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Photochemical continuous flow reactor

The material undergoes simultaneous photocatalytic reactions through pipeline circulation, and the continuous circulation reaction process is suitable for compounds with fast reaction rates. Photochemical reactions are usually more suitable for flow conditions, and Lambert Bouguer law describes the attenuation of light as the path length increases.

The material undergoes simultaneous photocatalytic reactions through pipeline circulation, and the continuous circulation reaction process is suitable for compounds with fast reaction rates. Photochemical reactions are usually more suitable for flow conditions, and Lambert Bouguer law describes the attenuation of light as the path length increases. Therefore, due to the small size of the Reactor, the reaction mixture will be more evenly illuminated by light in the flow. If the reaction adopts gas-liquid two-phase flow, the reaction will be further strengthened under flow conditions. For photochemical reactions, due to the fact that most high-throughput reactors tend to attenuate the irradiation of light as the reactor increases, special architectural designs are generally required to avoid this amplification effect.

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