Introduction

Photocatalytic Reactor features a mercury lamp with an adjustable power range of 100 to 1000 W. The reactor can be used with ultraviolet light or simulated visible light sources, allowing researchers to mimic various environmental or experimental conditions. It is suitable for both gas-phase and liquid-phase media, with flexibility to operate in fixed or flowing systems. Our reactor is engineered to facilitate and analyze photochemical reactions under controlled conditions.

This photoreactor is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.

Applications

Our Photocatalytic Reactor is used for conducting light-driven reactions in chemical synthesis, environmental pollutant degradation, and photocatalytic studies, as well as exploring photochemical processes in life science research.

Specifications

Mercury Lamp Power Adjustable Range 100 to 1000 W
Xenon Lamp Adjustable Range 100 to 1000 W
Metal Halide Lamp Adjustable Range 100 to 500 W
Cooling Device Cooling Capacity Greater than 1000 W
Cooling Device Temperature Range -20℃ to 100℃
Cooling Device Volume 10 L
Quartz Test Tube Volume: 30 mL, 150 mL
Power Consumption 2 kW
Photocatalytic Reactor Dimension 5900 × 5400 × 15700 mm
Chamber Dimension 5100 × 4700 × 10400 mm
Agitator Dimension 4800 × 3800 × 5400 mm
Photocatalytic Reactor Packing Dimension 6000 × 5500 × 15800 mm
Chamber Packing Dimension 5200 × 4800 × 10500 mm
Agitator Packing Dimension 4900 × 3900 × 5500 mm
Photocatalytic Reactor Gross Weight 150 kg
Chamber Gross Weight 60 kg
Agitator Gross Weight 30 kg

Features

Works with fixed or flowing systems

Compatible with or without TiO2 photocatalyst

Allows sampling for analysis of reaction products

Enables determination of reaction kinetic constants

Supports measurement of quantum yields

FAQs

1. What is the primary purpose of the Photocatalytic Reactor ?

Photocatalytic Reactor is specifically engineered to facilitate and analyze light-driven reactions under precise and controlled laboratory conditions. It can handle both gas-phase and liquid-phase media, and it supports operation in fixed or flowing systems. This makes the Photocatalytic Reactor a versatile choice for researchers in chemical synthesis, photocatalytic studies, and environmental applications.

2. Which light sources can be used with the Photocatalytic Reactor ?

Photocatalytic Reactor supports multiple light sources to suit diverse experimental needs. It can operate with mercury lamps (100 to 1000 W) for strong UV output, xenon lamps (100 to 1000 W) for broad-spectrum simulated sunlight, and metal halide lamps (100 to 500 W) for balanced visible light. This range of options allows researchers to mimic various environmental or experimental conditions with high flexibility.

3. Can the Photocatalytic Reactor operate without a TiO2 photocatalyst?

Yes, the Photocatalytic Reactor offers the flexibility to be used with or without a TiO2 photocatalyst. This means it can accommodate both standard photocatalytic experiments and alternative reaction setups, making it suitable for a wider range of chemical and photochemical processes.

4. What types of media can the Photocatalytic Reactor process?

Photocatalytic Reactor is designed to work with both gas-phase and liquid-phase media, ensuring adaptability across different research scenarios. This dual capability makes it ideal for environmental pollutant degradation, solution-based chemical synthesis, or gaseous photoreaction studies.

5. What is the capacity of the Photocatalytic Reactor ?

Photocatalytic Reactor features a main reaction chamber with a volume of 10 L, providing ample space for larger-scale laboratory experiments. It also includes quartz test tubes in 30 mL and 150 mL capacities, which can be customized to suit specific sampling or reaction volume requirements.

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