• 제목/요약/키워드: cellulose I

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한우유(韓牛乳)의 단백질(蛋白質)에 관(關)한 연구(硏究) 제(第)1보(報) DEAE-Cellulose에 의(依)한 한우유단백질(韓牛乳蛋白質)의 분별(分別) (Studies on Milk Protein of Korean Cattle I. Fractionation of Milk Protein on DEAE-Cellulose)

  • 김영교;장계익
    • 한국식품과학회지
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    • 제6권2호
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    • pp.75-78
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    • 1974
  • 본(本) 실험(實驗)에서는 현재(現在)까지 학문적(學問的)으로 충분(充分)히 밝혀지고 있지 않은, 한우유(韓牛乳)의 이화학적(理化學的) 성질(性質)을 구명(究明)하기 위(爲)하여 한우유(韓牛乳)의 주성분(主成分)을 분석(分析)하고, 또한 DEAE-cellulose를 사용(使用)하여 산(酸) casein, 유청단백질(乳淸蛋白質)을 분별(分別)하여 다음과 같은 결과(結果)를 얻었다. 1. 한우유(韓牛乳)의 비중(比重)은 1.036, 산도(酸度) 0.21, pH는 6.4였고 알콜시험(試驗)에서는 정상(正常)이었다. 2. 한우유(韓牛乳)의 수분함량(水分含量)은 88.39%였고, 무지고형분(無脂固形分) 9.53%였고, 지방(脂肪)은 2.08%, 단백질(蛋白質)은 3.99%, 유당(乳糖)은 4.76%였고 Sialic acid는 0.25%였다. 3. 총단백질중(總蛋白質中) casein이 3.07% 유청단백질(乳淸蛋白質)이 1.13%, lactoglobulin 0.34%, lactalbumin은 0.66%였다. 4. 6M 요소(尿素)를 함유(含有)한 0.005M TCU-buffer를 사용(使用)하여 DEAE-cellulose column에 의(依)해서 한우유(韓牛乳)의 산(酸) casein을 분별(分別)한 결과(結果) 4개(個)의 fraction을 얻었다. 5. 0.04M phosphate-buffer를 사용(使用)하여 DEAE-cellulose column에서 유청단백질(乳淸蛋白質)을 분별(分別)한 결과(結果) 4개(個)의 fraction을 얻어 각(各) fraction의 면적(面積)을 냈다.

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Sodium Alginate와 Cellulose 가 흰쥐의 공복 혈장 Lipoportein 조성과 콜레스테롤 대사에 미치는 영향 (I) (Effects of Sodium Alginate and Cellulose on Fasting Plasma Lipoprotein Composition and Choelsterol Metabolism in Rats (I))

  • 강희정;서명자;김은희;송영선
    • 한국식품영양과학회지
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    • 제23권6호
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    • pp.879-886
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    • 1994
  • This study was carried out to determine, the effects of sodium alginate and cellulose on the plasma lipoportein composition and cholesterol metabolism inrats.Each experimental diet contained 105 sodium alginate and cellulose by weight, respectivley and rats were fed fro 4 weeks. The results obtained were as follows : The feeding of sodium alginate and cellulose decreased total plasma cholesterol slightly . total cholesterol of Chylomicron /VLDL- , LDL-fraction and liver were decreased significantly insodium alginate group. HDL-cholesterol was slightly increased in soidum alginate group. The feeding of sodium alginate significantly lowered plasma , Chylomicron VLDL-, LDL-fraction and liver TG concentrations compared with those fed fiber-free diet . The HMG-CoA reductase activity was not different among diet groups but the lowest activity was observed in sodium alginate group. The feeding of sodium alginate significantly increased fecal cholesterol , TG, and bile acid excretion . In summary , the ingestion of sodium alginate decreased cholesterol and TG concentrations of plasma and liver. This may be explained by the facts that fecal cholesterol, bile acid and TG level were increased significantly in sodium alginate group.

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Gas Separation of Pyrolyzed Polymeric Membranes: Effect of Polymer Precursor and Pyrolysis Conditions

