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water-splitting reaction光解水

PCX-50C Discover Multi-channel Photochemical Reaction System

PCX-50C Discover 多通道光催化反应系统

Column:光解水Brand:PerfectlightViews:450
The PCX-50C Discover multi-channel photocatalytic reaction system facilitates multi-channel parallel reactions for catalyst and reaction condition screening, substrate expansion, and more in photochemical synthesis methodology research, ensuring improved
  • Introduction
  • Application
  • Literature
  • Maintenance

Key Features

● High-throughput parallel reaction system for conducting parallel experiments in 1 to 9 reaction positions;

● Bottom illumination with optical-grade quartz bottle bottoms to maximize incident light utilization;

● Modular design for easy and convenient lamp module updates;

● Multiple wavelength options with customizable wavelength combinations;

● Water cooling for temperature control to assess the impact of temperature on experimental results.

Application Areas

▲ Particularly Suitable   ● Moderately Suitable  ○ Can Be Used

▲ Photocatalytic water splitting for hydrogen/oxygen production (temperature-controlled)

▲ Photocatalytic full water decomposition (temperature-controlled)

▲ Photocatalytic CO₂ reduction (temperature-controlled)

▲ Photodegradation of liquid pollutants (e.g., dyes, benzene, and benzene derivatives)

● Photocatalytic quantum efficiency measurements

● PEC (Photoelectrochemical) experiments

● Photochromism studies

● Photosynthesis research

● Photodegradation of gaseous pollutants (e.g., VOCs, formaldehyde, nitrogen oxides, sulfur oxides)

Parallel Consistency

● Circular motion mode for radiation units to prevent uneven light exposure due to inconsistent light emission;

● Utilizes microchip-mechanical linkage technology for consistent (adjustable) magnetic stirring speeds in each reaction position;

● Optical-grade flat illumination surfaces to ensure consistent optical paths for all reaction positions;

● Bottom illumination at a vertical angle to avoid inconsistent light flux from side-injection.

Temperature Control Mode

● Temperature control method: Constant temperature circulation water cooling, integrated water-cooling design;

● Temperature control range: 10°C to 80°C (customizable for lower temperatures);

● Temperature control precision: 0.1°C (determined by the precision of the circulating chiller);

● Equipped with a condensate collection system to prevent condensate water from affecting the equipment;

● Standard quick-insert interface for condensate water, easy to operate;

Stirring Method

● Stirring method: Magnetic levitation central stirring technology;

● Utilizes microchip-mechanical linkage for consistent (adjustable) magnetic stirring speeds in each reaction position;

● Stirring speed: 0~500 r/min;

Expandability

● Compatible with pre-processing units AC1000 atmosphere controller and PLA-MAC1005 multi-channel atmosphere controller;

● Upgradable to work with the PLA-GPA1000 fully automatic sampler;

Basic Parameters

● Operating voltage: 220 VAC/50 Hz;

● Current limit: 1 A;

● Timer function: 1~999 min;

● Horizontal calibration function;

Reaction Module

● Number of reaction positions: 9; Fixed reaction positions for easy sampling of gas and liquid samples;

● Reaction bottles: Optical-grade quartz bottle bottoms; Standard: 50 mL×9; Optional: 1.5 mL, 5 mL, 10 mL; Reaction bottles (< 50 mL) have reflective cups at the bottom to enhance incident light utilization;

● Pressure resistance performance of reaction bottles: 0.05 MPa;

● Multiple types available: Regular bottles, high-efficiency bottles with reflective film;

● High flexibility: Different types of reaction bottle caps can be used to enable photocatalytic reactions in various environments, such as vacuum, inert gas protection, and flowing gas atmospheres, suitable for gas and liquid sample analysis;

● Cap options: C1 (degradation), C2 (airtight three-hole cap, compatible with automatic sampler) optional;

● Reaction bottle clamping: The reaction bottle has a fixed clamping function and can be used with the automatic sampler;

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