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A Comparative Investigation on Structural and Chemical Differences between the Pith and Rind of Sunflower Stalk and Their Influences on Nanofibrillation Efficiency

The structure and chemical composition of cell walls play a vital role in the bioconversion and utilization of plants. In the present study, the cell wall structure and chemical composition of pith and rind from sunflower stalks were compared and correlated to their nanofibrillation efficiency with...

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Autores principales: Zhang, Lingyan, Ren, Wenting, Liu, Fangqingxin, Xia, Linmin, Wu, Xiaomei, Yang, Rilong, Yu, Yan, Zhang, Xuexia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912687/
https://www.ncbi.nlm.nih.gov/pubmed/35267755
http://dx.doi.org/10.3390/polym14050930
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author Zhang, Lingyan
Ren, Wenting
Liu, Fangqingxin
Xia, Linmin
Wu, Xiaomei
Yang, Rilong
Yu, Yan
Zhang, Xuexia
author_facet Zhang, Lingyan
Ren, Wenting
Liu, Fangqingxin
Xia, Linmin
Wu, Xiaomei
Yang, Rilong
Yu, Yan
Zhang, Xuexia
author_sort Zhang, Lingyan
collection PubMed
description The structure and chemical composition of cell walls play a vital role in the bioconversion and utilization of plants. In the present study, the cell wall structure and chemical composition of pith and rind from sunflower stalks were compared and correlated to their nanofibrillation efficiency with ultrasonic treatment. Mild chemical pretreatment using 1% or 4% NaOH without any bleaching process were applied prior to ultrasonication nanofibrillation. Significant structural and chemical differences were demonstrated between the pith and rind, with the former exhibiting a much lower lignin and hemicellulose contents, higher pectin, much looser cell structure and higher cell wall porosity than the latter. Alkaline treatment alone was sufficient to eliminate most of the hemicellulose and pectin from stalk pith, whereas only partial removal of hemicellulose and lignin was achieved for the woody rind part. After 30 min of ultrasonic treatment, the stalk pith exhibited fully defibrillated fibrils with a continuous and entangled micro/nanofibrillated network, whereas numerous micron-sized fiber and fragments remained for the rind. The results indicated that stalk pith is less recalcitrant and easier to be fibrillated with ultrasonication than rind, which must be correlated to their distinct differences in both structure and chemical composition.
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spelling pubmed-89126872022-03-11 A Comparative Investigation on Structural and Chemical Differences between the Pith and Rind of Sunflower Stalk and Their Influences on Nanofibrillation Efficiency Zhang, Lingyan Ren, Wenting Liu, Fangqingxin Xia, Linmin Wu, Xiaomei Yang, Rilong Yu, Yan Zhang, Xuexia Polymers (Basel) Article The structure and chemical composition of cell walls play a vital role in the bioconversion and utilization of plants. In the present study, the cell wall structure and chemical composition of pith and rind from sunflower stalks were compared and correlated to their nanofibrillation efficiency with ultrasonic treatment. Mild chemical pretreatment using 1% or 4% NaOH without any bleaching process were applied prior to ultrasonication nanofibrillation. Significant structural and chemical differences were demonstrated between the pith and rind, with the former exhibiting a much lower lignin and hemicellulose contents, higher pectin, much looser cell structure and higher cell wall porosity than the latter. Alkaline treatment alone was sufficient to eliminate most of the hemicellulose and pectin from stalk pith, whereas only partial removal of hemicellulose and lignin was achieved for the woody rind part. After 30 min of ultrasonic treatment, the stalk pith exhibited fully defibrillated fibrils with a continuous and entangled micro/nanofibrillated network, whereas numerous micron-sized fiber and fragments remained for the rind. The results indicated that stalk pith is less recalcitrant and easier to be fibrillated with ultrasonication than rind, which must be correlated to their distinct differences in both structure and chemical composition. MDPI 2022-02-25 /pmc/articles/PMC8912687/ /pubmed/35267755 http://dx.doi.org/10.3390/polym14050930 Text en © 2022 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
Zhang, Lingyan
Ren, Wenting
Liu, Fangqingxin
Xia, Linmin
Wu, Xiaomei
Yang, Rilong
Yu, Yan
Zhang, Xuexia
A Comparative Investigation on Structural and Chemical Differences between the Pith and Rind of Sunflower Stalk and Their Influences on Nanofibrillation Efficiency
title A Comparative Investigation on Structural and Chemical Differences between the Pith and Rind of Sunflower Stalk and Their Influences on Nanofibrillation Efficiency
title_full A Comparative Investigation on Structural and Chemical Differences between the Pith and Rind of Sunflower Stalk and Their Influences on Nanofibrillation Efficiency
title_fullStr A Comparative Investigation on Structural and Chemical Differences between the Pith and Rind of Sunflower Stalk and Their Influences on Nanofibrillation Efficiency
title_full_unstemmed A Comparative Investigation on Structural and Chemical Differences between the Pith and Rind of Sunflower Stalk and Their Influences on Nanofibrillation Efficiency
title_short A Comparative Investigation on Structural and Chemical Differences between the Pith and Rind of Sunflower Stalk and Their Influences on Nanofibrillation Efficiency
title_sort comparative investigation on structural and chemical differences between the pith and rind of sunflower stalk and their influences on nanofibrillation efficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912687/
https://www.ncbi.nlm.nih.gov/pubmed/35267755
http://dx.doi.org/10.3390/polym14050930
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