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Intensification of volatile organic compound absorption in a compact wet scrubber at co-current flow

机译:在并流下,紧凑型湿式洗涤塔中挥发性有机化合物的吸收增强

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Three volatile organic compounds (VOC) with no acidic or basic function (butanol, butyraldehyde, methylethylketone), encountered at low concentrations in odorous effluents, were absorbed in water in a compact wet scrubber. This gas-liquid contactor consisted of a wire mesh packing structure where the gas phase flows at high velocity (>12 m s(-1)). A very turbulent two-phase downward flow could be observed in the scrubber with dispersed fine droplets (around 10 pm). For compounds showing a good affinity for water, such as butanol, removal efficiencies up to 90% were measured for a short contactor length of 32 cm leading to a gas residence time of 20 ms. However, the removal efficiency of butyraldehyde, which is poorly soluble in water, ranged between 10 and 30%. Mass-transfer modeling was achieved and underlined that working with several small scrubbers in series, fed with an unloaded solution, is effective to improve the removal efficiency. The influences of the VOC/solvent affinity, the contactor length, and the mass -transfer and hydrodynamic parameters on the removal efficiency were evaluated through a sensitivity analysis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在紧凑型湿式洗涤器中,将三种低浓度的有臭味的废水中无酸或碱性的挥发性有机化合物(VOC)(丁醇,丁醛,甲基乙基酮)吸收到水中。该气液接触器由金属丝网填充结构组成,气相中气相以高速流动(> 12 m s(-1))。在洗涤器中观察到非常湍急的两相向下流动,分散了细小液滴(大约10 pm)。对于对水显示出良好亲和力的化合物(例如丁醇),对于32 cm的短接触器长度,可测量高达90%的去除效率,从而使气体停留时间为20 ms。但是,难溶于水的丁醛的去除效率在10%至30%之间。实现了传质建模,并强调了与几个串联的小型洗涤塔一起使用,并装有未加载的溶液,可有效提高去除效率。通过敏感性分析评估了VOC /溶剂亲和力,接触器长度以及传质和流体力学参数对去除效率的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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