셀룰라제와 파파인을 이용한 키토산 섬유의 효소가수분해

The enzymatic processing conditions of chitosan nonwoven using cellulase and papain were optimized to determine the correlation between chitosan nonwoven and both enzymes. The hydrolytic activity and structural change in the chitosan fiber were evaluated. Chitosan hydrolysis by cellulase was maximiz...

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Published in한국섬유공학회지 Vol. 47; no. 3; pp. 212 - 221
Main Authors 이소희, So Hee Lee, 김혜림, Hye Rim Kim, 이범훈, Bum Hoon Lee, 송화순, Wha Soon Song
Format Journal Article
LanguageKorean
Published 한국섬유공학회 30.06.2010
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ISSN1225-1089
2288-6419

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Abstract The enzymatic processing conditions of chitosan nonwoven using cellulase and papain were optimized to determine the correlation between chitosan nonwoven and both enzymes. The hydrolytic activity and structural change in the chitosan fiber were evaluated. Chitosan hydrolysis by cellulase was maximized using 10% (o.w.f.) cellulase at $40^{\circ}C$ for 30 minutes under pH 5, whereas that by papain was optimized at a papain concentration of 10% (o.w.f.), and $60^{\circ}C$ for 60 minutes at pH 8. The degree of deacetylation of the chitosan decreased by 3.9% and 2.4% using cellulase and papain, respectively, which reduced slightly the level of acid dye adsorption of chitosan. DSC, XRD, FT-IR and GPC analysis confirmed no substantial changes in the molecular and crystalline structures of chitosan by the enzymatic treatment.
AbstractList The enzymatic processing conditions of chitosan nonwoven using cellulase and papain were optimized to determine the correlation between chitosan nonwoven and both enzymes. The hydrolytic activity and structural change in the chitosan fiber were evaluated. Chitosan hydrolysis by cellulase was maximized using 10% (o.w.f.) cellulase at $40^{\circ}C$ for 30 minutes under pH 5, whereas that by papain was optimized at a papain concentration of 10% (o.w.f.), and $60^{\circ}C$ for 60 minutes at pH 8. The degree of deacetylation of the chitosan decreased by 3.9% and 2.4% using cellulase and papain, respectively, which reduced slightly the level of acid dye adsorption of chitosan. DSC, XRD, FT-IR and GPC analysis confirmed no substantial changes in the molecular and crystalline structures of chitosan by the enzymatic treatment.
The enzymatic processing conditions of chitosan nonwoven using cellulase and papain were optimized to determine the correlation between chitosan nonwoven and both enzymes. The hydrolytic activity and structural change in the chitosan fiber were evaluated. Chitosan hydrolysis by cellulase was maximized using 10% (o.w.f.) cellulase at 40 oC for 30 minutes under pH 5, whereas that by papain was optimized at a papain concentration of 10% (o.w.f.), and 60 oC for 60 minutes at pH 8. The degree of deacetylation of the chitosan decreased by 3.9% and 2.4% using cellulase and papain, respectively, which reduced slightly the level of acid dye adsorption of chitosan. DSC, XRD, FT-IR and GPC analysis confirmed no substantial changes in the molecular and crystalline structures of chitosan by the enzymatic treatment. KCI Citation Count: 5
Author Hye Rim Kim
이소희
Wha Soon Song
김혜림
송화순
So Hee Lee
이범훈
Bum Hoon Lee
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Enzymatic Hydrolysis of Chitosan Fiber Using Cellulase and Papain
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SubjectTerms cellulose
chitosan fiber
Enzyme
hydrolysis
papain
섬유공학
Title 셀룰라제와 파파인을 이용한 키토산 섬유의 효소가수분해
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