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Physical absorption of volatile organic compounds by spraying emulsion in a spray tower: Experiments and modelling

机译:通过在喷雾塔中喷雾乳剂来物理吸收挥发性有机化合物:实验和模型

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This study outlines a volatile organic compounds (VOCs) removal spray tower consisting of an empty cylindrical vessel and nozzles spraying an oil/water emulsion into the vessel. Spraying an emulsion into a spray tower absorbs both lipophilic and hydrophilic compounds, facilitates oil transport, improves the interfacial area (oil coats water droplets) and increases the turbulent flow regime enhancing mass transfer. Toluene was chosen as the synthetic lipophilic pollutant. The choice of the organic absorbent, silicone oil (47v350 Rhordorsil (R)), was made by considering several properties: thermal and mechanical stability, non-biodegradable nature, insolubility in water and low value of Henry's constant. Gas-liquid mass transfer and the hydrodynamics of the gas-liquid contactor were thoroughly investigated. It was observed that emulsion spraying allowed the dual absorption of hydro- and lipophylic VOCs (efficiency around 90% for both) and strongly enhanced the liquid mass transfer coefficient. Finally, a model describing the efficiency of the process as a function of time was developed. The predicted values are in good agreement with the experimental results. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:这项研究概述了一个挥发性有机化合物(VOC)去除喷雾塔,该塔由一个空的圆柱形容器和向容器中喷射油/水乳液的喷嘴组成。将乳剂喷入喷雾塔可吸收亲脂性和亲水性化合物,促进油的输送,改善界面面积(油滴覆盖水滴),并增加湍流状态,从而提高了传质效率。选择甲苯作为合成的亲脂性污染物。选择有机吸收剂硅油(47v350 Rhordorsil(R))时要考虑以下几个属性:热和机械稳定性,不可生物降解的性质,在水中的不溶性和较低的亨利常数。深入研究了气液传质和气液接触器的流体动力学。观察到乳液喷雾使亲水性和亲脂性VOC双重吸收(两者的效率均在90%左右),并大大提高了液体传质系数。最后,建立了一个描述过程效率随时间变化的模型。预测值与实验结果吻合良好。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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