• 제목/요약/키워드: cellulose nano fiber

검색결과 18건 처리시간 0.027초

전기방사 조건이 셀룰로오스 웹 형상에 미치는 영향 (Parametric Study on the Morphology of Electrospun Cellulose Web)

  • 정연수;정영진
    • 한국염색가공학회지
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    • 제24권1호
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    • pp.62-68
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    • 2012
  • Cellulose was electrospun over water collector and the cellulose solution was prepared using N-methyl-morpholine N-oxide/water(nNMMO/$H_2O$). The morphology of electrospun cellulose was investigated by scanning electron microscopy (SEM). SEM images showed that the fiber formation depended on processing parameters such as solution concentration, applied electric field strength, solution feeding rate and temperature of water in coagulation bath. High concentration, low temperature of water bath, and low feeding rate were more favorable to obtain fiber morphology. All the variables affected on the fluidity of the cellulose solution and diffusion of NMMO. Low fluidity and fast diffuision of NMMO was critical for obtaining fiber morphology.

나노 케냐프 셀룰로오스가 폴리프로필렌 복합소재의 물성 증가에 미치는 영향 (Nano-Kenaf Cellulose Effects on Improved Mechanical Properties of Polypropylene Composite)

  • 오정석;이성훈;범석훈;김광제
    • 폴리머
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    • 제37권5호
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    • pp.613-617
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    • 2013
  • 나노입자크기의 케냐프섬유를 폴리프로필렌에 첨가하였을 시, 복합소재의 물성변화를 관찰하였다. 천연크기의 케냐프섬유를 나노입자크기의 케냐프섬유로 대체하였을 시, 그 복합소재의 인장강도, 휨강도, 충격강도, 열변형온도가 증가한 반면에, 용융지수, 연신율(%), 충격강도 등이 감소하였다. 이는 나노입자크기의 케냐프섬유가 폴리프로필렌과 접촉하는 표면적의 증가와 섬유표면에 존재하는 휘발성 추출물질 등의 불순물의 감소에 따른 것으로 판단된다.

Advanced 'green' composites

  • Netravali, Anil N.;Huang, Xiaosong;Mizuta, Kazuhiro
    • Advanced Composite Materials
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    • 제16권4호
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    • pp.269-282
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    • 2007
  • Fully biodegradable high strength composites or 'advanced green composites' were fabricated using yearly renewable soy protein based resins and high strength liquid crystalline cellulose fibers. For comparison, E-glass and aramid ($Kevlar^{(R)}$) fiber reinforced composites were also prepared using the same modified soy protein resins. The modification of soy protein included forming an interpenetrating network-like (IPN-like) resin with mechanical properties comparable to commonly used epoxy resins. The IPN-like soy protein based resin was further reinforced using nano-clay and microfibrillated cellulose. Fiber/resin interfacial shear strength was characterized using microbond method. Tensile and flexural properties of the composites were characterized as per ASTM standards. A comparison of the tensile and flexural properties of the high strength composites made using the three fibers is presented. The results suggest that these green composites have excellent mechanical properties and can be considered for use in primary structural applications. Although significant additional research is needed in this area, it is clear that advanced green composites will some day replace today's advanced composites made using petroleum based fibers and resins. At the end of their life, the fully sustainable 'advanced green composites' can be easily disposed of or composted without harming the environment, in fact, helping it.

셀룰로오스 나노 파이버를 적용한 레토르트 포장재 개발 (Development of Retort Packaging Material Using Cellulose Nano Fiber)

  • 이진희;최정락;구강
    • 한국염색가공학회지
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    • 제33권1호
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    • pp.40-47
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    • 2021
  • As modern society develops, it becomes very complex and diverse, and interests in the convenience of life and the natural environment are gradually increasing. Products used in our daily life are also changing according to the needs of consumers, and food packaging is one of them. In particular, retort packaging materials have been used for the purpose of long-term preservation of contents, but the appearance of products suitable for recent environmental issues has been somewhat delayed. Therefore, in order to develop eco-friendly and human-friendly products by replacing the metals used in the existing retort packaging materials, the possibility of substitution was examined using cellulose nanofibers, a natural material. As a result, it can be seen that all functions can be replaced according to the existing long-term storage characteristics for retort packaging films. In particular, not only oxygen permeability and water vapor permeability, which are one of the most important factors, but also heat resistance, which is heating durability, is evaluated as applicable to commercialization compared to products using metals currently in use.

알카리로 처리된 나노케냐프 섬유가 PP 복합소재 내에서 기계적 물성 변화에 미치는 영향 (Effects of Alkali Treated Nano-kenaf Fiber in Polypropylene Composite upon Mechanical Property Changes)

  • 오정석;이성훈;김광제
    • 폴리머
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    • 제39권1호
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    • pp.99-106
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    • 2015
  • 나노케냐프 섬유가 포함된 셀룰로스 섬유를 알카리(NaOH)로 처리 후 PP 수지에 첨가하여 물성에 미치는 영향에 대하여 조사하였다. 알카리를 섬유에 처리한 효과로는 M.I., 신장율, 충격강도가 증가하는 반면 인장강도, 휨모듈러스, 열변형온도가 처리하지 않은 섬유에 비해 감소하였다. 알카리를 나노섬유에 처리하였을 때 섬유표면의 불순물과 화학물질을 제거하여 섬유표면의 특성을 변화시켜서 나노섬유와 PP 수지간의 계면간 접착력을 감소시키고 PP의 특성을 변화시키는 것으로 보인다.

