• 제목/요약/키워드: Cellulosic fiber

검색결과 64건 처리시간 0.032초

효소 레팅에 의한 케냐프 섬유의 분리 -킬레이터의 영향- (Effect of Enzyme Retting on the Fiber Separation of Kenaf Bast - influence of chelator -)

  • 이혜자;안춘순;김정희;유혜자;한영숙;송경헌
    • 한국의류학회지
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    • 제28권7호
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    • pp.873-881
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    • 2004
  • This research was aimed to investigate the effect of enzyme and the addition of chelators on rotting of the Kenaf bast. Enzyme rotting was effective only when the chelators were added with the enzyme. EDTA was a more effective chelator than oxalic acid under 1% concentration. There was no difference in the rotting effect under different enzyme concentration levels, and under different treatment time and temperature. Therefore, it was found that enzyme rotting can be carried out with low enzyme concentration(0.125%) at room temperature. Retting time can be shortened when higher enzyme concentration and higher temperature are applied. Cellulose I structure of kenaf fiber did not change after enzyme rotting, and different enzyme concentration did not affect the crytallinity structure. Non-cellulosic matters such as hemicellulose, lignin, and pectin were present in the descending order in the enzyme rotted kenaf fiber, and there were no differences in their amounts due to enzyme concentration levels. There was no difference in the dyeabilities of kenaf fiber rotted with different enzyme concentration levels. Enzyme rotted kenaf fiber showed better cyeability when pectin, lignin, and hemicellulose were removed.

홍조류 섬유를 보강재로 사용한 바이오복합재료의 특성 (Use of Red Algae Fiber as Reinforcement of Biocomposite)

  • 이민우;서영범;한성옥
    • 펄프종이기술
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    • 제40권1호
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    • pp.62-67
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    • 2008
  • Biocomposite was fabricated with biodegradable polymer and natural fiber that has potential to be used as replacement for glass fiber reinforced polymer composite with the benefits of low cost, low density, acceptable specific strength, biodegradability, etc. Until now, mostly natural cellulosic fibers on land have been used as reinforcement for biocomposite. The present study focused on investigating the fabrication and the characterization of biocomposite reinforced with red algae fibers from the sea. The bleached red algae fiber (BRAF) showed very similar crystallinity to the wood cellulose. It has high stability against thermal degradation (maximum thermal decomposition temperature of 359.3$^{\circ}C$) and thermal expansion. Biocomposites reinforced with BRAF have been fabricated by a compression molding method and their mechanical and thermal properties have been studied. The storage modulus and the thermomechanical stability of PBS (polybuthylenesuccinate) matrix are markedly improved by reinforcing with the BRAF. These results indicate that red algae fiber can be used as an excellent reinforcement of biocomposites, which are sometimes called as "green-composites" or "eco-composites".

셀룰로오즈 트리아세테이트와 폴리에스테르의 분자복합체 (II) -고체성질- (Molecular Composite of Cellulose Triacetate and Polyester (II) -Bulk Property-)

  • Hong, Young Keun
    • 한국염색가공학회지
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    • 제4권1호
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    • pp.26-29
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    • 1992
  • Ternary solutions that cellulose triacetate (CTA) and polyethylene terephthate (PET) were mixed in a solvent trifiuoroacetic acid (TFA)/methylene chloride (MC) (6/4 : v/v) showed phase separation and mesophase formation. The ternary systems which were mesomorphic were spun into a methanol both and relatively strong cellulosic fillaments were successfully produced. Analysis showed that CTA/PET fibers have fibrillar structure and high orientation parallel to the fiber axis. These fibers proved to be molecular composite and have relatively high strength and modulus as spun.

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혐기성 세균 Ruminococcus albus F-40에 의한 목재 cellulose의 분해특성 (Degradation Characteristics of Wood Cellulose by Ruminal Cellulolytic Anaerobic Bacterium Ruminococcus albus F-40)

