• 제목/요약/키워드: alkali-treated wood

검색결과 34건 처리시간 0.021초

간벌재 및 소경재의 이용개발에 관한 연구 -알칼리 처리 목재의 수축팽윤성- (Utilization of Domestic Small Timbers -Shrinkage and Swelling of Alkali-Treated Woods-)

  • 황원중;김남훈
    • 임산에너지
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    • 제18권2호
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    • pp.70-77
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    • 1999
  • 간벌 소경재의 새로운 용도개발을 위한 기초연구로서 국내산 주요 침·활엽수 4수종의 알칼리팽윤 특성을 조사하였다. 그 결과, 4수종 모두 알칼리 처리후 밀도가 증가하였으며 그 정도는 활엽수재가 더 크게 나타났다. 알칼리처리에 의해 접선방향의 팽윤이 현저한 반면 방사방향의 팽윤은 작았고, 섬유방향은 오히려 감소하는 경향이 있었다. 알칼리 팽윤후 수축율은 활엽수재가 더 컸으며, 특히 기건상태까지의 수축율은 방사방향과 접선방향간에 수축육의 차이가 거의 없이 등방적으로 수축하는 특징을 보여주었다.

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Alkali-Swollen Morphology of Native Cellulose Fibers

  • Kim, Nam-Hun
    • Journal of the Korean Wood Science and Technology
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    • 제35권2호
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    • pp.16-22
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    • 2007
  • The behavior of ramie fibers and some wood elements in the early stage of alkali swelling was examined. When the fibers were treated with alkali solution, they significantly shrank in length and swelled in wall thickness. Ramie fibers showed a shrinkage averaging 23% in length and a swelling averaging 92% in width in 100 seconds treating time. Dimensional changes showed different fashion in each element of woods. The tracheids of latewood especially in Pinus densiflora and Larix kaempferi woods swelled intensively and showed balloon swelling, but in the case of Cryptomeria japonica, it was hardly observed. The swelling morphology of libriform fibers was similar to that of tracheids. The walls of vessel elements and parenchyma cells also swelled considerably in thickness but, no balloon swelling was found in both elements. The differences of swelling in different elements can be interpreted in terms of the differences of organization and/or chemical components of the cell walls.

참나무재의 약액함침 처리가 폭쇄 및 산소-알칼리펄프화에 미치는 영향 (The Effect of Chemical Pretreatment on Steam Explosion and Oxygen-alkali Pulping of Oak Wood)

  • 박승영;최태호;조남석
    • 펄프종이기술
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    • 제33권3호
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    • pp.75-83
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    • 2001
  • The potential of oxygen delignification is a powerful tool to reduce detrimental environmental effects. This study was performed to investigate the effect of steam explosion treatment of chemically treated oak wood on oxygen-alkali pulping. Pulp yield during steam explosion treatment by ${Na_2}{O_3}$-NaOH impregnation was higher than the other impregnation chemicals. Also, NaOH extraction at room temperature after steam explosion treatment improved the kappa number from 140~116 to 90~64. Oxygen-alkali pulping of chemical steam explosion treated woods affected to pulp yields. ${Na_2}{O_3}$-NaOH impregnation was very effective to higher carbohydrate yields at same delignification level. Its carbohydrate yield seemed to be highly related to the effluent pH. Oxygen-alkali pulping after steam explosion treatment of ${Na_2}{O_3}$-NaOH impregnated wood was shown that carbohydrate yield was very high because its effluent pH was increase from natural to mild alkali. Even if oxygen bleaching limit the delignification to 50% in order to avoid unacceptable yield and viscosity losses, oxygen-alkali pulping after steam explosion by ${Na_2}{O_3}$-NaOH impregnation was possible to extend the delignification more than 80%. Considering high pulp yield with lower lignin content from steam explosion treated wood, it might be profitable to end the cook at a high kappa number instead of a low kappa number, and continuously apply the oxygen delignification, in order to better quality pulp.

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Mercerization of Wood: Formation and Reversibility of Na-cellulose I in Reaction Wood

  • Kim, Nam-Hun;Kim, Dae-Young
    • Journal of the Korean Wood Science and Technology
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    • 제31권6호
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    • pp.1-7
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    • 2003
  • The phase transformation from cellulose I into cellulose II in woods by way of Na-cellulose I was examined by x-ray diffraction analysis.The formation of Na-cellulose I in woods increased with the increase of treating time in alkali solution. When compression wood was treated with 20% NaOH solution at room temperature for 1 day, the x-ray diagram showed only Na-cellulose I. On the other hand, the x-ray diagram of tension wood showed a mixture of cellulose I and Na-cellulose I. Cellulose I of tension wood could not be transformed completely into Na-cellulose I even after 10-day treatment, but was transformed into Na-cellulose I after 30-day treatment. Na-cellulose I of compression and tension woods was converted to the cellulose I pattern and the mixture of cellulose I and cellulose II, respectively, after washing with water and drying at 20℃. Cellulose I regenerated from Na-cellulose I in wood could not be converted to cellulose II by delignification. Thus, it revealed that the delignification of the alkali-treated wood did not affect their cellulose structures. From the results, therefore, it can be concluded that lignin in woods prevents the formation of the stable Na-cellulose I and the conversion from cellulose I to cellulose II. This means that the conversion of chain polarity of wood cellulose hardly occurs during mercerization because cellulose microfibrils are fixed by lignin which not to be intermingled.

