• 제목/요약/키워드: Banana fibers

검색결과 6건 처리시간 0.019초

국내 재배 엽맥섬유의 특성에 관한 연구 (Characteristics of the Leaf Fiber Plants Cultivated in Korea)

  • 이혜자;김남은;유혜자;한영숙
    • 한국의류학회지
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    • 제33권5호
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    • pp.711-720
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    • 2009
  • Leaf fibers have many good properties; they are strong, long, cheap, abundant and bio-degradable. Since they, however, contain a great quantity of non-cellulose components, they have been used for the materials of mats, ropes, bags and nets rather than those of clothing. In this study, we investigated the characteristics of leaf fibers in order to promote the use of leaf fibers for the materials of clothing as well as develop the high value-added textile fibers. Leaf fiber plants including New Zealand Flax, Henequen and Banana plant, which have various nature and shape, were used. New Zealand Flax and Henequen leaves were cut from lower part of plants. Banana leaves and pseudo-stems were peeled and cut from the stem of Banana plants. First, the thin outer skins like film of leaves, veins and stems were removed before retting. The chemical retting had been processed for 1hour, at 100 in 0.4% $H_2SO_4$ aqueous solution(liquid ratio 50:1). Then, the retted leaf fibers had been soaked for 1hour, at room temperature in 0.5% NaClO solution(v/v) to remove the miscellaneous materials. We investigated the physical characteristics of three leaf fibers including the transversal and longitudinal morphology, the contents(%) of pectin, lignin and hemicellulose, the length and diameter of fibers, the tensile strength of the fiber bundles, and the fiber crystallinity and the moisture regain(%). The lengths of fiber from three leaf fibers were similar to their leaf lengths. The fiber bundles were composed of the cellulose paralleled to the fiber axis and the non-cellulose intersecting at right angle with the fiber axis. The diameters of New Zealand Flax, Henequen and Banana fibers were $25.13{\mu}m$, $18.16{\mu}m$ and $14.01{\mu}m$, respectively and their tensile strengths were 19.40 Mpa, 32.16 Mpa and 8.45 Mpa, respective. The non-cellulose contents of three leaf fibers were relatively as high as 40%. If the non-cellulose contents of leaf fibers might be controlled, leaf fibers could be used for the materials of textile fiber, non-wovens and Korean traditional paper, Hanjee.

Cell Wall Structure of Various Tropical Plant Waste Fibers

  • Abdul Khalil, H.P.S.;Siti Alwani, M.;Mohd Omar, A.K.
    • Journal of the Korean Wood Science and Technology
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    • 제35권2호
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    • pp.9-15
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    • 2007
  • A comparative study of the structure and organization of the primary and secondary walls in different types of tropical plant waste fibers was carried out using transmission electron microscopy (TEM). The thickness of each layer was also measured using Image Analyzer. TEM micrographs haveconfirmed that cell wall structure of all six types of tropical plant waste fibers (empty fruit bunch, oil palm frond, oil palm trunk, coir, banana stem and pineapple leaf) has the same ultrastructure with wood fibre. The fibers consisted of middle lamella, primary and thick secondary wall with different thickness for different types of fibers. The secondary wall was differentiated into a $S_1$ layer, a unique multi-lamellae $S_2$ layer, and $S_3$ layer.

The effect of carboxymenthyl cellulose in PP fibers for dye absorption ability

  • Panutumrong, Praripatsaya;Metanawin, Tanapak;Metanawin, Siripan
    • International Journal of Advanced Culture Technology
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    • 제3권1호
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    • pp.52-60
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    • 2015
  • The present study aims to the use of carboxymenthyl cellulose (CMC) improving the ability of fiber in the dyeing process. Cellulose was extracted from banana leaves by NaOH and then modified by reacting with chloroacetic acid to obtain the carboxymenthyl cellulose. The effect of carboxymenthyl cellulose contents on the mechanical properties and dye absorption were also investigated. Then, CMC were blend with polypropylene (grade 561R) at 1%, 3% and 5% by weight ratio. The fibers were obtained from single screw extruder. The results show that the mechanical properties of the product decreased when increased the amount of CMC in the fiber product. After dyeing, the dye however were absorbed by the CMC-PP fibers more than the original PP fibers. The absorption of dye on the CMC-PP fibers increased significantly with the CMC ratio.

Temperature Dependence of Thermo-Mechanical Properties of Banana Fiber-Reinforced Polyester Composites

  • Shaktawat, Vinodini;Pothan, Laly A.;Saxena, N.S.;Sharma, Kananbala;Sharma, T.P.
    • Advanced Composite Materials
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    • 제17권1호
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    • pp.89-99
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    • 2008
  • Using a Dynamic Mechanical Analyzer (DMA), mechanical properties like modulus and phase transition temperature of polyester composites of banana fibers (treated and untreated) are measured simultaneously. The shifting of phase transition temperature is observed in some treatments. The performance of the composite depends to a large extent on the adhesion between polymer matrix and the reinforcement. This is often achieved by surface modification of the matrix or the filler. Banana fiber was modified chemically to achieve improved interfacial interaction between the fiber and the polyester matrix. Various silanes and alkalies were used to modify the fiber surface. Chemical modification was found to have a profound effect on the fiber/matrix interaction, which is evident from the values of phase transition temperatures. Of the various chemical treatments, simple alkali treatment with 1% NaOH was found to be the most effective.

