes and 250/500/1000 mL glass vessels Usually limited Usually limited
    UV and Simulated Visible Light Supported Depending on light source Depending on light source
    Temperature Control Quartz cold trap with circulating cooling water Depending on model Usually limited
    Step Timing Supported Depending on model Usually basic
    High-Temperature Protection Automatic power-off Depending on model Depending on model
    Research Applications Photocatalysis, kinetics, quantum yield, product and radical analysis General photochemical research Basic irradiation experiments
     


    FAQ
    1. What is the BYGHX-D used for?
    The BYGHX-D is used to study gas-phase and liquid-phase photochemical reactions under ultraviolet or simulated visible-light irradiation.
    2. Can the instrument be used for TiO photocatalyst research?
    Yes. It can be used to investigate photochemical reactions involving reaction vessels loaded with TiO₂ photocatalysts.
    3. Which light sources are compatible with the system?
    The integrated light source controller can be used with mercury lamps, xenon lamps, metal halide lamps, and other compatible light sources.
    4. Can the light power be adjusted?
    Yes. Mercury lamp and xenon lamp power can be continuously adjusted from 0 to 1000 W. Metal halide lamp power can be continuously adjusted from 0 to 500 W.
    5. How many small samples can be processed at the same time?
    The small-capacity reaction unit can process up to 8 samples simultaneously.
    6. Can the stirring speed of each sample be adjusted?
    The eight-position magnetic stirring system supports synchronous adjustment of the stirring speed for all 8 samples.
    7. What reaction vessel volumes are available?
    Small-capacity quartz tubes are available in 30 mL and 50 mL. Large-capacity glass reaction vessels are available in 250 mL, 500 mL, and 1000 mL. Customized sizes are also available.
    8. How is the reaction temperature controlled?
    The double-layer quartz cold trap can be connected to circulating cooling water to help maintain the required reaction temperature.
    9. Does the instrument provide reaction timing control?
    Yes. The instrument includes a step timing function for programmed multi-step photochemical experiments.
    10. What safety protection is included?
    The system includes high-temperature protection and an automatic power-off function to improve operational safety.
    11. What research data can be obtained from the system?
    The instrument can provide samples for reaction product and free-radical analysis, reaction kinetic constant measurement, and quantum yield determination.


  • FAQ
    1. What is the BYGHX-D used for?
    The BYGHX-D is used to study gas-phase and liquid-phase photochemical reactions under ultraviolet or simulated visible-light irradiation.
    2. Can the instrument be used for TiO photocatalyst research?
    Yes. It can be used to investigate photochemical reactions involving reaction vessels loaded with TiO₂ photocatalysts.
    3. Which light sources are compatible with the system?
    The integrated light source controller can be used with mercury lamps, xenon lamps, metal halide lamps, and other compatible light sources.
    4. Can the light power be adjusted?
    Yes. Mercury lamp and xenon lamp power can be continuously adjusted from 0 to 1000 W. Metal halide lamp power can be continuously adjusted from 0 to 500 W.
    5. How many small samples can be processed at the same time?
    The small-capacity reaction unit can process up to 8 samples simultaneously.
    6. Can the stirring speed of each sample be adjusted?
    The eight-position magnetic stirring system supports synchronous adjustment of the stirring speed for all 8 samples.
    7. What reaction vessel volumes are available?
    Small-capacity quartz tubes are available in 30 mL and 50 mL. Large-capacity glass reaction vessels are available in 250 mL, 500 mL, and 1000 mL. Customized sizes are also available.
    8. How is the reaction temperature controlled?
    The double-layer quartz cold trap can be connected to circulating cooling water to help maintain the required reaction temperature.
    9. Does the instrument provide reaction timing control?
    Yes. The instrument includes a step timing function for programmed multi-step photochemical experiments.
    10. What safety protection is included?
    The system includes high-temperature protection and an automatic power-off function to improve operational safety.
    11. What research data can be obtained from the system?
    The instrument can provide samples for reaction product and free-radical analysis, reaction kinetic constant measurement, and quantum yield determination.


     
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