• Title/Summary/Keyword: sapwood stain

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Relationship Between Extracts of Pitch Pine (Pinus rigida Miller) and Fungi(II) -Pathway of First Invading Fungus to Sound Sapwood of the Pine- (리기다소나무재(材) 추출물(抽出物)과 균(菌)과의 관계(關係)(II) -1차(次) 침입균(侵入菌)의 건전(健全) 변재(邊材) 침입경로(侵入經路)-)

  • Shim, Gyu Seop;Ahn, Won-Yung
    • Journal of Korean Society of Forest Science
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    • v.85 no.3
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    • pp.343-346
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    • 1996
  • The cultured stain fungus isolated firstly from discolored wood of Pinus rigida was inoculated on wood blocks to investigate the invading pathway of the fungus. The inoculated fungus rapidly colonized in the ray parenchyma and moved radially along them. In process of time the fungus penetrated tracheids where it started to move into vertical direction. After 90 days the fungus colonized all over the wood tissue, therefore some cell lumens were filled with full of hyphae. In addition methanol extracts did not affect the invading pathway of the stain fungus.

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Relationship Between Extracts of Pitch Pine(Pinus rigida Miller) and Fungi(II) - Pathway of First Invading Fungus to Sound Sapwood of the Pine - (리기다소나무재(材) 추출물(抽出物)과 균(菌)과의 관계(關係)(II) - 1차(次) 침입균(侵入菌)의 건전(健全) 변재(辺材) 침입경로(侵入經路) -)

  • Shim, Gyu Seop;Ahn, Won-Yung
    • Journal of Korean Society of Forest Science
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    • v.85 no.2
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    • pp.325-328
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    • 1996
  • The cultured stain fungus isolated firstly from discolored wood of Pinus rigida was inoculated on wood blocks to investigate the invading pathway of the fungus. The inoculated fungus rapidly colonized in the ray parenchyma and moved radially along them. In process of time the fungus penetrated tracheids where it started to move into vertical direction. After 90 days the fungus colonized all over the wood tissue, therefore some cell lumens were filled with full of hyphae. In addition methanol extracts did not affect the invading pathway of the stain fungus.

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Removing Sapstain of Radiata Pine by Bleaching (표백에 의한 라디에타소나무의 청변 제거)

  • Kim, Gyu-Hyeok;Kim, Hyung-Jun;Ra, Jong-Bum;Kim, Jae-Jin
    • Journal of the Korean Wood Science and Technology
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    • v.31 no.1
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    • pp.46-51
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    • 2003
  • The feasibility of using bleaching treatments for removing fungal stain was evaluated on heavily stained raiadta pine sapwood. Sodium chlorite and sodium hypochlorite appeared to destain fungal discoloration by providing proper treatment conditions (chemical concentration, treatment temperature, and treatment time), while hydrogen peroxide did not remove fungal stain under the bleaching regimes evaluated. The addition of sodium silicate and sodium hydroxide in the hydrogen peroxide solution as a buffer could remove fungal discoloration completely; however, the color of wood surface turned faint green after bleaching, thereby reducing the lightness of bleached samples. The results suggest that hydrogen peroxide bleaching could be a feasible method for removing fungal discoloration of stained radiata pine sapwood, although further research is needed to solve the problem of color change after bleaching. Also, further tests under field conditions are recommended.

The Characteristics of Vacuum Drying Disks of Domestic Softwoods (I) (국산 침엽수재 원판(圓板)의 진공건조(眞空乾燥) 특성 (I))

  • Lee, Nam-Ho;Lee, June-Ho;Kim, Jong-Mann;Jung, Hee-Suk
    • Journal of the Korean Wood Science and Technology
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    • v.24 no.2
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    • pp.46-54
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    • 1996
  • This study was carried out to investigate the vacuum drying characteristics of 50mm- and 75mm- thick tree disks of some domestic softwoods for substituting the conventional hardwoods as the materials for wood crafts. Though the elapsed drying times from green to in-use moisture content(MC) were largely shortened by vacuum drying, the tree disks treated by EWS couldn't be dried to in-use MC, and so sapwood stains also were occurred severely. We suggest EWS treatment is undesirable for the species with very high sapwood portion or vacuum drying with hot water circulation heating system. Heart checks were slight, but sapwood checks, which have never been trouble in drying process of tree disks, were severe. For the reasonable explanation it is suggested MC differences between sapwood and heartwood were large and most of tree disks had already no barks before drying test. Ginkgo was vacuum-dried with very slight drying defects such as heart checks, sapwood checks. V-cracks and sapwood stains. In Korean red pine and pitch pine V-cracks were severely occurred. And it was found the special feature that most of these defected tree disks contained several V-cracks within one tree disk. It can be considered as the causes that the region of sapwood was defected by the several checks at the early drying stage because of the steep MC gradient along the radial direction, and then at the later drying stage the drying stresses due to differential shrinkage were concentrated on these brittle spots.

