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Simulation on deacidification performance of waste incinerator flue gas by rotating spray drying

机译:旋转喷雾干燥法对垃圾焚烧炉烟气脱酸性能的模拟

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The models describing the mass transfer and chemical reaction of flue-gas-slurry drops in the deacidification tower of waste incineration plants are established. The internal dynamics are simulated and the effects of flue-gas inlet velocity, stoichiometric ratio, drop size and water spray rate, on deacidification performance, are evaluated. Results show that simulated desulphurisation and dechlorination rates are 58.97% and 99.99% and the removal rate of HCI is greater than SO2. A high-temperature zone is found in the upper part of central axis, whereas low-temperature zones are observed at the right wall and bottom. Flow field is characterized with complex recirculation zones, wherein the recirculation zone emerged on the upper-right entrains a small part of drops towards the right wall. Approximately 60% of the total removal amount of SO2 and 90% of HCI are absorbed in the upper part. Slurry drops completely evaporate in 5 s after entering the deacidification tower. The deacidification performance is improved with the increase in stoichiometric ratio and water spray rate, as well as the decrease in inlet gas velocity and drop size. Excellent deacidification performance is expected under flue-gas inlet velocity of 7.1 m/s, drop size of 50-70 mu m, and water spray rate of 600 L/h. (C) 2018 Elsevier Ltd. All rights reserved.
机译:建立了描述垃圾焚烧厂脱酸塔内烟气-淤浆液滴传质和化学反应的模型。模拟内部动力学,并评估烟气入口速度,化学计量比,液滴尺寸和喷水速率对脱酸性能的影响。结果表明,模拟脱硫率和脱氯率分别为58.97%和99.99%,HCl的去除率大于SO2。在中心轴的上部发现了一个高温区,而在右壁和底部发现了一个低温区。流场的特征在于复杂的回流区,其中出现在右上方的回流区会带走一小滴液滴流向右壁。上部吸收了SO2和90%HCl的总去除量的大约60%。进入脱酸塔后,浆料滴在5秒钟内完全蒸发。随着化学计量比和喷水速率的增加,以及进气速度和液滴尺寸的减小,脱酸性能得到改善。在烟气入口速度为7.1 m / s,液滴尺寸为50-70μm,喷水速率为600 L / h的情况下,预期具有优异的脱酸性能。 (C)2018 Elsevier Ltd.保留所有权利。

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