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Modelling the photo-Fenton oxidation of the pharmaceutical paracetamol in water including the effect of photon absorption (VRPA)

机译:模拟药物对乙酰氨基酚在水中的光芬顿氧化,包括光子吸收(VRPA)的影响

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摘要

A new model is proposed for the photo-Fenton oxidation of water contaminants including the effect of photon absorption (volumetric rate of photon absorption, VRPA), the effect of the geometry of the reactor and the illuminated volume to total volume ratio (Ri) in the reaction system. Fe(III) was found to be the main species in the aqueous solution responsible for photon absorption provided that hydrogen peroxide was not totally consumed. Paracetamol was used as model pollutant at a concentration of 1 mM to validate the model. The illuminated part of the raceway reactor configuration (total length of 80 cm) was operated at two liquid depths (5.0 and 2.5 cm) equivalent to two irradiated reactor volumes (2 and 1 L) and using Ri ratios in the range 0.30–0.65, which changed the dark reactor volume. These values are commonly found in photo-Fenton pilot plants for water treatment and purification. The model successfully fitted the temporal evolution of the dissolved oxygen (O2) and the hydrogen peroxide (H2O2) concentrations and the evolution of the total organic carbon (TOC) in solution in both reactor geometries and for different illuminated volume to total volume ratios. The model can be easily extended to model other water contaminants and provides a robust method for process design, process control and optimization.
机译:针对水污染物的光芬顿氧化,提出了一种新模型,包括光子吸收的影响(光子吸收的体积率,VRPA),反应器的几何形状的影响以及光照体积与总体积之比(Ri)。反应系统。发现Fe(III)是水溶液中负责光子吸收的主要物质,条件是过氧化氢未完全消耗。以扑热息痛为模型污染物,浓度为1 mM,以验证模型。滚道反应堆配置的照明部分(总长度为80 cm)在相当于两个辐照反应堆体积(2和1 L)的两个液体深度(5.0和2.5 cm)下运行,并使用0.30–0.65的Ri比率,这改变了黑暗反应堆的体积。这些值通常在光芬顿中试工厂中用于水处理和净化。该模型成功拟合了两种反应器几何形状以及不同光照体积与总体积比时溶解氧(O2)和过氧化氢(H2O2)浓度的时间演变以及溶液中总有机碳(TOC)的演变。该模型可以轻松扩展以对其他水污染物进行建模,并为过程设计,过程控制和优化提供了可靠的方法。

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