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Fabrication of an inexpensive and high efficiency microphotoreactor using CO_2 laser technique for photocatalytic water treatment applications

机译:使用CO_2激光技术制造廉价,高效的微型光反应器,用于光催化水处理应用

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In this study, a micro-photoreactor with catalyst-immobilized micro-channels was designed and fabricated using CO_2 laser as a simple and inexpensive technique. The micro-photoreactor is composed of an array of micro-channels, a quartz plate, and an array of UV-LEDs. The micro-channels with the dimension of 400 μm width, 50 μm depth, and 80 cm length were inscribed on a fiat plate of poly(methyl methacrylate) (PMMA). The illuminated specific surface area for the designed micro-reactor was calculated to be 25000 m~(-1). To examine the performance of miniaturized photoreactor, the photocatalytic degradation of 4-Nitrophenol as a refractory pollutant was investigated. The effects of operational variables on the performance of micro-photoreactor were studied. Higher photocatalytic degradation is obtained for low flow rates, high light intensities, long micro-channels lengths, and low inlet concentrations. Also, the performance of micro-photoreactor was examined in the presence of different types of TiO_2 catalysts with an average particle size between 5 and 27 nm (such as P25, PC500, Merck, and UV100) and textile dyes with different chemical structures (such as Acid Orange 7, Acid Violet 19, Basic Red 46, Methyl Orange, and Malachite Green). Finally, the reusability of miniaturized photoreactor was evaluated and the results showed satisfactory stability and reusability for the designed micro-reactor in the photocatalytic degradation of organic pollutants.
机译:在这项研究中,使用CO_2激光作为一种简单且廉价的技术,设计并制造了具有固定有催化剂的微通道的微光反应器。微型光反应器由微通道阵列,石英板和UV-LED阵列组成。将尺寸为400μm宽度,50μm深度和80 cm长度的微通道刻在聚(甲基丙烯酸甲酯)(PMMA)的平板上。设计的微反应器的照亮比表面积计算为25000 m〜(-1)。为了检查小型化光反应器的性能,研究了4-硝基苯酚作为难降解污染物的光催化降解作用。研究了操作变量对微光反应器性能的影响。对于低流速,高光强度,长微通道长度和低进口浓度,可以获得较高的光催化降解性能。此外,在存在平均粒径介于5和27 nm之间的不同类型TiO_2催化剂(例如P25,PC500,Merck和UV100)和具有不同化学结构的纺织品染料(例如例如酸性橙7,酸性紫19,碱性红46,甲基橙和孔雀石绿)。最后,对小型光反应器的可重复使用性进行了评估,结果表明所设计的微反应器在有机污染物的光催化降解方面具有令人满意的稳定性和可重复使用性。

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