  • Jung, Chul-Ho;Kim, Gun-Wook;Han, Sang-Hoon;Lee, Young-Moo
    • Macromolecular Research
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    • 제15권6호
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    • pp.565-574
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    • 2007
  • In this study, five representative, commercially available polymers, Ultem 1000 polyetherimide, Kapton polyimide, phenolic resin, polyacrylonitrile and cellulose acetate, were used to prepare pyrolyzed polymer membranes coated on a porous {\alpha}-alumina$ tube via inert pyrolysis for gas separation. Pyrolysis conditions (i.e., final temperature and thermal dwell time) of each polymer were determined using a thermogravimetric method coupled with real-time mass spectroscopy. The surface area and pore size distribution of the pyrolyzed materials derived from the polymers were estimated from the nitrogen adsorption/desorption isotherms. Pyrolyzed membranes from polymer precursors exhibited type I sorption behavior except cellulose acetate (type IV). The gas permeation of the carbon/{\alpha}-alumina$ tubular membranes was characterized using four gases: helium, carbon dioxide, oxygen and nitrogen. The polyetherimide, polyimide, and phenolic resin pyrolyzed polymer membranes showed typical molecular sieving gas permeation behavior, while membranes from polyacrylonitrile and cellulose acetate exhibited intermediate behavior between Knudsen diffusion and molecular sieving. Pyrolyzed membranes with molecular sieving behavior (e.g., polyetherimide, polyimide, and phenolic resin) had a $CO_2/N_2$ selectivity of greater than 15; however, the membranes from polyacrylonitrile and cellulose acetate with intermediate gas transport behavior had a selectivity slightly greater than unity due to their large pore size.

X선 회절법을 이용한 목재세포벽중의 셀룰로오스의 구조해석 (X-Ray Diffraction Study on the Cellulose Structures in Wood Cell Wall)

  • 김남훈;이선호
    • 임산에너지
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    • 제18권2호
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    • pp.62-69
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    • 1999
  • 목재 세포벽중의 셀룰로오스의 알칼리 팽윤구조는 리그닌에 의해 크게 영향을 받는다. 본 연구에서는 알칼리 팽윤특성에 관한 리그닌의 영향을 명확히 하기 위하여 신갈나무의 정상재 및 부후재를 이용하여 X선 회절법과 자외선 현미경법에 의해 검토하였다. 그 결과, 목재 셀룰로오스는 고농도의 알칼리 수용액 중에서 머서화 처리를 하여도 결정변태가 일어나지 않으며 탈리그닌 후에도 결정의 변화는 없었다. 즉, 목재세포벽중의 셀롤로오스 결정은 리그닌의 존재에 의해 알칼리 팽윤이 억제되어 결정의 변태는 발생하지 않으며 탈리그닌 후에도 결정의 구조는 변화되지 않는 것으로 생각되었다.

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Fabrication of ZnO and CuO Nanostructures on Cellulose Papers

  • Nagaraju, Goli;Ko, Yeong Hwan;Yu, Jae Su
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.315.1-315.1
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    • 2014
  • The use of cellulose papers has recently attracted much attention in various device applications owing to their natural advantageous properties of earth's abundance, bio-friendly, large-scale production, and flexibility. Conventional metal oxides with novel structures of nanorods, nanospindles, nanowires and nanobelts are being developed for emerging electronic and chemical sensing applications. In this work, both ZnO (n-type) nanorod arrays (NRAs) and CuO (p-type) nanospindles (NSs) were synthesized on cellulose papers and the p-n junction property was investigated using the electrode of indium tin oxide coated polyethylene terephthalate film. To synthesize ZnO and CuO nanostructures on cellulose paper, a simple and facile hydrothermal method was utilized. First, the CuO NSs were synthesized on cellulose paper by a simple soaking process, yielding the well adhered CuO NSs on cellulose paper. After that, the ZnO NRAs were grown on CuO NSs/cellulose paper via a facile hydrothermal route. The as-grown ZnO/CuO NSs on cellulose paper exhibited good crystalline and optical properties. The fabricated p-n junction device showed the I-V characteristics with a rectifying behaviour.

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대나무-면 복합직물의 양이온화에 관한 연구 (A Study of the Cationization of Bamboo-cotton Blended Fabric)

  • 노영주;이신희
    • 한국의류산업학회지
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    • 제24권2호
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    • pp.260-266
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    • 2022
  • Cellulose fiber is a material used in various fields. It is the most used type of fiber because of its excellent hygroscopicity and dyeability. Recently, as natural fiber materials have been highlighted due to the influence of eco-friendliness and well-being, bamboo fiber has become a commonly used eco-friendly fiber. Cellulose fibers are part of the -OH hydroxyl group, which means they are more chemically reactive than synthetic fibers. In this study, the cationization properties of bamboo-cotton blended fabrics cationized using CHPTAC (3-chloro-2-hydroxypropyl trimethyl ammonium chloride) in the PDC (padding-drying-curing) method were investigated. Various characteristics according to cationization were studied through elemental analysis, FT-IR (fourier-transform infrared spectroscopy) analysis, X-ray diffraction analysis, TGA (thermogravimetric) analysis, and SEM (scanning electron microscope) analysis. The nitrogen content of the cationized bamboo-cotton blended fabric increased with an increase in the concentration of the cationizing agent CHPTAC, and it was seen to be highly bound to cellulose molecules. As a result of the FT-IR analysis, both 100% pure cotton fabrics and CHPTAC-0 and CHPTAC-150 fabrics were seen to be typical cellulose. As a result of the X-ray diffraction analysis, both 100% pure cotton fabrics and CHPTAC-0 and CHPTAC-150 fabrics showed typical cellulose I structures. As a result of the X-ray diffraction analysis, both 100% pure cotton fabrics and CHPTAC-0 and CHPTAC-150 fabrics showed typical cellulose I structures. As the cationization progressed, micropores appeared on the surface of the blended fabric.