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Discoloration of Woods (2) - 36 Commercial Hardwoods Grown in Korea - (목재(木材)의 오염(汚染)에 의한 변색(變色) (2) - 한국산(韓國産) 활엽수재(闊葉樹材)의 화학적(化學的) 변색(變色) -)

  • Ahn, Kyung-Mo;Kong, Young-To;Jo, Jae-Myeong
    • Journal of the Korean Wood Science and Technology
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    • v.14 no.1
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    • pp.55-60
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    • 1986
  • Discoloration sensitivities of woods grown in this country haven't reported yet. Therefore we examined discoloration sensitivities of domestic wood specimens to iron (0.1 %, $FeCl_3.6H_2O$), alkali (pH 12.0, NaOH). acid (pH 1.0, $C_2H_2O_4$) and exposing to sunlight (40 hrs), Thirty-six hardwood species were collected and examined. All specimens were prepared from heartwoods of the collected species. But the specimens of 4 Betula species were divided into sapwoods and heartwoods. By iron stain, the color differences (${\Delta}E$) of 21 wood specimens including one Betula sapwood showed above 12.0, which means strong discoloration sensitivities, and of 3 specimens including one Betula sapwood showed below 2.5, which means weak discolorations. The most strong iron discoloration species was Jungkukgulpi-namu (Pterocarya stenoptera). By alkali stain, the color differences (${\Delta}E$) of 3 wood specimens showed above 9.0, which means strong discoloration sensitivities, and of 18 wood specimens including 4 Berula sapwoods showed below 2.5, which means weak discolorations. By acid stain, the color differences (${\Delta}E$) of 6 wood specimens showed above 10.0 which means strong discoloration sensitivities, and of 12 wood specimens including one Betula sapwoods showed below 2.5, which means weak discolorations. By exposing to sunlight, the color differences (${\Delta}E$) of 31 wood specimens including one Betula sapwoods showed below 6.5, which means, strong discoloration sensitivities, and of only one specimens showed below 2.5, which means weak discoloration. The most strong discoloration species by exposing to sunlight was Guirung-namu (Prunus padus). In general, it was shown that hardwoods grown in Korea were most subject to change of color by exposing to sunlight and next were by iron stain. Domestic hardwoods showed some differences in discoloration sensitivities from domestic softwoods previously reported.

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The Color Painting on Yellow Poplar (Liriodendron tulipifera L.) Board for Using Furniture Materials (가구재 이용을 위한 백합나무 판재의 도장방법)

  • Park, Sang Bum;Lee, Min
    • Journal of the Korea Furniture Society
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    • v.24 no.4
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    • pp.345-349
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    • 2013
  • Yellow poplar is well known commercial hardwood species in the world because of its availability, rapid growth, large size, excellent form, early natural pruning, and the good working quality of the wood. Therefore, yellow poplar (Liriodendron tulipifera L.) has been adopted in South Korea for decades ago, and its cultivating the saplings and silvicultural system have been studied. However, yellow poplar is still embroiled in controversy for utilization of use and worth. This species has not only advantages such as lower weight, light color, and higher machinability and bending processing, but also has disadvantages which are bad smell and different colors on heartwood and sapwood. In this study, the objective was that use of yellow poplar board as furniture materials by drying and painting process. Thirty years old yellow poplar was cut and dried for 7 days by high-frequency dryness. Adjustment of color tone to walnut color was conducted with multiple colorants and various number of spread times. Uniform color of yellow poplar on heartwood and sapwood was accomplished by applying 1 time stain (green), 2 times transparent primer, 1 time middle-painting (walnut), and 2 times top-painting (walnut) in sequentially. The painted yellow poplar board was used to manufacture table and dressing table. During the furniture manufacture process, no critical issues were occurred on part of jointing and painting. This painting method may be useful data for future use of yellow poplar as furniture materials.

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