Cargando…

The Dual Effect of Ionic Liquid Pretreatment on the Eucalyptus Kraft Pulp during Oxygen Delignification Process

Oxygen delignification presents high efficiency but causes damage to cellulose, therefore leading to an undesired loss in pulp strength. The effect of ionic liquid pretreatment of [BMIM][HSO(4)] and [TEA][HSO(4)] on oxygen delignification of the eucalyptus kraft pulp was investigated at 10% IL loadi...

Descripción completa

Detalles Bibliográficos
Autores principales: Qi, Letian, Liu, Jinke, Peng, Jianmin, Yang, Guihua, Li, Fengfeng, Xue, Yu, Chen, Jiachuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156748/
https://www.ncbi.nlm.nih.gov/pubmed/34063495
http://dx.doi.org/10.3390/polym13101600
_version_ 1783699519838355456
author Qi, Letian
Liu, Jinke
Peng, Jianmin
Yang, Guihua
Li, Fengfeng
Xue, Yu
Chen, Jiachuan
author_facet Qi, Letian
Liu, Jinke
Peng, Jianmin
Yang, Guihua
Li, Fengfeng
Xue, Yu
Chen, Jiachuan
author_sort Qi, Letian
collection PubMed
description Oxygen delignification presents high efficiency but causes damage to cellulose, therefore leading to an undesired loss in pulp strength. The effect of ionic liquid pretreatment of [BMIM][HSO(4)] and [TEA][HSO(4)] on oxygen delignification of the eucalyptus kraft pulp was investigated at 10% IL loading and 10% pulp consistency, after which composition analysis, pulp and fiber characterizations, and the mechanism of lignin degradation were carried out. A possible dual effect of enhancing delignification and protecting fibers from oxidation damage occurred simultaneously. The proposed [TEA][HSO(4)] pretreatment facilitated lignin removal in oxygen delignification and provided fibers with improved DP, fiber length and width, and curl index, resulting in the enhanced physical strength of pulp. Particularly, its folding endurance improved by 110%. An unusual brightness reduction was identified, followed by detailed characterization on the pulps and extracted lignin with FTIR, UV, XPS, and HSQC. It was proposed that [TEA][HSO(4)] catalyzed the cleavage of β-O-4 bonds in lignin during the oxygen delignification, with the formation of Hibbert’s ketones and quinonoid compounds. The decomposed lignin dissolved and migrated to the fiber surface, where they facilitated the access of the oxidation agent and protected the fiber framework from oxidation damage. Therefore, it was concluded that ionic liquid pretreatment has a dual effect on oxygen delignification.
format Online
Article
Text
id pubmed-8156748
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-81567482021-05-28 The Dual Effect of Ionic Liquid Pretreatment on the Eucalyptus Kraft Pulp during Oxygen Delignification Process Qi, Letian Liu, Jinke Peng, Jianmin Yang, Guihua Li, Fengfeng Xue, Yu Chen, Jiachuan Polymers (Basel) Article Oxygen delignification presents high efficiency but causes damage to cellulose, therefore leading to an undesired loss in pulp strength. The effect of ionic liquid pretreatment of [BMIM][HSO(4)] and [TEA][HSO(4)] on oxygen delignification of the eucalyptus kraft pulp was investigated at 10% IL loading and 10% pulp consistency, after which composition analysis, pulp and fiber characterizations, and the mechanism of lignin degradation were carried out. A possible dual effect of enhancing delignification and protecting fibers from oxidation damage occurred simultaneously. The proposed [TEA][HSO(4)] pretreatment facilitated lignin removal in oxygen delignification and provided fibers with improved DP, fiber length and width, and curl index, resulting in the enhanced physical strength of pulp. Particularly, its folding endurance improved by 110%. An unusual brightness reduction was identified, followed by detailed characterization on the pulps and extracted lignin with FTIR, UV, XPS, and HSQC. It was proposed that [TEA][HSO(4)] catalyzed the cleavage of β-O-4 bonds in lignin during the oxygen delignification, with the formation of Hibbert’s ketones and quinonoid compounds. The decomposed lignin dissolved and migrated to the fiber surface, where they facilitated the access of the oxidation agent and protected the fiber framework from oxidation damage. Therefore, it was concluded that ionic liquid pretreatment has a dual effect on oxygen delignification. MDPI 2021-05-15 /pmc/articles/PMC8156748/ /pubmed/34063495 http://dx.doi.org/10.3390/polym13101600 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Qi, Letian
Liu, Jinke
Peng, Jianmin
Yang, Guihua
Li, Fengfeng
Xue, Yu
Chen, Jiachuan
The Dual Effect of Ionic Liquid Pretreatment on the Eucalyptus Kraft Pulp during Oxygen Delignification Process
title The Dual Effect of Ionic Liquid Pretreatment on the Eucalyptus Kraft Pulp during Oxygen Delignification Process
title_full The Dual Effect of Ionic Liquid Pretreatment on the Eucalyptus Kraft Pulp during Oxygen Delignification Process
title_fullStr The Dual Effect of Ionic Liquid Pretreatment on the Eucalyptus Kraft Pulp during Oxygen Delignification Process
title_full_unstemmed The Dual Effect of Ionic Liquid Pretreatment on the Eucalyptus Kraft Pulp during Oxygen Delignification Process
title_short The Dual Effect of Ionic Liquid Pretreatment on the Eucalyptus Kraft Pulp during Oxygen Delignification Process
title_sort dual effect of ionic liquid pretreatment on the eucalyptus kraft pulp during oxygen delignification process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156748/
https://www.ncbi.nlm.nih.gov/pubmed/34063495
http://dx.doi.org/10.3390/polym13101600
work_keys_str_mv AT qiletian thedualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT liujinke thedualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT pengjianmin thedualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT yangguihua thedualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT lifengfeng thedualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT xueyu thedualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT chenjiachuan thedualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT qiletian dualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT liujinke dualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT pengjianmin dualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT yangguihua dualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT lifengfeng dualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT xueyu dualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess
AT chenjiachuan dualeffectofionicliquidpretreatmentontheeucalyptuskraftpulpduringoxygendelignificationprocess