  • 김윤수;위승곤;명규호
    • Journal of the Korean Wood Science and Technology
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    • 제25권3호
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    • pp.83-95
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    • 1997
  • The degradation mode of lignocellulose by anaerobic ruminal cellulolytic bacterium Ruminococcus albus F-40 was investigated. Birchwood holocellulose and filter paper were incubated as the sole carbohydrate sources with using the Hungate techniques. After 2 or 4 days of incubation, samples were employed for chemical and electron microscopic evaluations. The degradation rate of cellulosic substrates and the adhesion rate of bacteria to the substrates increased proportionally with the decrease of relative crystallinity of cellulose, indicating the preferential breakdown of amorphous cellulose, by this bacterium. X-ray diffraction analyses and polarized light microscopy showed, however, that crystalline cellulose was also degraded by R. albus. FT-IR spectra indicated that not only cellulose but hemicellulose was also degraded by this bacterium. Electron microscopic investigations showed the protuberant structures on the surface of R. albus. These structures were much more significant when bacterial cells were grown in the media containing insoluble substrates, such as cellulose, indicating clearly that bacterial protuberant structures were induced by the substrates. Protuberant structures extended from the bacterial cells adhered tightly to the substrates and numerous vesicles covered the surface of cellulosic substrates affected. Cellulosome-like structures were distributed on the cellulose matrix. Electron microscopic works showed that diverse surface organells of R. albus were involved in the degradation of cellulosic materials. SEM examinations showed the breakdown of cellulose by R. albus was proceeded by severeal routes : short fiber formation, defibrillation and destrafication of cellulose microfibril.

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Screening of Agricultural and Food Processing Waste Materials as New Sources for Biodegradable Food Packaging Application

  • Wang, Long-Feng;Reddy, Jeevan Prasad;Rhim, Jong-Whan
    • 한국포장학회지
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    • 제20권1호
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    • pp.7-15
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    • 2014
  • Agar-based composite films were prepared with variety of food processing and agricultural processing waste materials in order to screen natural lingo-cellulosic resources for the value-added utilization of the under-utilized materials. The effect of these waste materials (10 wt% based on agar) on mechanical properties, moisture content (MC), water vapor permeability (WVP), water absorption behavior of biocomposite films were investigated. Biocomposite films prepared with various fibers resulted in significant increase or decrease in color and percent transmittance. The MC, WVP, and surface hydrophobicity of biocomposite films increased significantly by incorporation of fibers, while the water uptake ratio and solubility of the film decreased. SEM images of biocomposite film showed better adhesion between the fiber and agar polymer. Among the tested cellulosic waste materials, rice wine waste, onion and garlic fibers were promising for the value-added utilization as a reinforcing material for the preparation of biocomposite food packaging films.

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아프리칸 매리골드(Tagetes erecta L.) 꽃 추출물(抽出物)로 염색(染色)한 모발(毛髮)과 양모섬유 염색(羊毛纖維 染色)에서 후매염(後媒染)에 의해서 흡착(吸着)된 금속(金屬)이온 농도(濃度)가 색상(色相)과 견뢰도(堅牢度)에 미치는 영향(影響) (Effect of Absorbed Metal Ion Concentration by After-treated Mordanting on the Color and Fastness in Human Hair and Wool Fiber Dyed with African Marigold Petals Extract)

  • 김경선;전동원
    • 패션비즈니스
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    • 제10권5호
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    • pp.45-57
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    • 2006
  • In the previous study, african marigold petals extract was valued as an excellent natural yellow dye because of its distinguished reactivity with various mordants and color fastness. In this study, we were studied on effect of absorbed metal ion by after-treatment of mordants on the color and fastness in human hair and wool fiber dyed with african marigold petals extract because the proteinic and cellulosic fiber were very well dyed. The dyed human hair showed better dyeing ability in the color fastness than wool fiber on tests of light, wash and perspiration. The absorbed metal ion concentration of mordanted human hairs were 1 or 5 times higher than wool fibers. However, excess of absorbed metal ion haven't consistent effect on K/S and surface color. Human hairs dyed using african marigold extract and mordanted with Al, Sn, Cu and Fe were showed various reddish yellow color groups and good dyeing ability on african marigold extract.

비셀룰로오스 함량에 따른 케나프 섬유의 특성변화 (The Change of Kenaf Fiber Characteristics by the Contents of Noncellulosic Material)

