返回列表 发布新帖

[能源与动力工程] 燃煤电厂烟气中氨脱除及分布机理研究

20 0
admin 发表于 2025-1-21 16:30 | 查看全部 阅读模式

燃煤电厂烟气中氨脱除及分布机理研究
摘要:在燃煤电厂选择性催化还原(selective catalytic reduction,SCR)脱硝高浓度逃逸氨条件下,对氨在脱硝下游设备中的脱除效率、粉煤灰和浆液中的富集浓度及其分布机理进行研究。对350 MW及600 MW机组分别进行取样分析,结果表明:空预器、电除尘器和湿法脱硫系统对逃逸氨的脱除效率分别为3.37%~6.63%、75.14%~83.28%和36.36%~46.38%,这些下游环保设备对氨的脱除效率高,烟囱入口氨浓度相对脱硝出口氨浓度下降明显;飞灰中的氨含量与飞灰粒径成反比;脱硫净烟气中的氨浓度随原烟气中氨浓度的增大而增大;脱硫系统对氨的脱除效率随浆液pH值的增大而降低。研究结果对机组的环保和经济运行具有重要意义。

Abstract:The removal efficiency of ammonia in denitrification downstream equipment, concentration and distribution mechanism of ammonia in fly ash and slurry were studied under the condition of high concentration of ammonia escaping from denitrification by selective catalytic reduction (SCR) in coal-fired power plants. Through sampling analysis of 350 MW and 600 MW units, the results show that: the escaping ammonia removal efficiencies of air preheater, electrostatic precipitator and wet desulphurization system are 3.37%-6.63%, 75.14%-83.28% and 36.36%-46.38%, respectively. The ammonia removal efficiencies of these downstream environmental protection equipment are high, and the ammonia concentration at chimney entrance decreases obviously compared with that at denitrification outlet. The ammonia content in fly ash is inversely proportional to the particle size of fly ash. Ammonia concentration in desulfurized flue gas increases with the increase of ammonia concentration in original flue gas. The removal efficiency of ammonia in desulphurization system decreases with the increase of slurry pH value. The results have great significance to the units’ environmental protection and economic running.

标题:燃煤电厂烟气中氨脱除及分布机理研究
title:Study on Removal and Distribution Mechanism of Ammonia in Flue Gas of Coal-fired Power Plant

作者:吉攀
authors:Pan JI

关键词:燃煤电厂,选择性催化还原(SCR),逃逸氨,
keywords:coal-fired power plant,selective catalytic reduction (SCR),ammonia slip,

发表日期:2023-06-30
2025-1-21 00:26 上传
文件大小:
792.46 KB
下载次数:
60
高速下载
【温馨提示】 您好!以下是下载说明,请您仔细阅读:
1、推荐使用360安全浏览器访问本站,选择您所需的PDF文档,点击页面下方“本地下载”按钮。
2、耐心等待两秒钟,系统将自动开始下载,本站文件均为高速下载。
3、下载完成后,请查看您浏览器的下载文件夹,找到对应的PDF文件。
4、使用PDF阅读器打开文档,开始阅读学习。
5、使用过程中遇到问题,请联系QQ客服。

本站提供的所有PDF文档、软件、资料等均为网友上传或网络收集,仅供学习和研究使用,不得用于任何商业用途。
本站尊重知识产权,若本站内容侵犯了您的权益,请及时通知我们,我们将尽快予以删除。
  • 手机访问
    微信扫一扫
  • 联系QQ客服
    QQ扫一扫
2022-2025 新资汇 - 参考资料免费下载网站 最近更新浙ICP备2024084428号-1
关灯 返回顶部
快速回复 返回顶部 返回列表