목재 구성세포의 알칼리 팽윤 특성 (Alkali swelling characteristics of wood elements)

  • 황원중;김남훈
    • 임산에너지
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    • 제20권1호
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    • pp.62-72
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    • 2001
  • 목재의 알칼리 팽윤특성을ㄹ 해명하기 위해 국내산 주요 침·활엽수 4수종의 주요 구성요소의 알칼리 팽윤 거동을 횡단면 절편을 이용하여 조사하였다. 그 결과, 일본잎갈나무의 가도관 직경은 잣나무보다 크게 팽윤하였으며, 가도관의 벽두께는 10% 이상의 알칼리 수용액에 처리시 높은 팽윤율을 나타냈다. 알칼리 처리에 의해 도관의 직경은 방사방향으로 수축하였고, 접선방향으로 다소 팽윤하였다. 목섬유의 세코벽두께는 5%의 알칼리처리에서도 수분팽윤에 비해 3배 이상의 높은 팽윤성을 나타앴고, 알칼리 처리후 일본잎갈나무의 가도관 직경, 목섬유 직경 및 세포벽두께는 거의 등방적인 수축현상을 보여주었다. 또한 미처리 시료에 비해 머서화 처리 구성요소의 세포직경은 수축되었고, 세포벽은 팽윤되었다. 알칼리처리 과정에서 셀룰로오스 결정형의 변화는 없었지만 상대결정화도와 미결정의 폭이 다소 증가되었다. 결론적으로 알칼리의 농도, 수종, 세포의 종류가 목재의 알칼리 팽윤 특성에 크게 관여하는 것으로 생각되었다.

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알칼리 처리한 PET 직물의 소목염색에서 키토산 및 매염제의 사용 (The Use of Chitosan and Mordanting in the Dyeing of Alkali Treated PET Fabrics with Wood of Caesalpinia Sappan)

  • 구강;김삼수;최종덕;유재영;박영미
    • 한국염색가공학회지
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    • 제18권1호
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    • pp.1-9
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    • 2006
  • Treatment of PET fabrics with alkali, chitosan and Al-mordanting has been carried out and the role of the chitosan coating in the dyeing process was clarified. The pre-treatment was effectively evaluated differences in dyeing behavior between its treated and untreated PET fabrics using wood of Caesalpinia sappan. The pre-treated on PET fabrics has been examined by SEM and evidence for the presence of chitosan sought using a air permeability test. Similar colour fastness by computer color matching(CCM) obtained on both untreated and pre-treated PET fabrics. The pre-treated PET was found to be of a deeper hue to that of its dyed untreated PET and, despite of its better colour depth, the wash fastness of the pre-treated dyeing was comparable to that of its dyed untreated PR. The application of chitosan or mordanting reveled that pre-treatment imparted to the PET additional functional groups that were available for coordination with the Brazilin.

Improvement of Dimensional Stability of Tropical Light-Wood Ceiba pentandra (L) by Combined Alkali Treatment and Densification

  • Deded Sarip NAWAWI;Andita MARIA;Rizal Danang FIRDAUS;Istie Sekartining RAHAYU;Adesna FATRAWANA;Fadlan PRAMATANA;Pamona Silvia SINAGA;Widya FATRIASARI
    • Journal of the Korean Wood Science and Technology
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    • 제51권2호
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    • pp.133-144
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    • 2023
  • Densification is an effective method for improving the physical and mechanical properties of low-density wood. However, the set-recovery of dimensions was found to be the problem of densified wood due to low fixation during the densification process. Alkali pretreatment before densification is thought to be a modification process to improve the dimensional stability of densified wood. In this research, the wood samples used were boiled in a 1.25 N sodium hydroxide (NaOH) solution at different times, followed by densification for 5 h at 100℃. The alkali pretreatment for 1, 3, and 5 h of boiling increased the dimensional stability of densified woods and anti-swelling efficiency values were 8.52%, 63.24%, and 48.94%, respectively. The boiling of wood in NaOH solution decreased the holocellulose content, as well as lignin to a lesser degree, and a lower crystallinity index was observed. The lower hydroxyl groups and a higher proportion of lignin in treated samples seem to have contributed to the high dimensional stability detected.

