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外源纤维种类及打浆方式对造纸法烟草薄片性能的影响研究

董高峰 周桂园 刘晶 李慧帆 胡巍耀 刘梦茹 顾鹏坤

中国造纸学报2025,Vol.40Issue(1):145-153,9.
中国造纸学报2025,Vol.40Issue(1):145-153,9.DOI:10.11981/j.issn.1000-6842.2025.01.145

外源纤维种类及打浆方式对造纸法烟草薄片性能的影响研究

Study on the Effect of External Fiber Types and Beating Methods on the Properties of Reconstituted Tobacco Sheets

董高峰 1周桂园 1刘晶 1李慧帆 2胡巍耀 1刘梦茹 3顾鹏坤3

作者信息

  • 1. 云南中烟工业有限责任公司技术中心,云南 昆明,650231
  • 2. 中烟施伟策(云南)再造烟叶有限公司,云南玉溪,653100||昆明理工大学化学工程学院,云南 昆明,650500
  • 3. 华南理工大学,广东 广州,510641
  • 折叠

摘要

Abstract

This study selected six types of external fibers and implemented differentiated beating processes according to their fiber characteris-tics.The impacts of classified beating on fiber properties,hot water-soluble content and physicochemical properties of reconstituted tobacco sheets,as well as sensory quality of cigar were systematically evaluated to identify the optimum external fiber type.The results demonstrated that the reconstituted tobacco base sheets prepared through classified beating exhibited superior flatness,improved bulk and formation unifor-mity with reduced two-sided variation.The surfaces showed minimal visible large particles,facilitating uniform distribution and vertical pene-tration of coating solutions.The optimized base sheets incorporating Manila hemp pulp with beating degree of 43°SR as external fibers devel-oped a refined pore structure characterized by increased quantity and reduced pore size,enhancing both permeability and retention uniformity of coating solutions.Post-optimization characterization showed that the reconstituted tobacco sheets displayed a notable thickness increase ap-proaching double that of base sheets,accompanied by significantly enhanced cross-sectional porosity.

关键词

造纸法烟草薄片/外源纤维/感官评吸/热水可溶物

Key words

reconstitutes tobacco sheet by papermaking method/external fiber/sensory evaluation/hot water soluble content

分类

轻工业

引用本文复制引用

董高峰,周桂园,刘晶,李慧帆,胡巍耀,刘梦茹,顾鹏坤..外源纤维种类及打浆方式对造纸法烟草薄片性能的影响研究[J].中国造纸学报,2025,40(1):145-153,9.

基金项目

云南中烟工业有限责任公司重点项目(2022GY04) (2022GY04)

云南中烟工业有限责任公司重大专项项目(2024YL04). (2024YL04)

中国造纸学报

OA北大核心

1000-6842

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