• Title/Summary/Keyword: wood discoloration

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Influence of Wood Decaying Fungi for Termite Ecology (목재부후균이 흰개미 서식에 미치는 영향)

  • Jo, Chang-Wook;Kim, Young-Hee;Hong, Jin-Young;Kim, Soo Ji;Lee, Jeung-Min;Choi, Jung-Eun
    • 보존과학연구
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    • s.33
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    • pp.99-108
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    • 2012
  • The white-rot fungus (Trametes versicolor) and brown-rot fungus (Tyromyces palustris), which cause damage to a variety of wooden cultural properties and buildings, such as drying of the wood tissue, decay and cracks, sponge, and discoloration, give rise to serious structural and aesthetic problems. Moreover, pest termites (Reticulitermes speratus kyushuensis Morimoto) can cause damages like hollowing the outdoor beams or pillars of wooden buildings and finally causing such buildings to collapse due to the termites' destruction of the inside of the beams or pillars, leaving only a thin layer on their surfaces. This study was conducted to determine the impact of the wood-decay fungus, a representative damage-causing microorganism, and of insects and termites on the termite ecology. The damage ratio was calculated as the weight of the timber, and the overall total mass was reduced from two kinds of rot fungi. The white-rot fungi reduced the total wood mass, but the brown-rot fungi were observed to have had an increasing tendency to do so. The wood mass was measured after drying to determine the destruction capacity of termites. As a result, the wood mass consumed by the brown-rot fungi was shown to be greater.

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Properties and Manufacturing of Low Melting Alloy Impregnated Wood Composites for using Domestic Thinned Logs of Juglans mandshurica (국산 가래나무 간벌재활용을 위한 금속주입목재의 제조 및 특성)

  • Park, Kye-Shin;Lee, Hwa-Hyoung
    • Korean Journal of Agricultural Science
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    • v.37 no.3
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    • pp.457-464
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    • 2010
  • The low melting alloy impregnated wood composites with natural grain of thinned Juglans mandshurica was made and evaluated in this study. And the proper manufacturing conditions was also investigated in this study. The low melting alloy with bismuth(Bi) and tin(Sn) which are harmless to humans, was applied for this novel composites, which showed not only no defects of discoloration, delamination, swelling, and cracking, because of high dimensional stability and low thickness swelling, but also much improved performance such as high bending strength, high hardness, low abrasion, high thermal conductivity as floor materials. This study also suggested the proper impregnating condition, such as 10 minutes of the preliminary vacuum time, $187^{\circ}C$ of the heating temperature and 10 minutes of the maintaining pressure time at the pressure of 30kgf/$cm^2$. The produced composites showed 9 times higher density for small specimen, 6.6 times for actual size sample and great increase in bending strength from 102.05N/$mm^2$ to 189.47N/$mm^2$ for small size sample and to 205.4N/$mm^2$ for actual size sample, also great increase in hardness from 15.1N/$mm^2$ to 73.38N/$mm^2$ for small size sample and 64.87N/$mm^2$ for actual size sample. And the composites demonstrated great decrease in abrasion depth and in water absorption.

The Evaluation of the Preservative Treated Plywood Produced by Factory Processing (야외사용을 목적으로 공장라인에서 생산한 방부합판의 성능평가)

  • Son, Dong Won;Lee, Sang-Min;Lee, Dong-heub;Kang, Eun-Chang;Park, Byung Su
    • Journal of the Korean Wood Science and Technology
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    • v.36 no.3
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    • pp.47-54
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    • 2008
  • To make up original defects of the wooden materials for decks, and to supply the wooden material for outdoor, we fabricated preservative treated plywood(PTP). Copper azole (CUAZ-1) preservative was treated with a normal full-cell process. Bond Strength of PTP was not affected after the preservative treatment. The anti-fungal efficiency and dimensional stability were obtained from PTP. A little discoloration of the surface was detected, but the dimensional change or peel bonded area off were not observed after accelerated weathering test. Although some strength of PTP was reduced after 17 months of field exposure, the PTP should be applicable for outdoor applications.

Weathering of Prunus sargentii Specimens Modified with Acetic Anhydride and Formaldehyde Vapor (무수초산 및 포름알데하이드 기상처리 산벚나무의 야외폭로 및 촉진열화)

  • Kang, Ho-Yang;Kim, Su-Won;Park, Sang-Jin
    • Journal of the Korean Wood Science and Technology
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    • v.31 no.5
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    • pp.57-64
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    • 2003
  • Small cherry specimens modified with acetic anhydride and formaldehyde vapor phase were weathered by outdoor exposure and accelerated conditioning in a climate chamber. The effects of the chemical modification were evaluated by measuring their weight percentage gains (WPG), hygroscopicity and color differences before and after weathering. The average WPGs of the 72 hour acetylated and formaldehyde-treated specimens were 8.1 and 15.7%, respectively. After outdoor exposure for more than 2 months, the acetylated specimens lost weights by only 1.5%, but the formaldehyde-treated did much more than the formers. It was revealed that acetylation reduced the hygroscopicity and discoloration of wood while formaldehyde treatment didn't. Moreover the longer is the formaldehyde treatment time the more degraded after weathering. It was concluded that the vapor-phase acetylation could be applied for improving the dimensional stability of old wooden blocks.

