...
首页> 外文期刊>Environmental Science and Pollution Research >Simultaneous removal of nitrogen oxides and sulfur dioxide using ultrasonically atomized hydrogen peroxide
【24h】

Simultaneous removal of nitrogen oxides and sulfur dioxide using ultrasonically atomized hydrogen peroxide

机译:使用超声雾化过氧化氢同时除去氮氧化物和二氧化硫

获取原文
获取原文并翻译 | 示例

摘要

A new method was developed for denitrification and desulfurization using hydrogen peroxide with the aid of an ultrasonic nebulizer to obtain high removal efficiency of NOx and SO2. Comparing with the atomizing nozzles having the aperture size of 0.01 similar to 0.02mm, the droplets generated using the ultrasonic nebulizer show the smallest d(50) value of 7.2 mu m, with 72% possessing the size less than 10 mu m. Based on the numerical simulation of the vaporization rate of droplets, it is indicated that the droplets with the size of 7.2 mu m can be vaporized totally at very short residence time (0.11s) under 130 degrees C. Effects of influence factors including the reaction temperature, the initial H2O2 concentration, pH value, and the flue gas flow rate were studied on the removal efficiencies of NO and SO2. Using the in-series double-oxidation subsystems with H2O2 concentration of 6wt%, pH5.0, and the reaction temperature of 130 degrees C, the removal efficiencies of SO2 and NO are respectively 100% and 89.3% at the short residence time of 1.8s, and the removal efficiency of NO can be increased to 100% as the residence time is longer than 3.7s. It is confirmed that the ultrasonically atomized H2O2 can indeed enhance the removal efficiencies of NO and SO2 at the optimal temperature, owing to the fast vaporization rate of fine droplets as well as the formation of more active radicals to be captured by NO and SO2 simultaneously. The results here provide a promising route to remove effectively the emissions of NO and SO2 simultaneously.
机译:通过借助于超声雾化器,开发了一种用于使用过氧化氢的反硝化和脱硫的新方法,以获得NOx和SO2的高除去效率。与孔径尺寸的雾化喷嘴相似的雾化喷嘴与0.02mm相似,使用超声雾化器产生的液滴显示最小的D(50)值为7.2μm,具有72%的尺寸小于10μm。基于液滴的蒸发速率的数值模拟,表示尺寸为7.2μm的液滴在130℃下在非常短的停留时间(0.11s)下完全蒸发。影响因素包括反应的影响因素研究了NO和SO2的去除效率研究了初始H 2 O 2浓度,pH值和烟道气流速。使用H2O2浓度为6wt%,pH5.0和130℃的反应温度的串联双氧化子系统,SO2的去除效率分别为1.8的短暂停留时间为100%和89.3% S,如果停留时间超过3.7s,则不能增加至100%的去除效率。确认,由于细液滴的快速蒸发速率以及不同时形成更高的活性自由基而形成更快的激活基团,因此,超声雾化的H 2 O 2在最佳温度下可以在最佳温度下提高NO和SO2的去除效率。这里的结果提供了有希望的路线,可以同时消除NO和SO2的排放。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号