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Reaction kinetics of dye decomposition processes monitored inside a photocatalytic microreactor

机译:在光催化微反应器内监测染料分解过程的反应动力学

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The photocatalytic decomposition processes of several kinds of dyes were monitored in real-time, in a Ti02-immobilized microcapillary. Their fluorescence spectra were measured directly from the UV-irradiated area. The photocatalytic reactions proceeded two orders of magnitude faster in the microcapillary than in a bulk reaction, and intermediate species were easily observed, due to their high concentrations compared with those of the reactants. Even for molecules that were not originally fluorescent, fluorescence was detected for the reactants or intermediate species of all the molecules studied. Photocatalytic reactions are typically analyzed in terms of pseudo-first-order or Langmuir-Hinshelwood reaction mechanisms, but it was ascertained that all of the dyes investigated in this study decomposed via a multi-step reaction such as a simple multi-step reaction, a self-catalytic reaction, and further, a more complicated reaction, depending on the molecular structure. These reactions were simulated using models based on the reaction kinetics, and reaction mechanisms were assigned to each type of dye. The fact that intermediate species (which are difficult to observe using conventional analytical methods) were successfully detected meant that mechanisms for different dyes could be further clarified.
机译:在TiO2固定的微毛细管中实时监测几种染料的光催化分解过程。它们的荧光光谱直接从紫外线照射的区域测量。与毛细管反应相比,微毛细管中的光催化反应进行的速度快两个数量级,并且由于中间物质的浓度高于反应物的浓度,因此容易观察到中间物质。即使对于最初不发荧光的分子,也检测到所有研究分子的反应物或中间物种的荧光。通常根据拟一级反应或Langmuir-Hinshelwood反应机理来分析光催化反应,但是可以确定的是,本研究中研究的所有染料都是通过多步反应(如简单的多步反应,自催化反应,以及更复杂的反应,具体取决于分子结构。使用基于反应动力学的模型模拟这些反应,并将反应机理分配给每种染料。成功检测到中间物种(使用常规分析方法很难观察到)的事实意味着可以进一步阐明不同染料的机理。

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