Species Identification and Weathering of Wooden Striker on the Divine Bell of King Songdok (성덕대왕신종(聖德大王神鍾) 당목(撞木)의 수종(樹種)과 열화(劣化))

  • Kang, Aekyung
    • Conservation Science in Museum
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    • v.4
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    • pp.71-78
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    • 2003
  • The wooden striker on the Divine Bell of King Seongdeok was examined to identify the species of the wood and the outdoor wood weathering caused by solar light, moisture, temperature and air. The species of the wooden striker was identified to Zelkova serrata. When observed the striker with naked eyes, the results were surface discoloration (graying), cracking and roughness. In order to examine the morphological changes according to deterioration type, the specimen were separated to three part(I, II,III-spot). The I-spot was discolored to gray and at the same time entirely covered with dust. So the observation was impossible. The II-spot was also discolored but its texture could be observed. On it could observe numerous fungal hypae and dirts like dust flown into the cell lumens. The cell wall has been so weakened by weathering that it lost the physical intensity. This have made microchecks and splits on the cell wall. Although fungal hypae covered the cell, they did not result in wood decay. The III-spot, located just 0.5 mm below the surface, was maintaining the natural red-brown color of the wood. Its cell wall was similar to that of sound wood. These changes are different from wood decay, and limited only to the surface of the striker-less than or equal to 0.5 mm below.

Application of Korean Rhus Lacquer Containing Tung Oil For Exterior Coatings (동유를 함유하는 목조주택 외장용 옻칠도료의 적용)

  • Song, Byong-Min;Lee, Byoung-Hoo;Kim, Hyun-Joong
    • Journal of the Korean Wood Science and Technology
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    • v.31 no.4
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    • pp.81-90
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    • 2003
  • In this study, we investigated the weathering properties of Korean Rhus lacquers containing tung oil and their potential use as exterior coatings. The finished lacquers were prepared with a raw Korean Rhus lacquer or refined Korean Rhus lacquer content of 10, 20, 30 and 40 wt.% (corresponding to ratios of 10/90, 20/80, 30/70 and 40/60 by weight of Korean Rhus lacquer/tung oil, respectively). The curing temperature of the prepared lacquer increased with increasing the content of the raw Korean Rhus lacquer. This increased curing temperature is related to higher proportion of hydroxyl groups in the prepared lacquer, due to the content of the raw Korean Rhus lacquer. In accelerated weathering testing, the changes in the gloss and contact angle of the prepared lacquers showed a similar trend to that of traditional exterior oil stain. In addition, the prepared lacquers containing tung oil showed greater discoloration than traditional exterior oil stain. However, the discoloration of the prepared lacquer with a raw Korean Rhus lacquer content of 40 wt.%, and that of the prepared lacquer with refined Korean Rhus lacquer contents of 30 wt.% and 40 wt.%, showed a similar trend to that of traditional exterior oil stain. Consequentially, these prepared lacquers showed a potential for being used as exterior coatings.

Changes in Extractives of Pine Woods Treated by Blue Staining Fungi (청변균처리에 의한 소나무재의 추출물함량 변화)

  • Cho, Nam-Seok;Lee, Jong Kyu
    • Journal of the Korean Wood Science and Technology
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    • v.33 no.4 s.132
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    • pp.53-59
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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. BSF treatment has significantly reduced acetone extracts, 25.1~30.4% decreasing in red pine and 22.9~28.1% in pitch pine. The decreasing rates of fatty acids and sterols in woods were 10.6~11.2% by 3 week aging and 36~41.1% by BSF treatments, respectively. Triglycerides were also decreased to 5.68~9.4% by 3 week aging and 38.5~40.0% by BSF treatments, respectively. Resin acids were 6.1~11.3% by 3 week aging and 36~41.5% by BSF treatments, respectively. There were not so significant differences in extracts among native BSF and Albino-type strains (Albino strain, BSFcs-1, and commercial Cartapip). It was known that the Albino strain (BSFcs-1) screened for the biocontrol of wood discoloration has effectively decreased acetone extractives in pine woods.