Self sustained n-type memory transistor devices based on natural cellulose paper fibers

  • Martins, R.;Barquinha, P.;Pereira, L.;Goncalves, G.;Ferreira, I.;Fortunato, E.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2009년도 9th International Meeting on Information Display
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    • pp.1044-1046
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    • 2009
  • Here we report the architecture for a non-volatile n-type memory paper field-effect transistor. The device is built using the hybrid integration of natural cellulose fibers (pine and eucalyptus fibers embedded in an ionic resin), which act simultaneously as substrate and gate dielectric, with amorphous GIZO and IZO oxides as gate and channel layers, respectively. This is complemented by the use of continuous patterned metal layers as source/drain electrodes.

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High Carbohydrate 와 Cellulose Diet가 흰쥐의 체내대사에 미치는 영향 ( I ) (The Effect of high Carbohydrate and Cellulose Diets on the Growth of Albino Rate)

  • 유춘희;김숙희
    • Journal of Nutrition and Health
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    • 제9권2호
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    • pp.24-39
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    • 1976
  • The present study was undertaken to investigate the metabolic problems of high carbohydrate and cellulose diets of Korean. Forty males and same number of females of Albino rats, aged $45{\pm}5$days were divided into 95% high carbohydrate (H. CHO)group, 83.8% medium carbohydrate (M. CHO)group, 50% low carbohydrate (L. CHO) group and standard (Stand). group containing 72.2% sugar. Each group was divided into two again-1.55% cellulose group and non-cellulose group, 10 rats each of eight groups in both sexes. Cellulose was added to each of non-cellulose diets in the forms of spinach powder and rice bran. After 14 weeks the rats were sacrificed for chemical analysis and the results were elucidated as follows. (1) H. CHO+Cell. group showed the lowest value in body weight gained and shrinkage of almost all organs, in contrast with this group the L.CHO group showed higher body weight gained than Stand. group. M. CHO+Cell, group showed much the same body weight gained curve as Stand. group. (2) It was observed that cellulose group showed lower F.E.R and P.E.R value than non-cellulose group comparatively. (3) Total nitrogen retention and retention rate were decreaced in H. CHP groups compared with M. CHO or L. CHO groups. (4) The amount of feces was increased due to addition of cellulose to experimental diets and in accordance with the increasing total fecal excretion of nitrogen and glucose was also increased, especially noticeable in fecal glucose excretion. (5) It was noteworthy that serum cholesterol level was decreased due to addition of cellulose in H. CHO group and L. CHO group. (6) M. CHO+Cell. group was designed to reflect the average survey data of Korean diets and there was no significant differences on body weight gained, F.E.R, P.E.R, total nitrogen retention and hematology between M. CHO+Cell. and Stand. group. Total glucose excretion was increased due to dietary cellulose in M. CHO+Cell. group, but it seemed to be no metabolic problems in this group.

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셀루로오즈 트리아세테이트와 폴리에스테르의 분자복합체(I) -용액 성질- (Molecular Composite of Cellulose Triacetate and Polyester (I) - Solution Property-)

  • Hong, Young-Keun
    • 한국염색가공학회지
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    • 제3권4호
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    • pp.17-21
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    • 1991
  • A rigid polymer, cellulose triacetate (CTA) dissolved in a combination of trifluoroacetic acid (TFA) and methylene chloride (MC) solution are liguid crystalline above a certain concentration. A flexible polymer, polyethylene terephthalate (PET) also dissolves in TFA/MC, but does not form liguid crystal phase. Ternary solutions, CTA/PET/TFA-MC which CTA and PET were mixed in a same solvent TFA/MC (6/4 : v/v) showed phase separation and mesophase formation.

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셀룰로오스 트리아세테이트 액정용액으로 부터 고강도 셀룰로오스 섬유 제조에 관한 연구 (High Tenacity Cellulosic Fiber from Liquid Crystal Solution of Cellulose Triacetate)

  • 홍영근
    • 한국염색가공학회지
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    • 제6권1호
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    • pp.44-48
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    • 1994
  • Cellulose triacetate(CTA) liquid crystal solutions obtained via dissolution of CTA in solvent mixture of triflucroacetic acid and methylene chloride were spun and saponified in various chemicals. Among chemicals, methanol/sodium hydroxide mixture endowed highest tenacity as well as modulus to regenerated cellulosic fiber and the fiber thereof showed Cell I or Cell IV morphology, or mixed morphology of Cell I and IV.

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