X선회절법(線回折法)에 의한 천연 셀룰로오스 섬유의 알칼리 팽윤구조(膨潤構造) (Alkali-Swollen Structures of Native Cellulose Fibers by X-ray Diffraction Methods)

  • 김남훈
    • Journal of the Korean Wood Science and Technology
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    • 제20권1호
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    • pp.38-45
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    • 1992
  • Fine and alkali-swollen structures of native cellulose fibers were investigated by x-ray diffraction methods. The results of fine structures are shown in Table 1. In meridional x-ray diffractograms, the relative intensity ratio R of (002) to (004) for cellulose I was ca. 0.05 and for regenerated cellulose it was ca. 0.45. It was considered that the transformation from cellulose I to cellulose II resulted from the packing or conformational change of cellulose chain. Finally. although cellulose I was not detected in the alkali-swollen celluloses treated for 1 hr to 24 hrs, washing and drying them resulted in the generation of considerable amounts of cellulose I and the amount decreased with increasing alkali duration.

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청변균 및 살균제처리재의 펄프화특성 (Pulping Features of Blue-stained and Fungicide-treated Woods)

  • 조남석;정선화
    • 펄프종이기술
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    • 제37권3호
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    • pp.66-73
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    • 2005
  • This study was performed to understand the changes in wood extractives, mainly acetone extracts, in pine woods (Pinus densiflora and Pinus rigida) treated by three blue stain fungi (BSF) such as native BSF in Korea, Leptographium sp., screened Albino strain(BSFcs-1) and commercial Cartapip and fungicide, Wood guard. In addition their pulping and bleaching properties were investigated. BSF treatment has significantly reduced acetone extracts, $25.1{\sim}30.4%$ decreasing in red pine and $22.9{\sim}28.1%$ in pitch pine. Three week aging treatment showed about 20% decreasing in red pine and 19.3% in pitch pine. There were not so significant differences in extracts reduction among native BSF and Albino-type strains (Albino strain, BSFcs-1, and commercial Cartapip). But fungicide, Wood guard, treated wood showed relatively lower decreasing rates of extractives, 14% in red pine and 10.1% in pitch pine. Therefore it is understandable that the fungicide could protect the wood from blue stain fungi attack, but has no effect on its extractive reduction. Concerned to pulping properties of BSF and fungicide treated woods, red pine and pitch pine, optimum pulping condition was 20% active alkali, wood to liquor ratio 1 to 6, $170^{\circ}C$, and 2.5 hr. In the case of BSF woods, optimum pulping condition was same as the sound wood, $43.5{\sim}45%$ of pulp yields and $1.3{\sim}1.45%$ of rejects. Screened pulp yield of fungicide treated wood was lower than those of BSF treated woods. Rejects in pulps were higher in fungicide-treated wood than BSF treated woods. Bleaching pulp yields were ranged of 92 to 93.5%. BSF, Cartapip and fungicide treated woods resulted in lower brightness of $55{\sim}58%$, but Albino-type strain(BSFcs-1) $61.3{\sim}62.3%$, very similar to untreated one. Therefore bleaching chemicals could be saved in the processing of chemical pulping.

알칼리 처리된 Kenaf 섬유가 충전된 Polypropylene/Kenaf 바이오복합재의 기계적 특성 (Mechanical Properties of Alkali Treated Kenaf Fiber Filled PP Bio-Composites)

  • 김삼성;이병호;김현중;오세창;안세희
    • Journal of the Korean Wood Science and Technology
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    • 제37권3호
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    • pp.222-230
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    • 2009
  • 본 연구에서는 천연 섬유와 matrix간의 결합에 불리하게 작용하는 wax, lignin, hemicellulose 등을 제거하기 위한 방법 중 하나인 NaOH를 이용한 천연섬유의 알칼리 처리가 Kenaf 장섬유/PP 혼합 바이오복합재 제조 시 계적인 물성에 미치는 영향에 대해 알아보았다. Kenaf 장섬유의 적절한 배합비와 알칼리처리를 통한 최적의 바이오복합재를 제조하기 위하여 알칼리 처리 시의 농도와 kenaf fiber의 함유량을 달리하여 각 처리조건에 따른 바이오복합재의 특성을 조사하였다. 알칼리 처리를 통한 계면 결합의 증가를 확인하기 위하여 SEM을 이용하여 복합재의 단면을 확인하였다. 그 결과 알칼리 처리가 3% 농도부터 계면 결합이 증가하고, 5%일 때의 최고의 계면 결합력을 보였다. 하지만 기계적 강도에서는 알칼리 농도 3% 처리한 것이 최적이었으며 kenaf fiber가 30% 함유된 PP/kenaf섬유 바이오복합재가 높은 강도를 나타내었다.