Effect of Heating and Steaming Treatments on Residual Resin Content and Color Change of Radiata Pine Juvenile Wood (열처리 및 증기처리 라디에타 파인 유령목의 잔류수지율 및 재색변화)

  • Kim, Su-Won;Kang, Ho-Yang
    • Journal of the Korean Wood Science and Technology
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    • v.33 no.4 s.132
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    • pp.30-37
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    • 2005
  • Heating and Steaming treatments were carried for deresinning and color change of radiata pine juvenile wood. The boards of 20 mm and 30 mm thicknesses were heat-treated at $150^{\circ}C$ and $220^{\circ}C$ for 2, 4 and 6 hours and steamed at $100^{\circ}C$ for 6, 24 and 48 hours. For extracting residual resin in treated boards and measuring wood surface color, alcohol-benzene solution and a portable colorimeter were used, respectively. The board of 20 mm thickness were deresined effectively by heating at over $150^{\circ}C$ for 2 hours or steaming for 6 hours while that of 30 mm thickness by steaming for 48 hours. For the board of 30 mm thickness treatment time was more influencing on deresinning than treatment temperature. The steamed boards showed higher $L^*$ than the heat-treated for both thicknesses. $L^*$ decreased with the increase of treatment temperature and time, but for the board heat-treated at $220^{\circ}C$ it didn't change after 4 hours. The surface color of the boards heat-treated at $220^{\circ}C$ for 4 and 6 hours were obviously changed, but those at $150^{\circ}C$ were not. It was revealed that the core of the heat-treated board was color changed as well as the surface.

Variation in Susceptibility of Pine Species Seedlings with the Pine Wood Nematode, Bursaphelenchus xylophilus, in Greenhouse

  • Woo, Kwan-Soo;Kim, Yeong-Sik;Koo, Yeong-Bon;Yeo, Jin-Kie;Moon, Yil-Soong
    • The Plant Pathology Journal
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    • v.23 no.2
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    • pp.70-75
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    • 2007
  • We conducted an inoculation test using nine open-pollinated families of pine trees to evaluate their susceptibility and mortality in different densities of pine wood nematode. Three-year-old nine open-pollinated pine families were inoculated with Bursaphelenchus xylophilus at levels of 3,000, 5,000, and 7,000 nematodes/seedling in greenhouse. There were no distinct patterns in latent period among three densities of B. xylophilus in all families. Most families showed the first disease symptoms of needle discoloration within 12-15 days after inoculation. However, open-pollinated progenies of Pinus densiflora showed the longest latent period because none of one-year-old needles were wilted until 14 days after inoculation with 5,000 and 7,000 nematodes. One-year-old needles were wilted earlier than current needles in all tested families with all densities of B. xylophilus. Current needles were not wilted until 14 days after inoculation in all seedlings. The mortality of all seedlings rapidly increased from 35 days to 49 days after inoculation, and all died within 80 days except two seedlings. A 3,000 nematodes/100 ${\mu}L$ with sterilized distilled water are enough to screen 3-year-old pine seedlings for resistance to B. xylophilus.

Effects of UV Absorber and HALS(Hindered Amine Light Stabilizer) Addition in Water-soluble Acrylic Resin on Discoloration of Larix leptolepis (S. et Z.) Gordon (수용성(水溶性) 아크릴 수지(樹脂)의 자외선(紫外線) 흡수제(吸收劑)와 HALS 첨가(添加)가 일본잎갈나무의 변색(變色)에 미치는 영향(影響))

  • Kang, Kyoung-Taek;Lee, Phil-Woo
    • Journal of the Korean Wood Science and Technology
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    • v.24 no.4
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    • pp.47-55
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    • 1996
  • UV transmission spectra of water-soluble acrylic resin films containing hydroxybenzophenolic, hydroxyphenylbenzotriazolic UV absorber and HALS(hindered amine light stabilizer) were investigated by exposure time(before exposure weathered for 160 and 320hours) in QUV Weather-Ometer. Also the YID(yellowness index difference), LID(lightness index difference) and CD(color difference) of dried water-soluble acrylic resin films and the coated woods of Larix leptolepis were analyzed by addition level of UV absorber(0, 1, 2 and 3%) and HALS(0, 0.5, 1 and 1.5%) and by exposure time in QUV Weather-Ometer. They showed no significant effects on UV transmission spectra of dried water-soluble acrylic resin films in the range of 300 to 400nm irrespective of exposure time. However, UV transmission decreased as increase of exposure time. UV transmission spectra were lower in dried water-soluble acrylic resin films containing hydroxybenzophenolic UV absorber and HALS than in these containing hydroxyphenylbenzotriazolic UV absorber and HALS in the range of 350 to 400nm. The least YID, LID and CD in the coated woods of Larix leptolepis appeared at the addition level of 3%, based on non-volatile content, in hydroxybenzophenolic and hydroxyphenylbenzotriazolic UV absorber, and of 1.5% in HALS to water-soluble acrylic resin.

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