REDEEM See-Through Flow Reactor

Overview:

The See-Through Reactor is a photochemical flow reactor illuminated from both sides to improve light distribution and significantly enhance photochemical reaction rates. It allows you to adjust the thickness of the illuminated thin film to tune light penetration, making it suitable for both small-scale screening and preparative-scale photochemical production.

Specifications:

Volume: 0,264/13,19 mL

Illuminated area: 52,76 cm²

Liquid thickness: 0,1-5 mm

Temperature range: -20/200°C

Illuminated Area/Vol: 4-200 cm⁻¹

Pressure range: Up to 12 bar

Residence time: ~ 1/52-1020/52740 seconds

Materials option: Stainless steel, Hastelloy, Cu, PEEK, Anodized Al

Window options: Borosilicate, quartz, ITO, Sapphire

Dimensions: 8,6x7,2 cm

Key Benefits of See-Through:

Double illumination, to maximize light utilization.

Adjustable liquid thickness

Inline spectroscopy to monitor the reaction.

Possible applications:

Designed for scalable photo-synthesis where even illumination and controlled film thickness improve consistency and throughput. Especially useful with reactants with strong light absorption properties.

Liquid-Liquid

Photocatalytic reaction

Advanced Mixing Technology

Equipped with a high-precision microfluidic system, the Redeem See-Through Flow Reactor ensures uniform distribution of reactants, eliminating concentration and temperature gradients, which leads to greater reproducibility in chemical processes.

Design and Operation:

Robust and Highly Efficient Structure

Modular design made of stainless steel and corrosion-resistant materials, ensuring durability and compatibility with a wide range of reactants.

Optimized configuration for seamless integration with existing industrial equipment and processes.

Simplified operation, reducing the need for manual intervention and maintenance.

Applications

The Redeem See-Through Flow Reactor is the ideal solution for a wide range of industries, including:

Pharmaceutical Industry

Synthesis of active ingredients with high purity and repeatability.

Chemical Industry

Production of polymers, catalysts, and fine chemicals.

Energy sector

Applications in biofuels and thermal conversion processes.

Nanotechnology

Production of nanoparticles and advanced materials.

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