  • 이혜자;한영숙;유혜자
    • 한국의류학회지
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    • 제30권11호
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    • pp.1581-1588
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    • 2006
  • The effects of removal of lignin or hemicellulose on the cottonizing and pulping characteristics of kenaf fiber were studied by comparing the conditions of non-cellulosic material contents, fiber lengths and dyeability. And the effects of lignin or hemicellulose on dyeability of the kenaf fiber using CI Direct Green 26 and CI Direct Red 81 were investigated. The results were as follows. The lignin contents decreased and the kenaf fiber became shorter and finer as the reaction time with sodium chlorite increased. The hemicellulose could be removed by treating sodium hydroxide solution to the fiber from which the lignin partly removed. The 80% of hemicellulose could be removed by 5% of sodium hydroxide solution in 5 minutes. But if lignin were not removed at all, hemicellulose could not be removed. The fiber lengths proper for apparel were obtained after treating sodium chlorite for 10-20 minutes and those for pulping were obtained after treating sodium chlorite for 40 minutes. The kenaf fibers from which lignin and hemicellulose partly removed were dyed with CI Direct Green 26 and CI Direct Red 81. Their dyeability increased as the removal rates of lignin increased. The ${\Delta}E$ values of kenaf fiber dyed with CI Direct Green 26 were lower than CI Direct Red 81.

Application of silk composite to decorative laminate

  • Kimura, Teruo;Aoki, Shinpei
    • Advanced Composite Materials
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    • 제16권4호
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    • pp.349-360
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    • 2007
  • Recently, natural fiber reinforced composite is attracting attention and considered as an environmentally friendly material. Usually cellulosic fibers are used to reinforce the composites, but some protein fibers such as silk and wool serve the same purpose. In this paper, we proposed a method of producing artistic composite from artistic fabric by using silk fiber reinforced biodegradable plastic, which is designated as 'silk composite', for reinforcement. In order to expand applications of the silk composite, we performed the compression molding of decorative laminates with woody material, which was selected as a core material, and examined the properties of molded decorative laminates with various content of the silk composite. Since plywood and medium-density fiberboard (MDF) are widely used for decorative laminates, we selected them as core materials. As a result, flexible decorative laminates with high flexural strength were obtained by compounding the silk composite with wood materials.

천연 쪽을 이용한 양모 섬유의 염색 (I) (Natural Indigo Dyeing on Wool Fibers (I))

  • 강지연;유효선
    • 한국염색가공학회지
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    • 제13권4호
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    • pp.241-248
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    • 2001
  • Natural indigo dyeing has been used mainly on cellulosic fibers and silk during the course of history in Korea. In order to extend the usage of this one of the most important natural dyes, its dyeability on wool fabrics has been studied to find out the optimum dyeing condition for wool fiber which is susceptible to alkaline medium. The dyeing method used was hydrosulphite vat of extracted dye. K/S values of dyed fabrics were investigated to analyze the dyeability of natural indigo on wool fibers and colors were measured through $L^*,\;a^*,\;b^*$ and Munsell Values. Highest K/S values were obtained at the temperature of 60(C and pH 7 to 8. The Munsell Values for hue of wool fabrics dyed with extracted indigo powder using hydrosulphite vat fell mostly in PB range. As the dyebath pH increased, blueness increased. Different dyeing conditions resulted in change of colors of dyed fabrics due to the difference in amounts of indigotin and indirubin contents within the dyed fiber as shown by HPLC.

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$\beta$-시클로덱스트린화 셀룰로오스 섬유의 제조 및 소취성 (Preparation of $\beta$-Cyclodextrinized Cellulosic Fiber and Deodouring Property)

  • 최창남;황태연;고봉국;김용;홍성학;김상률
    • 폴리머
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    • 제25권5호
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    • pp.635-641
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    • 2001
  • 포접 기능을 가져 악취의 분리제거에 사용될 수 있을 것으로 보이는 $\beta$-시클로덱스트린 및 $\beta$-시클로덱스트린에 벤조산을 포접시킨 물질($\beta$-시클로덱스트린/벤조산 포접체)에 시아누르산 염화물을 반응시켜 클로로트리아진 유도체를 제조하고, 이를 면섬유와 반응시켜 새로운 소취 기능성 섬유를 제조하였다. 포접체의 형성은 적외선 분광분석 및 가시-자외선 분광분석기를 사용하여 확인하였으며, 반응기의 도입은 EDX로 확인하였다. 소취성능은 제조한 소취기능성 섬유를 컬럼에 채우고, 암모니아 기체를 흘려 보냈을 때 빠져나온 암모니아를 물에 용해시킨 용액의 농도를 0.1N 염산으로 적정하여 평가하였다. 섬유에 부착된 $\beta$-시클로덱스트린 단위가 증가할수록 소취성이 증가하였으며, $\beta$-시클로덱스트린에 벤조산을 포접한 경우에 소취성이 보다 증가하였다. 이는 포접체에 존재하는 벤조산과 암모니아의 결합때문이라고 생각되었다.

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