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一种用于研究可变反应几何形状、波长和流体流动的3D打印光反应器。

A 3D printed photoreactor for investigating variable reaction geometry, wavelength, and fluid flow.

作者信息

Riddell Alexander, Kvist Patric, Bernin Diana

机构信息

Department of Chemistry and Chemical Engineering, Chalmers University of Technology, Kemigården 4, 41296 Gothenburg, Sweden.

出版信息

Rev Sci Instrum. 2022 Aug 1;93(8):084103. doi: 10.1063/5.0087107.

Abstract

Research in the field of photochemistry, including photocatalysis and photoelectrocatalysis, has been revitalized due to the potential that photochemical reactions show in the sustainable production of chemicals. Therefore, there is a need for flexible photoreactor equipment that allows for the evaluation of the geometry, light wavelength, and intensity of the vessel, along with the fluid flow in various photochemical reactions. Light emitting diodes (LEDs) have narrow emission spectra and can be either pulsed or run continuously; being flexible, they can be arranged to fit the dimensions of various types of the reactor vessel, depending on the application. This study presents a 3D printed photoreactor with the ability to adjust distances easily and switch between high-power LED light sources. The reactor design utilizes customized printed circuit boards to mount varying numbers and types of LEDs, which enables multiple wavelengths to be used simultaneously. These LED modules, comprised of heat sinks and cooling fans, fulfill the higher heat dissipation requirements of high-power LEDs. The flexibility of the reactor design is useful for optimizing the reaction geometry, flow conditions, wavelength, and intensity of photochemical reactions on a small scale. The estimates for incident light intensity under five possible reactor configurations using ferrioxalate actinometry are reported so that comparisons with other photoreactors can be made. The performance of the photoreactor for differing vessel sizes and distances, in both the flow and batch modes, is given for a photochemical reaction on 2-benzyloxyphenol-a model substance for lignin and applicable in the production of biobased chemicals.

摘要

由于光化学反应在化学品可持续生产中展现出的潜力,光化学领域(包括光催化和光电催化)的研究得以复兴。因此,需要一种灵活的光反应器设备,以评估容器的几何形状、光波长和强度,以及各种光化学反应中的流体流动情况。发光二极管(LED)具有窄发射光谱,既可以脉冲形式运行,也可以连续运行;其灵活性使其能够根据应用需求进行布置,以适应各种类型反应器容器的尺寸。本研究展示了一种3D打印的光反应器,它能够轻松调整距离,并在高功率LED光源之间切换。该反应器设计利用定制印刷电路板来安装不同数量和类型的LED,从而能够同时使用多种波长。这些由散热器和冷却风扇组成的LED模块,满足了高功率LED更高的散热要求。反应器设计的灵活性有助于在小尺度上优化光化学反应的反应几何形状、流动条件、波长和强度。报告了使用草酸铁光量计在五种可能的反应器配置下的入射光强度估算值,以便与其他光反应器进行比较。针对木质素模型物质2-苄氧基苯酚的光化学反应,给出了该光反应器在流动模式和间歇模式下针对不同容器尺寸和距离的性能表现,该物质可用于生物基化学品的生产。

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