• 제목/요약/키워드: wood rot fungi

검색결과 108건 처리시간 0.029초

라디에타소나무 단판적층재의 밀도·접착·강도성능 및 내부후성 (Density, Bonding Strength, Bending strength and Decay Resistance of Radiata Pine Laminated Veneer Lumber)

  • 서진석;이동흡;황원중;오형민;박영란;강승모
    • Journal of the Korean Wood Science and Technology
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    • 제39권4호
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    • pp.344-350
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    • 2011
  • 라디에타소나무 단판적층재(LVL)를 제조함에 있어서, CuAz 및 ACQ 방부처리와 비처리, 수성비닐우레탄 접착제와 페놀변성 리조시놀수지 접착제의 상온경화형 접착제를 적용함에 따른 밀도경사, 접착 강도성능 및 내부후성(방부효력)을 살펴보았다. 결과, LVL의 밀도경사에서 접착층 주변이 원추형으로 밀도가 커지는 경사패턴을 보였다. 접착성은 수성비닐우레탄 접착의 경우, 자비반복시험 후 전층이 박리되거나, 일부 층이 박리하고 할렬 틈새 현상이 일어났다. 페놀변성 리조시놀수지 접착제 접착의 경우, 자비반복시험 후 접착층의 응력이 큰데 연유한 굽음과 상하 접착층 사이의 단판의 수직할렬 현상이 있었으나, 접착층의 박리나 할렬이 거의 발견되지 않아 침지박리접착력은 높은 것으로 판단되었다. 한편, 방부효력시험에 있어서, 수성비닐우레탄 접착제로 적층한 LVL의 경우 갈색부후균에 의한 부후도가 백색부후균보다 크게 나타났다. 페놀변성 리조시놀수지 접착제로 LVL을 제조한 경우에는 갈색부후균에 의한 질량감소가 적었고, 약제를 처리하지 않더라도 그 피해가 낮았으며, 약제처리한 것은 질량감소율 0 수준을 보일 정도로 방부효력이 큰 것을 알 수 있었다.

Evaluation of Two Species of Soft Wood Decay Resistance for Heat-Treated Wood Using the Catalyst (H2SO4)

  • Won, Kyung-Rok;Hong, Nam-Euy;Jung, Su-Young;Kim, Byung-Ro;Byeon, Hee-Seop
    • Journal of the Korean Wood Science and Technology
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    • 제45권2호
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    • pp.195-201
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    • 2017
  • This study was conducted to evaluate the resistance of heat-treated wood using the catalyst to decay caused by fungi for sapwood and heartwood of two tree species, Korean red pine (Pinus densiflora) and Japanese larch (Larix kaempferi), respectively. Wood samples were immersed for 10 min in sulfuric acid (7.5%) and then heat-treated at $130^{\circ}C$ for 90 min. Fomitopsis palustris, a brown-rot fungus, was used to examine the decay resistance of Korean red pine and Japanese larch wood. Weight and density of wood from the all conditions increased after heat treatment using the catalyst. Weight loss after decay resistance test was also dropped with a heat treatment. The lowest weight loss indicated at heat-treated heartwood of Japanese larch. Heat treatment using the catalyst effectively increased the resistance of wood to decay caused by fungi.

다양한 염료의 탈색이 가능한 목재부후균 분리 (Isolation of a Wood-rotting Fungus to Decolorize a Wide Range of Structurally Different Synthetic Dyes.)

    • 한국미생물·생명공학회지
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    • 제31권3호
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    • pp.301-306
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    • 2003
  • Twenty-one different fungi were tested for their ability to decolorize a wide range of structurally different dyes. Twenty fungal strains were isolated from fruiting bodies which were collected at the Kwangneung National Arboretum, Korea. One fungal strain were isolated from a rotting wood at Soongsil University, Korea. Nine kinds of dyes were used: three anthraquinone dyes and six azo dyes. The five fungal strains, Laetiporus sulphureus, Polyporus arcularius. Auricularia polytricha, Stereum ostrea, and Bjerkandera sp. UK-l showed decolorization ability. Except Auricularia polytricha, the four fungal strains were wood rotting fungi, and belonged to Aphyllophorales. Bjerkandera sp. UK-I, which was a white rot fungus, could decolorize all kinds of dyes tested in this study, indicating this fungus is one of candidates for applying in biological methods of dye waste treatment.

