• Title/Summary/Keyword: preservative treated wood

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Penetrating Performance of Wood-preservatives by Ultrasonic Steeping (초음파침지처리에 의한 목재방부제의 주입성)

  • Lee, Myung Jae;Lee, Dong-Heub;Lee, Hyun-Mi;Son, Dong-Won
    • Journal of the Korean Wood Science and Technology
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    • v.33 no.3 s.131
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    • pp.64-71
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    • 2005
  • In this study, we attempted to apply ultrasonic treatment for the preservative treatment of two softwood species, Korean pine and Japanese red pines to evaluate its effectiveness. Wood samples were submerged in oilborne preservative, copper naphthenate (NCU) and waterborne preservative, alkyl ammonium compound (AAC) and then treated with ultrasonic wave of 40 kHz, 400 W. After the treatment, the retention and penetration depth of these preservatives in the specimens were measured as a function of treatment time. Both the retention and penetration depth were continuously increased with increasing the treatment time up to 120 hours, where the retention reached about 95% by the application of AAC and the penetrating depth of 95% and 83% by the application of NCU, respectively for both species. The results of electronic microscopic observation showed that the improved retention capacity could be attributed to air deflation, wood extractive deflation working of ultrasonic wavelength, and destruction of wood pits which served as the pathway of preservatives. The results suggested that the use of ultrasonic treatment could be applied to thick wood veneers for the production of laminated wood products.

Environmental Monitoring of Heavy Metals and Arsenic in Soils Adjacent to CCA-Treated Wood Structures in Gangwon Province, South Korea

  • Abdelhafez, Ahmed A.;Awad, Yasser M.;Kim, Min-Su;Ham, Kwang-Joon;Lim, Kyoung-Jae;Joo, Jin-Ho;Yang, Jae-E.;Ok, Yong-Sik
    • Korean Journal of Environmental Agriculture
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    • v.28 no.4
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    • pp.340-346
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    • 2009
  • Chromated copper arsenate (CCA) is a chemical wood preservative that has been intensively used to protect wood from decay during the last few decades. CCA is widely used to build structures such as decks, fences, playgrounds and boardwalks. However, structures constructed of CCA-treated wood have caused adverse environmental effects due to leaching of Cr, Cu and As into surrounding soils. This research was conducted to monitor the vertical and horizontal distribution of Cr, Cu and As in soils adjacent to CCA-treated wood structures in Korea. Two structures constructed with CCA-treated wood were selected at Hongcheon and Chuncheon in Gangwon Province, South Korea. Eleven soil profile samples were collected at depths of 0 to 80 cm at each site, while 12 surface soil samples were collected at distances of 0 to 200 cm from each structure. The soil chemical properties, soil particle size distribution and total metal concentrations were then determined. The results revealed that soils near CCA-treated wood structures were generally contaminated with Cr, Cu and As when compared to the background concentration of each metal. In addition, the concentrations of Cr, Cu and As in soils decreased as the vertical and horizontal distance from the structure increased. Further studies should be conducted to evaluate the mobility and distribution of these metals in the environment as well as to develop novel technologies for remediation of CCA contaminated soils.

Current Researches on the Protection of Exterior Wood from Weathering (목재의 기상열화 방지에 관한 최근의 연구 동향)

  • Kim, Yeong-Suk
    • Journal of the Korean Wood Science and Technology
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    • v.46 no.5
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    • pp.449-470
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    • 2018
  • A review of research trends on wood surface protection for exterior use obtained the following conclusions: It has been reported that inorganic compounds such as chrome and copper used as wood preservatives can protect wood from weathering. It has been shown that precoating with hydrophobic substances such as wax and oil, UV absorbers, and HALS (Hindered Amine Light Stabilizers) enhances weathering resistance on the surface of ACQ-treated wood. Opaque coatings of paint/stains and semitransparent stains on the surface of preservative treated wood can increase the synergistic effects on prevention of weathering deterioration. Also the need for repainting periodically for the protection of the preservative treated wood surface has also been suggested. ZnO or $TiO_2$ of fine particles, metal ions such as Co, Cr, Fe, Mn, Ni and Ti, and UV absorbers such as tris-resorcinol triazine derivatives, triazine and benzotriazole were introduced as additives for preventing UV in the transparent coating on wood. Several reports showed that chemical modification such as methylation, acetylation, or alkylations have made some increases the effects of preventing weathering with the increasing weight gain of chemical formulas. In heat-treated wood, there were various contradictory reports on the resistance of weathering, and there were some other reports emphasizing the necessity of painting with UV resistance, which leads to the necessity of more advanced studies.

