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MnFeAl/H-ZSM-5催化剂的制备及其脱硝协同脱除二噁英性能

陈传敏 朱少东 曹悦 高昊宇 潘昊 刘松涛 贾文波

化学工程2026,Vol.54Issue(5):14-19,26,7.
化学工程2026,Vol.54Issue(5):14-19,26,7.DOI:10.3969/j.issn.1005-9954.2026.05.003

MnFeAl/H-ZSM-5催化剂的制备及其脱硝协同脱除二噁英性能

Preparation of MnFeAl/H-ZSM-5 catalyst and performance of synergistic removal of dioxins

陈传敏 1朱少东 1曹悦 1高昊宇 1潘昊 1刘松涛 1贾文波1

作者信息

  • 1. 华北电力大学(保定) 环境科学与工程系,河北保定 071000||华北电力大学(保定) 河北省燃煤电站烟气多污染物协同控制重点实验室,河北保定 071000
  • 折叠

摘要

Abstract

In order to improve the catalytic activity and sulfur resistance of MnFe/Z(MnFe/H-ZSM-5)catalyst in the synergistic removal of dioxins at medium and low temperatures,an modification strategy of acid etching coupled with Al modification was proposed,and MnxFe1Al1/Z(MnxFe1Al1/H-ZSM-5-E)bifunctional catalyst was successfully prepared.The denitrification efficiency,chlorobenzene removal efficiency and synergistic removal effect of both were systematically evaluated at 100-400 ℃,and characterized by SEM,BET,XRD,XPS,H2-TPR and NH3-TPD.The results show that the MnxFe1Al1/Z catalyst has the best synergistic removal performance for NO and CB(chlorcbenzene),and the removal efficiency of both reaches more than 90%at 280-400 ℃.After acid etching and Al doping modification,the specific surface area and pore size of MnFe/Z catalyst increase,Mn and Fe are highly dispersed on H-ZSM-5.Further analysis results show that acid etching coupled with Al modification can effectively increase the oxygen vacancy content of MnFe/Z,produce abundant acidic sites and promote the improvement of redox ability.At the same temperature,the synergistic removal efficiency of NO and CB is effectively improved,and Al modification also significantly improves the sulfur resistance of the catalyst.

关键词

酸刻蚀/脱硝/二噁英/抗硫性/Al改性/MnFeAl/H-ZSM-5

Key words

acid etch/denitrification/dioxins/sulfur-resistant/Al modification/MnFeAl/H-ZSM-5

分类

资源环境

引用本文复制引用

陈传敏,朱少东,曹悦,高昊宇,潘昊,刘松涛,贾文波..MnFeAl/H-ZSM-5催化剂的制备及其脱硝协同脱除二噁英性能[J].化学工程,2026,54(5):14-19,26,7.

基金项目

中央高校基本科研业务费面上项目(2024MS177) (2024MS177)

大学生创新创业训练计划项目(X2024095) (X2024095)

化学工程

1005-9954

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