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卷烟滤棒中降焦减害功能多孔吸附材料的研究进展

田稼越 王雪晴 孙培健 杜淼

轻工学报2026,Vol.41Issue(2):89-96,8.
轻工学报2026,Vol.41Issue(2):89-96,8.DOI:10.12187/2026.02.008

卷烟滤棒中降焦减害功能多孔吸附材料的研究进展

Research process of functional porous adsorbent materials in cigarette filter rod for tar and harm reduction

田稼越 1王雪晴 1孙培健 2杜淼1

作者信息

  • 1. 郑州轻工业大学 新能源学院,河南 郑州 450001
  • 2. 中国烟草总公司 郑州烟草研究院,河南 郑州 450001
  • 折叠

摘要

Abstract

Porous adsorbent materials are a type of functional materials in cigarette filter rods,whose structures and types directly affect the retention efficiency of harmful substances in cigarette smoke.This paper systematically reviews the adsorption mechanism and research progress of functional porous materials used in cigarette filter rods;the adsorption and removal of harmful components in cigarette smoke is a synergistic process of kinetic mass transfer and thermodynamic adsorption,which is mainly affected by the pore structure,molecular structure and functional adsorption sites of adsorbent materials.Through strategies such as multi-level pore design,surface functionalization modification,anchoring of molecular specific recognition sites,and multi-component composite,we can functionally construct these three types of porous adsorbent materials,namely inorganic,organic,and organic-inorganic hybrids,to improve the selective adsorption and retention efficiency of harmful components in cigarette smoke.In the future,it is necessary to conduct more in-depth research on the dynamic adsorption mechanism of the complex matrix of cigarette smoke to realize the precise and controlled preparation of adsorbent materials for cigarette filter rods and the precise and efficient retention of harmful smoke components,as well as provide a reference for the development of tar and harm reduction technologies in the tobacco industry.

关键词

卷烟滤棒/卷烟烟气/降焦减害/功能多孔吸附材料

Key words

cigarette filter rod/cigarette smoke/tar and harm reduction/functional porous adsorbent material

分类

轻工纺织

引用本文复制引用

田稼越,王雪晴,孙培健,杜淼..卷烟滤棒中降焦减害功能多孔吸附材料的研究进展[J].轻工学报,2026,41(2):89-96,8.

基金项目

国家烟草专卖局创新平台科研活动稳定支持专项项目(312021AW0420) (312021AW0420)

郑州轻工业大学博士科研基金项目(2021BSJJ009) (2021BSJJ009)

轻工学报

2095-476X

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