Effect of Accelerated Weathering on the Leaching of Copper from Preservative Treated Wood (기상열화가 방부처리재의 구리성분 용탈에 미치는 영향)

  • Lee, Myung-Jae;Lee, Dong-Heub;Kim, Gyu-Hyeok
    • Journal of the Korean Wood Science and Technology
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    • v.31 no.4
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    • pp.38-43
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    • 2003
  • This is the second in a series of reports on the evaluation of weathering durability of waterborne preservative treated wood by accelerated weathering. The leaching of copper from ACQ-, CCA-, and CuAz-treated samples during weathering was increased by UV irradiation, when compared between full weathering and water-only weathering. The FTIR spectra of the weathered ACQ-, CCA, CuAz-treated samples at 1731 cm-1, 1625 cm-1, 1510 cm-1, which are related to the fixation of copper, were different from those of unweathered controls. This result means that UV irradiation can weaken the chemical bond between lignin and copper and/or extraction of lignin-copper complex can be occured when lignin erode away by weathering.

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

  • Suh, Jin-Suk;Lee, Dong-Heub;Hwang, Won-Joung;Oh, Hyung-Min;Park, Young-Ran;Kang, Sung-Mo
    • Journal of the Korean Wood Science and Technology
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    • v.39 no.4
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    • pp.344-350
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    • 2011
  • In this study, LVLs of radiata pine were fabricated with non-preservative treated veneers, CuAz treated veneers, and ACQ treated veneers, using aqueous vinyl urethane adhesive and phenol modified resorcinol resin adhesive. Then density gradient, bonding strength, bending properties and decay resistance of LVLs were evaluated. As results, the cone-shaped and higher density gradient pattern was found in layer close to glueline. After cyclic water boiled test, the LVL bonded with aqueous vinyl urethane resin adhesive was delaminated in all layers or partly delaminated including check, chasm in glueline layer. In the case of LVL bonded with phenol modified resorcinol resin adhesive, despite slight cupping due to great glueline stress and vertical check between glueline layers, it was observed that the bonding strength to delamination was higher, owing to most absence of delamination through overall glueline. On the other hand, in the decay test, mass loss by brown rot fungi was greater than white rot fungi in LVL bonded with aqueous vinyl urethane resin adhesive. However, in LVL bonded with phenol modified resorcinol resin adhesive, the mass loss by brown rot fungi was slight and non-preservative treated LVL was low. The mass loss of preservative-treated LVL was 0 (zero), showing the high decay resistance effect.

Effects of Polyethylene Glycol Treatment for Improvement of Preservative Penetration and Prevention of Drying Check of Preservative Treated Round Post (방부처리 원주가공재의 방부제 침윤도 향상 및 건조 할렬 방지를 위한 폴리에틸렌 글리콜 처리 효과)

  • Lee, Jong-Shin;Yoon, Sun-Mi
    • Journal of the Korean Wood Science and Technology
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    • v.30 no.4
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    • pp.27-32
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    • 2002
  • We investigated the effect of polyethylene glycol(PEG) treatment of preservative treated green japanese cedar(Cryptomeria japonica) round posts on their preservative penetration and check formation during the air drying. The round rods were dip-treated in 10% preservative solution of Basilit CFK for 1 day, followed by application(3, 5, and 10 times) with 50% PEG-400 solution, and then dried for 30 days under natural conditions. The rate of preservative penetration into sapwood was a low by 23.2% without PEG treatment, whereas that was a high by about 51.2~64.5% with PEG treatment. From these results, it was assumed that PEG played an affirmative role in the penetration of preservative components loaded onto the surface of round rods by dipping. During the air drying, the formation of drying checks decreased significantly with increasing application times of PEG. Even though some drying checks in PEG treated rods were developed, the number and size of checks was reduced remarkably by PEG treatment. After 2 months of outdoor exposure, PEG treatment failed to reduce checking in preservative-treated rods whereas finishing of polyurethane resin lacquer after PEG treatment was significantly effective in preventing check development.

Fixation characteristics of CCA and CCFZ in Japanese Red Pine, Japanese Larch, and Ezo Spruce Sapwood (소나무, 낙엽송, 북양가문비나무 변재부에서 CCA와 CCFZ의 정착특성)

  • Kim, Gyu-Hyeok;Kim, Hyung-Jun;Kim, Jae-Jin
    • Journal of the Korean Wood Science and Technology
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    • v.29 no.1
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    • pp.52-59
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    • 2001
  • The fixation characteristics of CCA and CCFZ in Japanese red pine, Japanese larch, and ezo spruce sapwood were compared at various temperatures and fixation conditions (drying and nondrying fixation). Fixation was monitored by the rates of reduction of hexavalent chromium to trivalent one, and optimal fixation time was estimated based on the results. The rate of fixation was highly temperature dependent, and the fixation rate of treated wood conditioned under nondrying conditions was much more faster than that under drying conditions, especially when the moisture content of treated wood was below fiber saturation point. Preservative types affected fixation; CCA-Type B had the highest fixation rate, followed by CCA-Type C and then CCFZ. The differences in fixation rates of preservative components were also observed among wood species; Japanese red pine fixed the fastest, followed by Japanese larch and then ezo spruce. Time required to complete fixation according to the fixation temperature could be predicted successfully using the regression equations between the temperatures and fixation time, regardless of conditioning methods, preservative types, and wood species.

