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      Color Change and Resistance to Subterranean Termite Attack of Mangium (Acacia mangium) and Sengon (Falcataria moluccana) Smoked Wood = Color Change and Resistance to Subterranean Termite Attack of Mangium (Acacia mangium) and Sengon (Falcataria moluccana) Smoked Wood

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      https://www.riss.kr/link?id=A106541115

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      다국어 초록 (Multilingual Abstract)

      Indonesian log production is dominated by young trees harvested from plantation forests. The timber contains of sapwood and juvenile wood, which are not resistant to termite attack. Smoking treatment can enhance wood resistance to termite attack, but ...

      Indonesian log production is dominated by young trees harvested from plantation forests. The timber contains of sapwood and juvenile wood, which are not resistant to termite attack. Smoking treatment can enhance wood resistance to termite attack, but it also changes the color. Specimens of mangium (Acacia mangium) and sengon (Falcataria moluccana) wood were exposed for 1, 2, and 3 weeks to smoke produced from the pyrolysis of salam (Syzygium polyanthum) wood. The color change of the wood was measured using the CIELab method. In addition, wood specimens were exposed to subterranean termites (Coptotermes curvignathus Holmgren) under laboratory conditions. Untreated and imidacloprid-preserved wood samples were also prepared for comparison purposes. The results showed that the color of smoked wood differed from that of untreated wood, and the color change for sengon was greater than for mangium. In addition, the 1-week smoking period changed the wood color less than the 2- and 3-week periods, which did not differ. Imidacloprid-preserved wood had distinctive color changes compared to untreated wood. Untreated mangium wood had moderate resistance to subterranean termite attack (resistance class III), while sengon had very poor resistance (resistance class V). Salam wood smoke enhanced wood resistance to termite attack, and smoke treatment of 1 week for mangium and 2 weeks for sengon resulted in the wood becoming very resistant (resistance class I). Both types of smoked wood were more resistant to subterranean termite attack than imidacloprid-preserved wood (average class II resistance).

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      참고문헌 (Reference)

      1 Toledo, R.T., "Wood smoke components and functional properties" Alaska Sea Grant College Program 55-61, 2007

      2 Arinana, "Termite-Susceptible Species of Wood for Inclusion as a Reference in Indonesian Standardized Laboratory Testing" MDPI AG 3 (3): 396-401, 2012

      3 Hadi, Y. S., "Subterranean resistance of smoked glued laminated lumber made from fast-growing tree species from Indonesia" 48 (48): 211-216, 2016

      4 Yusuf Hadi, "Subterranean Termite Resistance of Polystyrene-Treated Wood from Three Tropical Wood Species" MDPI AG 7 (7): 37-, 2016

      5 Ministry of Environment and Forestry, "Statistic of forestry production" Ministry of Environment and Forestry 2018

      6 Hadi, Y. S., "Smoked wood as an alternative for wood protection against termites" 60 (60): 496-500, 2010

      7 "SNI 7207-2014 (Standar Nasional Indonesia, Indonesian National Standard), Uji ketahanan kayu terhadap organisme perusak kayu [Test for resistance of wood on wood deterioration organism]"

      8 Y.S. Hadi, "Resistance of smoked wood to subterranean and dry-wood termite attack" Elsevier BV 70 : 79-81, 2012

      9 Hadi, Y. S., "Resistance of furfurylated wood to termite attack" 55 (55): 85-88, 2005

      10 Yusuf Sudo Hadi, "Resistance of Methyl Methacrylate-Impregnated Wood to Subterranean Termite Attack" 한국목재공학회 46 (46): 748-755, 2018

      1 Toledo, R.T., "Wood smoke components and functional properties" Alaska Sea Grant College Program 55-61, 2007

      2 Arinana, "Termite-Susceptible Species of Wood for Inclusion as a Reference in Indonesian Standardized Laboratory Testing" MDPI AG 3 (3): 396-401, 2012

      3 Hadi, Y. S., "Subterranean resistance of smoked glued laminated lumber made from fast-growing tree species from Indonesia" 48 (48): 211-216, 2016

      4 Yusuf Hadi, "Subterranean Termite Resistance of Polystyrene-Treated Wood from Three Tropical Wood Species" MDPI AG 7 (7): 37-, 2016

      5 Ministry of Environment and Forestry, "Statistic of forestry production" Ministry of Environment and Forestry 2018

      6 Hadi, Y. S., "Smoked wood as an alternative for wood protection against termites" 60 (60): 496-500, 2010

      7 "SNI 7207-2014 (Standar Nasional Indonesia, Indonesian National Standard), Uji ketahanan kayu terhadap organisme perusak kayu [Test for resistance of wood on wood deterioration organism]"

