STUDY OF THE STRUCTURE OF WOOD-RELATED BIOPOLYMERS BY SORPTION METHODS

The potentialities of different vapour sorption methods are analized for the investigation of the microstructure of wood sorbents (wood, cellulose and lignin) as a particular case of biopolymers. There are two important distinctions in the sorption behaviour of biopolymers from traditional rigid sor...

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Main Authors: Jelena Chirkova, Bruno Andersons, Ingeborga Andersone
Format: Article
Language:English
Published: North Carolina State University 2009-08-01
Series:BioResources
Subjects:
Online Access:http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_04_3_1044_Chirkova_AA_Structure_Wood_Biopolymers_Sorption/405
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author Jelena Chirkova
Bruno Andersons
Ingeborga Andersone
author_facet Jelena Chirkova
Bruno Andersons
Ingeborga Andersone
author_sort Jelena Chirkova
collection DOAJ
description The potentialities of different vapour sorption methods are analized for the investigation of the microstructure of wood sorbents (wood, cellulose and lignin) as a particular case of biopolymers. There are two important distinctions in the sorption behaviour of biopolymers from traditional rigid sorbents, namely, the dependence of the characteristics of the porous structure on the thermodynamic properties of the sorbate, and the manifestation of the sorption hysteresis over the whole region of the sorption–desorption isotherm. The reason for these distinctions is the low rigidity (low values of modulus of elasticity) of biopolymers, hence, their considerable deformability under the action of sorption forces, resulting in the cleavage of interstructural bonds. This process, manifesting itself phenomenologically as swelling, depends on the activity of the sorbate and results in the appearance of porosity and a new surface. The criterion for the activity of the sorbate is close values of the solubility parameters of the polymer and the sorbate. Inert substances are adsorbed on the surface of large morphological formations and characterise the intact structure of the sorbent, while active sorbates cause the swelling of these formations and penetrate them, which enables a study of the microstructure of sorbents. In the desorption process, the cleaved bonds are restored, blocking a part of the sorbate in the polymer’s structure, which results in the appearance of sorption hysteresis, not connected directly with the porous structure of the sorbent.
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spelling doaj.art-a825f3a3ca854e9f8bcddd734dd5b8a42022-12-21T18:37:12ZengNorth Carolina State UniversityBioResources1930-21262009-08-014310441057STUDY OF THE STRUCTURE OF WOOD-RELATED BIOPOLYMERS BY SORPTION METHODSJelena ChirkovaBruno AndersonsIngeborga AndersoneThe potentialities of different vapour sorption methods are analized for the investigation of the microstructure of wood sorbents (wood, cellulose and lignin) as a particular case of biopolymers. There are two important distinctions in the sorption behaviour of biopolymers from traditional rigid sorbents, namely, the dependence of the characteristics of the porous structure on the thermodynamic properties of the sorbate, and the manifestation of the sorption hysteresis over the whole region of the sorption–desorption isotherm. The reason for these distinctions is the low rigidity (low values of modulus of elasticity) of biopolymers, hence, their considerable deformability under the action of sorption forces, resulting in the cleavage of interstructural bonds. This process, manifesting itself phenomenologically as swelling, depends on the activity of the sorbate and results in the appearance of porosity and a new surface. The criterion for the activity of the sorbate is close values of the solubility parameters of the polymer and the sorbate. Inert substances are adsorbed on the surface of large morphological formations and characterise the intact structure of the sorbent, while active sorbates cause the swelling of these formations and penetrate them, which enables a study of the microstructure of sorbents. In the desorption process, the cleaved bonds are restored, blocking a part of the sorbate in the polymer’s structure, which results in the appearance of sorption hysteresis, not connected directly with the porous structure of the sorbent.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_04_3_1044_Chirkova_AA_Structure_Wood_Biopolymers_Sorption/405WoodCelluloseLigninNitrogenWaterMethanol SorptionSolubility ParameterSizes of Microstructure UnitsSorption-Desorption Hysteresis
spellingShingle Jelena Chirkova
Bruno Andersons
Ingeborga Andersone
STUDY OF THE STRUCTURE OF WOOD-RELATED BIOPOLYMERS BY SORPTION METHODS
BioResources
Wood
Cellulose
Lignin
Nitrogen
Water
Methanol Sorption
Solubility Parameter
Sizes of Microstructure Units
Sorption-Desorption Hysteresis
title STUDY OF THE STRUCTURE OF WOOD-RELATED BIOPOLYMERS BY SORPTION METHODS
title_full STUDY OF THE STRUCTURE OF WOOD-RELATED BIOPOLYMERS BY SORPTION METHODS
title_fullStr STUDY OF THE STRUCTURE OF WOOD-RELATED BIOPOLYMERS BY SORPTION METHODS
title_full_unstemmed STUDY OF THE STRUCTURE OF WOOD-RELATED BIOPOLYMERS BY SORPTION METHODS
title_short STUDY OF THE STRUCTURE OF WOOD-RELATED BIOPOLYMERS BY SORPTION METHODS
title_sort study of the structure of wood related biopolymers by sorption methods
topic Wood
Cellulose
Lignin
Nitrogen
Water
Methanol Sorption
Solubility Parameter
Sizes of Microstructure Units
Sorption-Desorption Hysteresis
url http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_04_3_1044_Chirkova_AA_Structure_Wood_Biopolymers_Sorption/405
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