...
首页> 外文期刊>Chemical engineering journal >Simultaneous removal of SO2 and NO from flue gas with % OH from the catalytic decomposition of gas-phase H2O2 over solid-phase Fe-2(SO4)(3)
【24h】

Simultaneous removal of SO2 and NO from flue gas with % OH from the catalytic decomposition of gas-phase H2O2 over solid-phase Fe-2(SO4)(3)

机译:从固相Fe-2上的气相H 2 O 2的催化分解,同时除去SO2和烟气的烟气,从催化分解(SO 4)(3)

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In typical Fenton-like reaction, ferric sulfate (Fe-2(SO4)(3)) was usually used to produce hydroxyl radical (% OH) in the form of Fe3+ in aqueous solution. In this research, it was the first time that % OH was obtained from the catalytic decomposition of gas-phase H2O2 over solid-phase Fe-2(SO4)(3) for simultaneous removal of SO2 and NO. The radical scavenger tests indicated the critical role of % OH in NO removal rather than SO2 removal. The operation parameters were systematically investigated. The SO2 removal efficiency was affected by the liquid absorption, whereas the NO removal was mainly affected by the catalytic temperature, H2O2 concentration, H2O concentration and catalyst dosage. 99.8% SO2 and 92.5% NO were achieved under the operation condition where the molar ratio of H2O2 to NO was 2.5. According to the products before and after scrubbing, the removal process of SO2 and NO were speculated. NO removal experiments in NO only system and simultaneous removal system was studied, respectively. The improvement of SO2 on NO removal was elucidated by XPS characterization. SO2 and NO removal efficiencies in 12 hours' test were collected and the evolution of catalyst before and after reaction was studied using FTIR and SEM-EDX.
机译:在典型的芬顿反应中,通常用于在水溶液中以Fe 3 +的形式生产硫酸铁(Fe-2(SO 4)(3))。在该研究中,首次首次从固相Fe-2(SO 4)(3)上的气相H 2 O 2的催化分解获得,以同时除去SO2和NO。自由基清除剂测试表明,无需去除而不是SO2去除的%OH的关键作用。系统地研究了操作参数。 SO2去除效率受液体吸收的影响,而不得去除主要受催化温度,H 2 O 2浓度,H2O浓度和催化剂剂量的影响。在运行条件下实现99.8%SO2和92.5%,其中H 2 O 2至No的摩尔比为2.5。根据擦洗前后的产品,推测SO2和NO的去除过程。除了没有唯一的系统和同时去除系统的去除实验。通过XPS表征阐明了未去除的SO 2的改善。 SO2并没有收集12小时试验中的去除效率,并使用FTIR和SEM-EDX研究反应前后催化剂的演化。

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