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降膜式等离子体-芬顿协同体系在KN-R废水处理中的性能与机理探究

石玮晔 刘思翰 赵书畅 王帅 王忠宝 霍纯青

人工晶体学报2025,Vol.54Issue(8):1478-1490,13.
人工晶体学报2025,Vol.54Issue(8):1478-1490,13.DOI:10.16553/j.cnki.issn1000-985x.2025.0037

降膜式等离子体-芬顿协同体系在KN-R废水处理中的性能与机理探究

Investigation on Performance and Mechanism of the Falling Film-Type Plasma-Fenton Synergistic System in Treatment of KN-R Wastewater

石玮晔 1刘思翰 1赵书畅 2王帅 1王忠宝 1霍纯青1

作者信息

  • 1. 海南大学材料科学与工程学院,海口 570228
  • 2. 河北大学化学与材料科学学院,保定 071002
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摘要

Abstract

With the development of industry,the treatment of printing and dyeing wastewater has become an important issue in environmental protection.As a typical dye in printing and dyeing wastewater,the degradation efficiency of reactive brilliant blue KN-R(RBB KN-R)directly affects the quality of wastewater treatment and environmental safety.Aiming at the problem of treating RBB KN-R printing and dyeing wastewater,this study designed a falling film dielectric barrier discharge(DBD)plasma reactor.The experimental results show that this device can effectively remove 84.30%of RBB KN-R within 25 min.Further combination of DBD plasma with the Fenton reaction significantly improves the degradation efficiency and mineralization rate of the dye.The study also analyzes the key reactive substances and degradation pathways during the degradation process,clarifies the synergistic mechanism between DBD plasma and the Fenton reaction.Moreover,this system causes less secondary pollution during the treatment process and is environmentally friendly.These findings provide theoretical support and practical guidance for the application of low-temperature plasma technology in the treatment of industrial wastewater.

关键词

降膜式介质阻挡放电等离子体/芬顿反应/活性艳蓝KN-R/印染废水处理/降解效率/协同作用

Key words

falling film dielectric barrier discharge plasma/Fenton reaction/reactive brilliant blue KN-R/printing and dyeing wastewater treatment/degradation efficiency/synergistic effect

分类

资源环境

引用本文复制引用

石玮晔,刘思翰,赵书畅,王帅,王忠宝,霍纯青..降膜式等离子体-芬顿协同体系在KN-R废水处理中的性能与机理探究[J].人工晶体学报,2025,54(8):1478-1490,13.

基金项目

国家自然科学基金青年科学基金(11805046) (11805046)

海南省自然科学基金(325MS025,120RC456,518QN211) (325MS025,120RC456,518QN211)

海南省高等学校科学研究项目(Hnky2018-4) (Hnky2018-4)

人工晶体学报

OA北大核心

1000-985X

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