Antifungal Activity of Lagenaria breviflora Fruit Extracts Against Wood Rotting Fungi on Vitex doniana Wood

  • Adedeji, Gabriel Adetoye;Eguakun, Funmilayo Sarah;Elufloye, Taiwo Olayemi;Uriel, Tamunobubeleye
    • Journal of Forest and Environmental Science
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    • 제33권4호
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    • pp.322-329
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    • 2017
  • As a result of contemporary environmental concerns, a number of studies from plants' tissues as one of the alternatives to conventional chemicals are increasingly investigated. In tandem with these trends, Lagenaria breviflora (LB) fruit, reputed as antiviral and depilatory agents in the Yoruba folkloric medicine was examined on Vitex doniana wood to ascertain its antifungal activity. Fungicides of 25%, 50%, 75%, and 100% LB fruits formulations (concentrations) were developed through simple one-step mechanical-forming process, including control. In this study, the yield, the chemical compositions, the absorption capacity of the fungicides and wood weight losses (WWL) analysis were evaluated to investigate the antifungal activity of LB fruit on wood. The fruit extract yielded 35.4% of fresh juice weight. LB fruits contained total: alkaloids ($8.78{\pm}0.21mg/mL$), flavonoids ($2.01{\pm}0.02mg/mL$), phenol ($7.42{\pm}0.09mg/mL$), saponins ($11.00{\pm}0.10mg/mL$) and tannins ($5.47{\pm}0.05mg/mL$) contents. All the formulations provided effective protection against the tested wood fungi compared to control. Interestingly, the antifungal activity of 50% and 25% formulations of 6.8% WWL and 9.9% WWL satisfied the excellent fungal resistance class description against white rot fungus (Ganoderma lucidum) and brown rot fungus (Fibroporia vaillantii), respectively according to ASTM D 2017. These results thus, support LB fruit as a strong potential source of natural antifungals for industrial wood production.

펄프 및 표백공정(漂白工程)에서의 미생물응용(微生物應用) (Application of Microorganism to Pulping and Bleaching Processes)

  • 사카이 고기
    • Journal of the Korean Wood Science and Technology
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    • 제20권3호
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    • pp.67-78
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    • 1992
  • The application of white-rot fungi to pulping and bleaching processes has been studied at the Wood Chemistry Laboratory in Kyushu University, cooperatively with the Biotechnology Laboratory of Kobe Steel, Ltd. Some successful results of the studies for a biomechanical pulping process, biobleaching of hardwood and softwood kraft pulp, as well as chlorine free biobleaching of oxygen-prebleached hardwood kraft pulp are dealt with. Biological treatment of the pulp bleaching effluent is also described.

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Bioconversion of Lignocellulose Materials

  • Pothiraj, C.;Kanmani, P.;Balaji, P.
    • Mycobiology
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    • 제34권4호
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    • pp.159-165
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    • 2006
  • One of the most economically viable processes for the bioconversion of many lignocellulosic waste is represented by white rot fungi. Phanerochaete chrysosporium is one of the important commercially cultivated fungi which exhibit varying abilities to utilize different lignocellulosic as growth substrate. Examination of the lignocellulolytic enzyme profiles of the two organisms Phanerochaete chrysosporium and Rhizopus stolonifer show this diversity to be reflected in qualitative variation in the major enzymatic determinants (ie cellulase, xylanase, ligninase and etc) required for substrate bioconversion. For example P. chrysosporium which is cultivated on highly lignified substrates such as wood (or) sawdust, produces two extracellular enzymes which have associated with lignin deploymerization. (Mn peroxidase and lignin peroxidase). Conversely Rhizopus stolonifer which prefers high cellulose and low lignin containg substrates produce a family of cellulolytic enzymes including at least cellobiohydrolases and ${\beta}-glucosidases$, but very low level of recognized lignin degrading enzymes.

