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홍조류 펄프로 제조된 카르복시메틸화 셀룰로오스 나노섬유의 물성 평가Evaluation of the Physical Properties of Carboxymethylated Cellulose Nanofiber Derived from Red Algae Pulp

Other Titles
Evaluation of the Physical Properties of Carboxymethylated Cellulose Nanofiber Derived from Red Algae Pulp
Authors
이수현조해민김도훈이지영한재현윤기영
Issue Date
Aug-2022
Publisher
한국펄프·종이공학회
Keywords
Cellulose nanofiber (CNF); carboxymethylation; red algae bleached pulp (RaBP); carboxymethyl cellulose (CMC); fiber width; zeta-potential; .
Citation
펄프종이기술, v.54, no.4, pp 25 - 33
Pages
9
Indexed
SCOPUS
KCI
Journal Title
펄프종이기술
Volume
54
Number
4
Start Page
25
End Page
33
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/1992
DOI
10.7584/JKTAPPI.2022.08.54.4.25
ISSN
0253-3200
Abstract
This study investigated the utility of red algae bleached pulp (RaBP) as a raw material for producing carboxymethylated cellulose nanofiber (CM-CNF). Hardwood bleached kraft pulp (HwBKP) was used as control. Two types of carboxymethyl celluloses (CMCs) made from RaBP and HwBKP, respectively, were prepared according to the degree of carboxymethylation (CM), while considering the sodium hydroxide and chloroacetic acid dosage: low and high CM. Furthermore, the fiber morphology and charge density of the CMCs were evaluated to verify the carboxymethylation reaction. The final CM-CNFs produced from CMCs were ground for five passes using a microgrinder, and their fiber width, low-shear viscosity, and zeta-potential were analyzed. Morphology of CMCs revealed that the fibers were swollen and dissolved in water to produce transparent fibers. The charge density of the CMCs increased with increasing chemical dosage. When comparing CMCs according to species, the fiber size and charge density of CMC made from RaBP showed lower values than HwBKP. As the chemical dosage increased, fiber width and zeta-potential of CM-CNFs decreased, and their low-shear viscosity increased. The CM-CNFs made from RaBP had a lower fiber length and zeta-potential than those made from HwBKP. Therefore, RaBP can be potentially used to manufacture small and anionic CM-CNF by combining a carboxymethylation pretreatment and micro grinding.
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농업생명과학대학 > Department of Environmental Materials Science > Journal Articles

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농업생명과학대학 (환경재료과학과)
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