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Spray Scrubbing of Particulates with a Critical Flow Atomizer

机译:喷淋洗涤颗粒的关键流雾化

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摘要

Wet scrubbers are gaining importance over other devices for particulate collection with the increasing stringency of pollution regulations.The scrubbing of particulates (soot and fly-ash) in a spray tower with a two-phase critical flow atomizer using water is reported in this article.The atomizer is capable of generating droplets with a high degree of spray uniformity.Preliminary studies reveal that the atomizer deployed in the present investigation is energetically more favorable than existing atomizers.With this atomizer,the scrubbing performances of a model spray tower are determined experimentally in terms of different operating variables.Various physical interactions with the exception of electrostatic effects are found to significantly influence the removal efficiency.The removal efficiency is found to increase with the inlet particle loading,gas flow rate and liquid to gas flow rate ratio.Experiments reveal that the present system collects finer (soot) particles (with a Sauter Mean Diameter (SMD) of 1.43 um) more efficiently than the relatively coarse (fly-ash) particles (SMD of 6.38 urn) under similar experimental conditions.Further investigation reveals that almost 100 % removal efficiency (zero penetration) of both soot and fly-ash particles can be attained at a much lower QL/QG ratio of 3 m3/1000 actual cubic meters (ACM) than for the existing systems.A unique correlation is developed for predicting the performance of the spray tower in terms of various pertinent variables of the system.The predicted values agree very well with the experimental values (± 10 % deviation).A comparison of the performance of the present system with the existing systems indicates that the spray tower developed is techno-enviro-economically more favorable than existing systems.
机译:湿式洗涤器获得比其他重要性设备对颗粒的集合越来越严格的污染规定。和粉煤灰)在一个两阶段的喷雾塔临界流雾化器使用水是报道这篇文章。生成与高度的喷雾液滴一致性。雾化器部署在目前的调查积极比现有更有利气泡雾化。表演一个模型的喷雾塔确定实验的不同操作变量。除静电效果发现显著影响消除效率。增加进口粒子加载,气体流率和液体到气体流速比率。收集细(烟尘)粒子(萨德平均直径(SMD)的1.43 um)更有效率比相对粗粒子(粉煤灰)(SMD 6.38 urn)类似的实验条件。去除效率(零近100%渗透)的烟灰和粉煤灰颗粒可以获得更低的QL /路上3的比例m3/1000实际立方米(ACM)比现有的系统。为预测的性能喷雾塔的各种相关的系统的变量。很好地与实验值(±达成一致10%的偏差)。本系统与现有的系统表明,喷雾塔发达techno-enviro-economically更有利现有的系统。

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