수질분해균(水質分解菌)에 의한 4,5,6-Trichloroguaiacol의 미생물분해(微生物分解) (Biodegradation of 4,5,6-Trichloroguaiacol by White Rot Fungi, Phanerochaete chrysosporium, Trametes versicolor, and Inonotus cuticularis)

  • 안세희;최인규
    • Journal of the Korean Wood Science and Technology
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    • 제26권3호
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    • pp.63-72
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    • 1998
  • In order to evaluate the biodegradability and mechanism of 4,5,6-trichloroguaiacol (TCG) produced from bleaching process in pulp mill by Phanerochaete chrysosporium, Trametes versicolor, and Inonotus cuticularis, changes in TCG and its metabolites during biodegradation were analyzed by HPLC, and GC/MS spectrometry. By three fungi, the maximum biodegradability against TCG were very quickly reached, compared with other chlorinated aromatic compounds such as PCP. Within 24 hrs, T versicolor indicated up to 95% of TCG removal rate, and P. chrysosporium and I. cuticularis also showed more than 80%, and 90%, respectively. Particularly, in case of T. versicolor, the removal rate of TCG after 1 hr. incubation was reached to approximately 90%, implying very rapid metabolization of TCG. However, by analyzing the filtrates extracted from TCG containing culture by GC/MS, the major metabolites at initial stage of biodegradation were dimers, indicating that the added TCG monomers were quickly polymerized. The others were trichloroveratrole, dichloroguaiacol, and trichlorobenzoic acid, suggesting that TCG may be biodegraded by several sequential reactions such as polymerization, oxidation, methylation, dechlorination, and hydroxylation. In other experiments, the extracellular fluid which did not contain any fungal mycelia was used to evaluate the effect of mycelia on TCG biodegradation. The extracellular fluid of T. versicolor also biodegraded TCG up to 90% within 24hrs, but those of P. chrysosporium and I. cuticularis did not show any good biodegradability. T versicolor showed the highest value of laccase, and other two fungi indicated a little activity of lignin peroxidase (LiP) and manganese peroxidase (MnP). In addition, the laccase activity of T. versicolor was very linearly proportional to the removal rate of TCG during incubation, in other words, showing the induction effect against TCG. Consequently, the biodegradation of TCG was very dependent upon the activity of laccase.

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해면버섯균(菌) 꽃송이버섯균(菌)에 의(依)한 낙엽송 생입목(生立木)의 심재부후피해(心材腐朽被害) (Decay Damage of Japanese Larch(Larix leptolepis) Caused by Two Butt-Rot Fungi, Phaeolus schweinitzii and Sparassis crispa)

  • 김현중;김준섭;이창근
    • 한국산림과학회지
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    • 제79권2호
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    • pp.138-143
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    • 1990
  • 낙엽송 성숙임분(成熟林分)(1925년(年) 식재(植栽))내(內)에서 해면버섯균(菌)과 꽃송이버섯균(菌)의 자실체(子實體)가 발생(發生)된 부후피해목(腐朽被害木)을 벌채(伐採)하여 심재부후피해(心材腐朽被害)을 조사(調査)하였다. 벌근단면상(伐根斷面上)에 수(髓)를 중심(中心)하여 나타난 부후단면적율(腐朽斷面積率)은 19.2~74.4%, 부후(腐朽)높이는 수고(樹高) 1.2~5.5m, 부후재적율(腐朽材積率)은 2.2~13.4%였고, 심재부(心材部)에 부후(腐朽)가 나타나는 높이까지를 손실재(損失材)로 보면 전체재적(全體材積)의 27.2%(13.1~37.1%)가 부후(腐朽)된 것으로 나타났다. 양균종간(兩菌種間)의 피해(被害)크기 비교(比較)에서는 꽃송이버섯균(菌)에 의(依)한 피해(被害)가 해연버섯균(菌)에 의(依)한 피해(被害)보다 더 심(甚)하였다. 또한 부후재부(腐朽材部)의 압축강도(壓縮强度)($52{\sim}77kg/cm^2$)와 비중(比重)(0.40~0.47)은 건전목(健全木)의 건전재(健全材)에 비(比)하여 각각(各各) 최고(最高) 77% 및 39%가 감소(減少)한 것으로 나타났고, 부후재부(腐朽材部)가 있는 높이까지의 육안건전재부(肉眼健全材部)의 강도(强度)와 비중(比重)도 최고(最高) 42% 및 26%가 감소(減少)한 것으로 나타났다. 한편 부후피해목(腐朽被害木)과 건전목(健全木)의 연년(連年) 생장량(生長量) 비교(比較)에서, 흉고직경(胸高直徑) 생장량(生長量)은 식재(植栽) 8-14년후(年後)부터 재적(材積) 생장량(生長量)은 식재(植材) 12-21년후(年後)부터 건전목(健全木)에 뒤떨어지는 것으로 나타났다.

