PREPARATION AND CHARACTERIZATION OF ORGANIC AEROGELS BY THE LIGNIN - RESORCINOL - FORMALDEHYDE COPOLYMER

Lignin can be used as a cheap natural raw material to prepare organic aerogels based upon gelation and supercritical drying in ethanol. The aerogels were prepared from a mixture of the raw materials with lignin (L), resorcinol (R), and formaldehyde (F), followed by a reaction catalyzed by NaOH(C). T...

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Main Authors: Feng Chen, Min Xu, Lijuan Wang, Jian Li
Format: Article
Language:English
Published: North Carolina State University 2011-04-01
Series:BioResources
Subjects:
Online Access:http://www.ncsu.edu/bioresources/BioRes_06/BioRes_06_2_1262_Chen_XWL_Organ_Aerogels_Lignin_Resorc_CH2O_Copol_1321.pdf
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spelling doaj-c5b7ca4d00f34ec680c948911b04f1ce2020-11-24T22:26:25ZengNorth Carolina State UniversityBioResources1930-21262011-04-016212621272PREPARATION AND CHARACTERIZATION OF ORGANIC AEROGELS BY THE LIGNIN - RESORCINOL - FORMALDEHYDE COPOLYMERFeng ChenMin XuLijuan WangJian LiLignin can be used as a cheap natural raw material to prepare organic aerogels based upon gelation and supercritical drying in ethanol. The aerogels were prepared from a mixture of the raw materials with lignin (L), resorcinol (R), and formaldehyde (F), followed by a reaction catalyzed by NaOH(C). The effect of the preparation conditions, such as the LRF concentration, the mass ratio of LR to NaOH (LR/C), the mole ratio of LR to F (LR/F), and the gelation temperature, on the gelation ability and the bulk density were studied. The results showed that the density of LRF aerogels increased with increasing reactant concentration and catalyst content. The microstructure of the porous carbon aerogels was investigated by SEM and TEM. The specific surface area and pore size distribution of LRF and RF aerogels were studied by nitrogen adsorption-desorption analysis. The pore width of LRF aerogels ranged from 1 nm to 100 nm. Most of the pores were about 50 nm wide, as is typical for mesoporous materials.www.ncsu.edu/bioresources/BioRes_06/BioRes_06_2_1262_Chen_XWL_Organ_Aerogels_Lignin_Resorc_CH2O_Copol_1321.pdfLigninResorcinolOrganic aerogelPorous structure
collection DOAJ
language English
format Article
sources DOAJ
author Feng Chen
Min Xu
Lijuan Wang
Jian Li
spellingShingle Feng Chen
Min Xu
Lijuan Wang
Jian Li
PREPARATION AND CHARACTERIZATION OF ORGANIC AEROGELS BY THE LIGNIN - RESORCINOL - FORMALDEHYDE COPOLYMER
BioResources
Lignin
Resorcinol
Organic aerogel
Porous structure
author_facet Feng Chen
Min Xu
Lijuan Wang
Jian Li
author_sort Feng Chen
title PREPARATION AND CHARACTERIZATION OF ORGANIC AEROGELS BY THE LIGNIN - RESORCINOL - FORMALDEHYDE COPOLYMER
title_short PREPARATION AND CHARACTERIZATION OF ORGANIC AEROGELS BY THE LIGNIN - RESORCINOL - FORMALDEHYDE COPOLYMER
title_full PREPARATION AND CHARACTERIZATION OF ORGANIC AEROGELS BY THE LIGNIN - RESORCINOL - FORMALDEHYDE COPOLYMER
title_fullStr PREPARATION AND CHARACTERIZATION OF ORGANIC AEROGELS BY THE LIGNIN - RESORCINOL - FORMALDEHYDE COPOLYMER
title_full_unstemmed PREPARATION AND CHARACTERIZATION OF ORGANIC AEROGELS BY THE LIGNIN - RESORCINOL - FORMALDEHYDE COPOLYMER
title_sort preparation and characterization of organic aerogels by the lignin - resorcinol - formaldehyde copolymer
publisher North Carolina State University
series BioResources
issn 1930-2126
publishDate 2011-04-01
description Lignin can be used as a cheap natural raw material to prepare organic aerogels based upon gelation and supercritical drying in ethanol. The aerogels were prepared from a mixture of the raw materials with lignin (L), resorcinol (R), and formaldehyde (F), followed by a reaction catalyzed by NaOH(C). The effect of the preparation conditions, such as the LRF concentration, the mass ratio of LR to NaOH (LR/C), the mole ratio of LR to F (LR/F), and the gelation temperature, on the gelation ability and the bulk density were studied. The results showed that the density of LRF aerogels increased with increasing reactant concentration and catalyst content. The microstructure of the porous carbon aerogels was investigated by SEM and TEM. The specific surface area and pore size distribution of LRF and RF aerogels were studied by nitrogen adsorption-desorption analysis. The pore width of LRF aerogels ranged from 1 nm to 100 nm. Most of the pores were about 50 nm wide, as is typical for mesoporous materials.
topic Lignin
Resorcinol
Organic aerogel
Porous structure
url http://www.ncsu.edu/bioresources/BioRes_06/BioRes_06_2_1262_Chen_XWL_Organ_Aerogels_Lignin_Resorc_CH2O_Copol_1321.pdf
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AT minxu preparationandcharacterizationoforganicaerogelsbytheligninresorcinolformaldehydecopolymer
AT lijuanwang preparationandcharacterizationoforganicaerogelsbytheligninresorcinolformaldehydecopolymer
AT jianli preparationandcharacterizationoforganicaerogelsbytheligninresorcinolformaldehydecopolymer
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