      8 Y.S. Hadi, "Resistance of smoked wood to subterranean and dry-wood termite attack" Elsevier BV 70 : 79-81, 2012

      9 Hadi, Y. S., "Resistance of furfurylated wood to termite attack" 55 (55): 85-88, 2005

      10 Yusuf Sudo Hadi, "Resistance of Methyl Methacrylate-Impregnated Wood to Subterranean Termite Attack" 한국목재공학회 46 (46): 748-755, 2018

      11 Fajriani, E., "Radial variation of wood properties of sengon (Paraserianthes falcataria) and jabon (Anthocephalus cadamba)" 10 (10): 110-117, 2013

      12 Jessica Hendrik, "Properties of Laminated Composite Panels Made from Fast-Growing Species Glued with Mangium Tannin Adhesive" BioResources 11 (11): 5949-5960, 2016

      13 Stołyhwo, A., "Polycyclic aromatic hydrocarbons in smoked fish : a critical review" 91 (91): 303-311, 2005

      14 Rahma Nur Komariah, "Physical-Mechanical Properties of Glued Laminated Timber Made from Tropical Small-Diameter Logs Grown in Indonesia" 한국목재공학회 43 (43): 156-167, 2015

      15 Y. S. Hadi, "Physical and mechanical properties of methyl methacrylate impregnated jabon wood" Springer Science and Business Media LLC 10 (10): 77-80, 2013

      16 Yusuf Sudo Hadi, "Physical and Mechanical Properties of Methyl Methacrylate-Impregnated Wood from Three Fast-Growing Tropical Tree Species" 한국목재공학회 47 (47): 324-335, 2019

      17 Andi Sri Rahayu Diza Lestari, "Physical and Mechanical Properties of Glued Laminated Lumber of Pine (Pinus merkusii) and Jabon (Anthocephalus cadamba)" 한국목재공학회 46 (46): 143-148, 2018

      18 Oramahi, H. A., "New bio preservatives from lignocelluloses biomass bio-oil for anti termites Coptotermes curvignathus Holmgren" 20 : 778-784, 2014

      19 Rachel A. Arango, "Natural durability of tropical and native woods against termite damage by Reticulitermes flavipes (Kollar)" Elsevier BV 57 (57): 146-150, 2006

      20 Y. S. Hadi, "Feeding rate of termites in wood treated with borax, acetylation, polystyrene, and smoke" Springer Science and Business Media LLC 12 (12): 74-80, 2015

      21 Hadi, Y. S., "Feeding rate as a consideration factor for successful termite wood preference tests" 46 (46): 590-593, 2014

      22 Ishiguri, F., "Extractives relating to heartwood color changes in sugi(Cryptomeria japonica)by a combination of smoke-heating and UV radiation exposure" 49 (49): 135-139, 2003

      23 Ishiguri, F., "Effect of smoke heating on moisture content, surface checking, and dynamic Young’s modulus of sugi(Cryptomeria japonica)boxed heart timber" 47 (47): 350-357, 2001

      24 Christie, R. M., "Colour Chemistry" The Royal Society of Chemistry 2007

      25 Hrčková, M., "Color change of selected wood species affected by thermal treatment and sanding" 13 (13): 8956-8975, 2018

      26 Wahyu Hidayat, "Color Change and Consumer Preferences towards Color of Heat-Treated Korean White Pine and Royal Paulownia Woods" 한국목재공학회 45 (45): 213-222, 2017

      27 Yang, J. F., "Chemical composition, antioxidant, and antibacterial activity of wood vinegar from Litchi chinensis" 1150 (1150): 1-10, 2016

      28 양봉숙, "Characteristics of Wood Tar Produced as Byproduct from Two Types of The Kiln in The Manufacture of Oak Charcoal" 한국목재공학회 45 (45): 772-786, 2017

      29 Martawijaya, A., "Atlas kayu Indonesia, jilid III [Indonesian Wood Atlas]" Forest Products Research Institute, Forestry Department 2004

      30 Hunter Lab, "Application Note : Hunter color scale" 8 (8): 1-4, 1996

      31 Hadi, Y. S., "Acetylated rubber-wood flakeboard resistance to bio-deterioration" 45 (45): 64-66, 1995

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2002-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1999-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.5 0.5 0.5
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.48 0.45 0.457 0.13
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