전기방사를 이용한 셀룰로오스 아세테이트 나노섬유 부직포 제조 (Preparation of Cellulose Acetate Nano Fiber Non-woven by Electro-spinning)

  • 박희천;강영식;김학용;이덕래;정용식
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 2001년도 가을 학술발표회 논문집
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    • pp.345-347
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    • 2001
  • 전기방사(Electro-spinning)는 기존의 방사방법과는 달리 전기장의 힘을 이용하여 방사하는 방법으로 고분자용액의 적용범위가 넓고, 저렴하고 간단한 공정을 통하여, 나노크기의 섬유를 제조할 수 있는 장점이 있다. 목재 펄프를 아민옥시드계 용제의 하나인 NMMO(N-methyl-morpholine-N-oxide)에 용해시켜 습식 방사를 통하여 섬유를 제조한다. (중략)

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Morphology of Nanocelluloses and Micro-sized Cellulose Fibers Isolated by Acid Hydrolysis Method

  • Cho, Mi-Jung;Park, Byung-Dae
    • 펄프종이기술
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    • 제41권5호
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    • pp.26-32
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    • 2009
  • As a part of utilizing the nanocellulose (NC) from lignocellulosic components of wood biomass, this paper reports preliminary results on the products of sulfuric acid hydrolysis. The purpose of this study was to investigate the morphology of both NC and micro-sized cellulose fiber (MCF) isolated by acid hydrolysis from commercial microcrystalline cellulose (MCC). Field emission.scanning electron microscopy (FE-SEM) and transmission electron microscopy (TEM) were employed to observe the acid hydrolysis suspension, NC, and MCF. The electron microscopy observations showed that the acid hydrolysis suspension, before separation into NC and MCF by centrifugation, was composed of nano-sized NCs and micro-sized MCFs. The morphology of isolated NCs was a whisker form of rod-like NCs. Measurements of individual NCs using TEM indicated dimensions of 6.96$\pm$0.87 nm wide by 178$\pm$55 nm long. Observations of the MCFs showed that most of the MCC particles had de-fibered into relatively long fibers with a diameter of 3-9 ${\mu}m$, depending on the degree of acid hydrolysis. These results suggest that proper technologies are required to effectively realize the potentials of both NCs and MCFs.

홍조류섬유보강 폴리프로필렌 바이오복합재료의 제조 및 특성 분석 (Manufacturing and Characterization of Red algae fiber/Polypropylene Biocomposites)

  • 이민우;서영범;한성옥
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2008년도 춘계학술대회
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    • pp.178-182
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    • 2008
  • The bleached red algae fiber(BRAF) showed very similar crystallinity to the cellulose, furthermore, it has higher thermal decomposition temperature than that of the microcrystalline cellulose(MCC). Polypropylene biocomposites reinforced with BRAF have been fabricated with various BRAF contents by compression molding method and their mechanical and thermomechanical properties have been studied. The mechanical strength as tensile, impact and flexural modulus of BRAF/PP biocomposites were gradually improved with increasing the BRAF content, and thermal property which against the thermal expansion was markdly improved, especially. These results are compared with chopped non-woody fibers as Henequen or Kenaf, BRAF was more effective for fabrication of biocomposites reinforced small-sized fibers. The red algae fiber reinforced biocomposites has the applicability such as electronics, biodegradable products and small-structure composites.

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CTA를 이용한 중공사형 기체분리막의 제조 및 특성 (Preparation and Properties of Hollow Fiber Membrane for Gas Separation Using CTA)

  • 고형철;하성용;남상용
    • 멤브레인
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    • 제21권1호
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    • pp.98-105
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    • 2011
  • 본 연구에서는 셀룰로오스 트리아세테이트(CTA) 고분자를 이용한 중공사형 분리막을 상분리법에 의해 제조하였으며, 제조된 중공사 분리막의 기체분리 성능을 평가하였다. 제조된 중공사형 분리막의 기체분리 특성을 부여하기 위해서 1,4-dioxane을 10 wt.% 내외로 첨가하였다. 1,4-dioxane의 첨가에 의해 중공사 표면에 치밀층 형성을 위해서는 1,4-dioxane이 표면에서 증발되는 것이 필수적이며, 이를 위해 air-gap의 조절에 의해 중공사 표면에 치밀층이 생성되도록 하였다. 제조된 CTA 중공사형 기체분리막의 표면 및 단면의 모폴로지 측정을 위하여 전자주사현미경을 사용하였다. 또한 CTA 중공사형 기체분리막의 산소, 질소, 이산화탄소에 대한 기체투과도를 측정하였으며, 이 때 $P_{CO2}$ = 17 GPU, ${\alpha}_{CO2/N2}$ = 48을 나타내었다.

초고속 원심방사에 의한 아세트산프로피온산 셀룰로오스/폴리부틸렌 숙시네이트 다공성 마이크론 섬유 제조 (Fabrication of Porous Cellulose Acetate Propionate/Polybutylene Succinate Microfibers by High Speed Centrifugal Spinning)

  • 김태영;김미경;김진수;이정언;정재훈;김영권;김태현;김기영;염정현
    • 한국염색가공학회지
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    • 제35권4호
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    • pp.239-245
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    • 2023
  • Cellulose is an abundant biodegradable material in nature with excellent properties, but due to its poor processability, it has been widely studied for processing through modification. Cellulose acetate propionate (CAP) is a cellulose derivative in which the hydroxyl group of cellulose is replaced by acetyl and propionyl groups. CAP has several advantages, such as excellent solubility, structural stability, light and weather resistance, and good transparency. Porous nanofibers with excellent specific surface area, which can be applied in various fields, can be easily formed by the phase separation method using highly volatile solvents. High speed centrifugal spinning is a nano/micro fiber preparation method with advantages such as fast spinning and easy alignment control. In this study, a CAP/polybutylene succinate (PBS) spinning solution with chloroform as solvent was prepared to prepare porous microfibers and the fiber morphology was examined as a function of the disk rotation speed in an high speed centrifugal spinning device.