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On the creosote losses of treated wood blocks (처리목편(處理木片)의 크레오소-트유(油) 손실(損失)에 관(關)하여)

  • Lee, Phill Woo
    • Journal of Korean Society of Forest Science
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    • v.3 no.1
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    • pp.5-9
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    • 1963
  • 1. Creosote in treated wood that exposed in open areas of outdoor is gradually lost by elapse of some period of time. This is the interst and important problem relating to decide the effect on the life extension of creosoted wood. As a general preservative losses occurring in wood treated by oil born preservative such as creosote oil are taken place boy the evaporating and washing activities of the exposed surfaces of wood due to the climatic conditions. Accordingly author intend to inspect differences in retention among species showing after creosoted blocks had been treated by evaporating and washing alternately for a definite time in the laboratory. 2. In this study rail road tie woods of Quercus aliena Blume, Fagus crenata Blume and Fraxinus mandchurica Ruprecht which entered into area for treatment at the plant, locating in Suwon, Korea, were selected to the test species. $2{\times}2{\times}2$ centimeter forty small wood blocks for each species were cut, treated by the mixed solution of equal 50% creosote and heavy oil (hot and cold method), and inspected absorption percents. After evaporation and washing treatments alternately to the intervals of definite time had been accomplished, the losses of creosote were inspected. 3. According to the results Quercus Fagus and Fraxinus are showing the values of 37.9, 87.3 and 59.3% in absorption, and these values were reduced into 28.7, 63.8 and 44.4% respectively by evaporating and washing treatments for a definite time. These indicate that losses of ease absorbing species are greater than difficult one and on the contrary difficult are lesser. However above reduced values are calculated to the 24.3, 26.9 and 25.1% when the absorption percents of each species were assumed as 100% retention respectively. Therefore actual differences of losses among species are lesser than those of absorption percents.

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Penetration of ACQ Treatment and its Effect of Degradation on Wood Tissues (Structure) (ACQ 약제의 목재 내 침투 및 부후 특성에 미치는 목재 조직의 영향)

  • Lee, Hyun-Mi;Lee, Dong-Heub;Hwang, Won-Joung
    • Journal of the Korean Wood Science and Technology
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    • v.41 no.6
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    • pp.576-582
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    • 2013
  • To obtain the basic information on wood preservative process using copper, the penetration ACQ-2 preservative agent into Douglas fir wood and its degradational characteristics were investigated. Douglas fir is known to be difficult for preservative agent injection. To find the hindrance factor of the preservatives movement, the ray height, ray density, and length of tracheid were measured and observed by a stereoscopic microscope and scanning electron microscope. The results were compared in the well-penetrated parts of preservatives and insufficient parts. There were no significant differences in height, length, and density between both parts, except for the pits of the wood elements observed in SEM micrograph. More declosed pits were found in the well-penetrated parts of preservatives. Decay characteristics of wood specimen treated with various ACQ concentrations by brown-rot fungi was observed by an optical microscope. The decayed properties of tracheid, rays, and resin canals was found in the non-treated wood specimens and it was also found that some extent of preservatives concentration is necessary to protect the decay.

Influence of Copper Azole Retention Level to Wood Decay (목재 내 Copper Azole 보유량이 목재부후에 미치는 영향)

  • Lee, Hyun-Mi;Son, Dong-Won;Lee, Han-Sol;Hwang, Won-Joung
    • Journal of the Korean Wood Science and Technology
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    • v.43 no.1
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    • pp.112-121
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    • 2015
  • In this study, Copper Azole (CuAz), a domestically available wood preservative for pressure treatment, was employed to perform an experimental research on its infiltration and decay properties in Japanese Red Pine. Test specimens were pressure-injected with CuAz-2 preservative to measure its preservative effectiveness, and then its impact on weight and mass losses. Furthermore, wood specimens were treated with CuAz-2 preservatives of various concentration levels before they were decayed with brown-rot-fungi in order to observe decay properties on light microscope (LM) and field emission scanning electron microscope (FE-SEM). As a result, untreated specimen by Fomitopsis palustris showed the mass loss of more than 40%, and the value of preservative effectiveness of CuAz-2 by indoor decay was $1,73-3.32kg/m^3$. The concentration levels of CuAz-2 preservative were shown to cause significant variations in terms of decay progresses in the cross section, radial section, and tangential section. By contrast, untreated specimens had underwent serious decays in early wood, late wood, longitudinal resin canals, and ray, which led to vertical destruction of wood texture. As for the radial section, ray tracheid, ray parenchyma cell, and window like pits were decayed and destroyed. In the case of tangential section, uniseriate rays and vertical resin canals were seriously decayed. In conclusion, this study indicates that the adequacy of the current CuAz injection amount should be reviewed in the domestic environment because there are significantly different decays at different decay conditions.