Whole Genome Sequencing of Two Musa Species Towards Disease Resistance and Fiber Quality Improvement

  • John Ivan Pasquil;Richellen Plaza;Roneil Christian Alonday;Damsel Bangcal;Julianne Villela;Antonio, Lalusin;Maria Genaleen Diaz;Antonio Laurena
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.32-32
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    • 2022
  • Abaca (Musa textilis L. Nee) is a native Musa species from the Philippines known for its natural fiber. Abaca fiber a.k.a. Manila hemp extracted from its pseudostems is considered one of the strongest fibers in the world. This is used for commodities such as ropes, papers, and money bills. Abaca is vulnerable to pests and diseases such as the Abaca Bunchy Top Disease (ABTD) caused by Abaca Bunchy Top Virus (ABTV) and Banana Bunchy Top Virus (BBTV). Inosa, one of the varieties of abaca utilized in the Philippines, is highly susceptible to ABTD. In contrast, Pacol (Musa balbisiana L.), a close relative of abaca, is highly resistant to the same disease. Here, we report the sequencing and de novo genome assembly of both abaca var. Inosa and banana var. Pacol. A total of ~16 Gb and ~21 Gb raw reads for Inosa and Pacol, respectively, were generated using Pacbio Hifi sequencing method and assembled with Hifiasm. High-quality de novo assemblies of both Musa species with 99% recovered as per BUSCO analysis were obtained. The assembled Inosa genome has a total length of ~654 Mb and N50 of 7 Mb while Pacol has a total length of 527 Mb and N50 of 3 Mb which are close to their estimated genome size of ~638 Mb and ~503 Mb, respectively. The information that can be derived from the de novo assembled genomes would provide a solid foundation for further research in disease resistance and fiber quality improvement in abaca.

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한국 서해안 서해낙지 (Octopus minor)의 정자 완성에 관한 미세구조 I (Fine Structure on the Spermiogenesis of Octopus minor on the Western Coast of Korea I)

  • 장남섭;김상원;한종민
    • Applied Microscopy
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    • 제31권3호
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    • pp.223-233
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    • 2001
  • 우리나라 서해안에서 채집된 서해낙지(Octopus minor)의 정자 완성과정을 전자현미경을 통해 관찰한 결과 다음과 같았다. 서해낙지의 정자 완성 과정은 초기 중기 후기 정세포 그리고 성숙정자 등 4단계로 나눌 수 있었다. 초기 정세포는 구형의 세포로서 전자밀도가 낮아 밝게 보였으며 핵의 상단부 골지체로부터 형성된 첨체는 전자밀도가 높아서 어둡게 관찰되었다. 핵의 하단 근위 중심소체에서 유도된 것으로 보이는 extra-nuclear rod(enr)는 처음에는 구형에서 타원형으로 변모되면서 핵의 상단부위까지 신장되었으며, 원위중심소체로부터는 축삭이 형성되는 모습도 관찰되었다. 핵막 주위에서 많은 수의 미세소관으로 형성된 만췌트(manchette)도 관찰되었다. 중기 정세포는 핵내 염색질이 가는 실모양으로 응축 되었고, 이 시기에서도 만췌트가 핵막의 주위에서 관찰되었다. 특히 구형의 첨체는 긴 타원형으로 변모되면서 많은 수의 가로무늬를 형성하였고 전자밀도는 중등도로 나타났다. 후기 정세포는 핵내 염색질이 굵고 짧게 응축되었고, 중편에서는 미토콘드리아가 축삭을 감싸고 있는 mitochondrial sleeve를 형성하였다. 축삭은 전형적인 9+2 구조를 보였으며 축삭 주위에서는 9개의 금은 섬유(coarse fibres)도 관찰되었다. 성숙정자의 첨체 내강에서도 가로무늬가 관찰되었는데 특이하게도 가로무늬 사이에서 일정한 간격의 돌기물들이 관찰되었다. 성숙정자의 전체 길이는 약 $390{\mu}m$였으며 첨체는 나선형으로 꼬여 있었으나 머리부위는 꼬여 있지 않고 바나나 모양으로 약간 휘어져 있었다. 또한 정자의 중편에는 $11\sim12$개의 미토콘드리아가 굵은 섬유들을 둘러싸고 있었으며, 이 금은 섬유들은 꼬리의 주편 (main piece)까지만 연결되고 단편 (end piece)에서는 9+2구조의 축삭만이 관찰되었다.

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