...
首页> 外文期刊>Environmental Engineering Science >Developments of the Plasma-Enhanced Electrostatic Precipitator for Mercury Removal in Offgas
【24h】

Developments of the Plasma-Enhanced Electrostatic Precipitator for Mercury Removal in Offgas

机译:等离子增强静电除尘器去除废气中汞的研究进展

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents the latest results of testing using a scaled up 28-standard liter per minute (slpm) [1-standard cubic foot per minute (scfm)] version of the recently designed and constructed plasma-enhanced electrostatic precipitator (PEESP). Previous results were published at bench scale. The PEESP technology injects a selected reagent gas mixture through a corona discharge generated by central electrodes. By adapting the electrode for reagent gas injection directly into the active zone, the area surrounding the sharp discharge points, chemical radicals are immediately formed from the absorption of ozone at the corona discharge points. Experimental evidence suggests that reactive species and radicals are formed that selectively oxidize the elemental mercury vapor, which forms water-soluble compounds and fine particulate that are absorbed by the condensing water droplets. In the electric field, the water droplets acquire a negative charge and are attracted to the grounded positive electrode (reactor wall) where they are removed from the system. The aqueous mercuric ions, thus formed, are collected on the electrode walls and removed as a liquid slurry. The PEESP has no moving parts, minimizing maintenance. The PEESP process is expected to be economical. The PEESP electrode assembly is intended to replace the existing electrostatic precipitator central electrode and use the existing power supply. While oxidized forms are largely removed by scrubbing systems, highly volatile elemental mercury is not. The only known effective control technology for mercury is carbon or other types of sorbent injection followed by a baghouse. Since the PEESP uses gases as a reagent to oxidize the elemental mercury, it can greatly minimize the issues of storage, handling, and associated hazardous waste disposal typical of solid injection systems for mercury removal.
机译:本文介绍了使用最新设计和构造的等离子增强静电除尘器(PEESP)的按比例增加的每分钟28标准升(slpm)[1-标准立方英尺每分钟(scfm)]版本的最新测试结果。先前的结果以基准规模发布。 PEESP技术通过中央电极产生的电晕放电注入选定的反应气混合物。通过使电极直接注入反应气体到活性区,即尖锐放电点周围的区域,在电晕放电点吸收臭氧会立即形成化学自由基。实验证据表明,形成的反应性物种和自由基选择性氧化了元素汞蒸气,形成了水溶性化合物和细小颗粒,这些颗粒被冷凝的水滴吸收。在电场中,水滴会带负电荷,并被吸引到接地的正极(反应器壁),然后从系统中将其除去。由此形成的水银离子被收集在电极壁上并作为液体浆液被去除。 PEESP没有活动部件,从而最大限度地减少了维护。 PEESP流程预计将是经济的。 PEESP电极组件旨在替换现有的静电除尘器中央电极并使用现有的电源。尽管通过洗涤系统可将大部分氧化形式去除,但高挥发性元素汞却无法去除。汞的唯一已知有效控制技术是碳或其他类型的吸附剂注入,其后是集尘室。由于PEESP使用气体作为试剂来氧化元素汞,因此它可以极大地减少存储,处理和相关的危险废物处置问题,这些问题通常是用于除汞的固体喷射系统。

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