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Counter-Flow Silica-Titania Reactor for the Simultaneous Treatment of Air and Water Contaminated with VOCs

机译:反流二氧化硅 - 二氧化钛反应器,用于同时处理空气和水污染VOC的水

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The photocatalytic oxidation of VOCs was investigated using a novel countercurrent flow reactor designed to enable the treatment of toluene present in the gas and the aqueous phases simultaneously. The reactor was packed with silica-titania composites commingled with plastic pall rings. Using this mixed packing style was advantageous as it resulted in a higher UV penetration throughout the reactor. The average UV intensity in the reactor was determined to be 220μW/g irradiated TiO_2. It was found that under dry conditions, the STCs had a high adsorption capacity for toluene; however, this adsorption was completely hindered by the wetting of the STCs when the two phases were flowing simultaneously. The destruction of toluene in the aqueous phase was determined to follow a linear trend as a function of the contaminant concentration. In the presence of both phases, toluene destruction was only observed under conditions in which the solution was initially supersaturated with respect to the gas phase. Under these conditions, the net destruction of toluene in the system reached a maximum of 68%. For the most part, the destruction occurred in the aqueous phase, and it was observed that high gas phase flowrates could be detrimental to the toluene destruction in the two phase reactor. The operating conditions in the system could be optimized to achieve improved destruction in the presence of both phases compared to the aqueous phase only.
机译:使用新型逆流流动反应器研究了VOCs的光催化氧化,该电流反应器设计成能够同时处理气体和水相中存在的甲苯。用塑料凹槽环混合用二氧化硅 - 二氧化钛复合材料填充反应器。使用这种混合填料样式是有利的,因为它导致在整个反应器中更高的紫外线渗透。将反应器中的平均UV强度确定为220μW/ g照射TiO_2。发现在干燥条件下,STC具有高吸附能力的甲苯;然而,当两相同时流动时,通过润湿STC来完全阻碍这种吸附。确定水相中甲苯的破坏以遵循作为污染物浓度的函数的线性趋势。在两相存在中,仅在溶液相对于气相过度饱和溶液的条件下观察到甲苯破坏。在这些条件下,系统中甲苯的净破坏最多达到68%。在大多数情况下,在水相中发生破坏,观察到,它观察到高气相流量可能对两相反应器中的甲苯破坏是有害的。可以优化系统的操作条件,以在与水相比仅存在两相的存在下改善的破坏。

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