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Stain Fungi and Discoloration Control on Rubberwood (Hevea brasiliensis Muell. Arg.) by Vacuum-Pressure Treatment with Catechin from Gambir (Uncaria gambir Roxb.)

  • Dodi NANDIKA;Elis Nina HERLIYANA;Arinana ARINANA;Yusuf Sudo HADI;Mohamad Miftah RAHMAN
    • Journal of the Korean Wood Science and Technology
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    • 제51권3호
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    • pp.183-196
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    • 2023
  • Recently, the morphological and molecular features of five stain fungi infecting rubberwood (Hevea brasiliensis), namely Paecilomyces maximus, Paecilomyces formosus, Penicillium crustosum, Paecilomyces lecythidis and Aspergillus chevalieri, have been studied. Prior to this study, the authors revealed that catechin from gambir (Uncaria gambir) could inhibit the growth of the white-rot fungus Schizophyllum commune, and it was important to determine the bioactivity of the aforementioned agent against A. chevalieri. The efficacy of the biocidal agent was examined using a laboratory wooden block test. Rubberwood blocks, 8 mm in thickness, 20 mm in width, and 30 mm in length, were impregnated with catechin solution at concentrations of 6%, 9%, 12%, and 15% (w/v) using the vacuum-pressure method, and their bioactivity was monitored over three weeks through visual and scanning electron microscope assessment of fungal growth as well as the discoloration intensity of the wood samples. The results showed that catechin treatment increased the resistance of wood samples to A. chevalieri. Overall, the higher the catechin concentration, the lower the fungal growth. The lowest fungal growth was observed in the wood samples treated with 12% and 15% catechin (score of 0), demonstrating no discoloration. In contrast, the fungal growth score of the untreated wood samples reached 4, indicating severe discoloration. Catechins appear to be adequate biofungicides against stain fungi in rubberwood.

Tyromyces palustris의 수산생성효소인 Oxaloacetase와 목질 분해와의 관계 구명 (Evaluation on Relations between the Oxalic Acid Producing Enzyme, Oxaloacetase from Tyromyces palustris, and Wood Decaying Activity)

  • 손동원;이동흡;오정수
    • Journal of the Korean Wood Science and Technology
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    • 제24권1호
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    • pp.48-53
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    • 1996
  • Brown rot fungus, Tyromyces palustris, has been reported to cause the loss of strength accelerated by oxalate, a non-enzymatic low molecular weight acid, with minute weight loss of decaying wood in early stage. The production of oxalate in relation to wood decaying and the presence of oxaloacetase. an oxalate producing enzyme, were identified during the process. Tyromyces palustris produced the largest amount of oxalate among brown rot fungi. In order to find out the cleavage of pulp fiber, we submerged pulp fiber in oxalate solution and the results showed that the number of short pulp fiber was highly increased, compared with control solution. The pH of decaying wood was decreased to 1.77 which was close to that of saturated oxalate solution, pH 1.2, Thus, the oxalate was thought to be accumulated in the decaying wood, The oxaloacetase which accelerates production of oxalate was derived from fungus, and the production of oxalate by the enzyme was determined by using on UV/Vis spectrophotometer. Therefore, the oxalate was found to be produced by oxaloacetase during decay. The oxalate may cause the acid-hydrolysis of cellulose and hemicellulose. The oxalate was thought to reduce the degree of polymerization and increase the enzyme activity, which resulted in rapid loss of strength in early stage-an identical feature of brown rot fungus.

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