References
- Arsyad, W.O.M., Basri, E., Hendra, D., Trisatya, D.R. 2019. Termite resistance of impregnated jabon wood (Anthocephalus cadamba Miq.) with combined impregnant agents. Journal of the Korean Wood Science and Technology 47(4): 451-458. https://doi.org/10.5658/wood.2019.47.4.451
- Bowyer, J.L., Shmulsky, R., Haygreen, J.G. 2007. Forest Product and Wood Science: An Introduction. 5th ed. Blackwell Publishing Professional, Ames, Iowa, USA.
- British Standard (BS). 1957. Methods of Testing Small Clear Specimen of Timber. BS 373:1957. British Standard Institution, London, UK.
- Budavari, S. 1989. The Merck Index. An Encyclopedia of Chemicals, Drugs and Biological. 11th ed. Merck and Co. Inc., Rahway, NJ, USA.
- Darma, I.G.K.T., Hadi, Y.S., Atmojo, A.T. 2002. Ketahanan komposit kayu plastik polistirena terhadap serangan jamur pelapuk coklat (Tyromyces palustris). Jurnal Manajemen Hutan Tropika 8(1): 31-38.
- Deka, M., Gindl, W., Wimmer, R., Christian, H. 2007. Chemical modification of Norway spruce (Picea abies (L) Karst) wood with melamine formaldehyde resin. Indian Journal of Chemical Technology 14: 134-138.
- Dirna, F.C. 2019. Characteristic of impregnated fast growing wood species by nano silica made from leaves of betung bamboo. Thesis. IPB University, Indonesia.
-
Dong, Y., Yan, Y., Zhang, S., Li, J. 2014. Wood/polymer nanocomposites prepared by impregnation with furfuryl alcohol and nano
$SiO_2$ . BioResources 9(4): 6028-6040. - Fufa, S.M., Hovde, P.J. 2010. Nano-based modifications of wood and their environmental impact: review. In: Natterer, J., Sandoz, J.L., (eds.), Riva del Garda, Italy, Proc. of the World Conference on Timber Engineering (2010), pp. 1093-1094.
- Hadi, Y.S., Massijaya, M.Y., Zaini, L.H., Abdillah, I.B., Arsyad, W.O.M. 2018. Resistance of methyl methacrylate-impregnated wood to subterranean termite attack. Journal of the Korean Wood Science and Technology 46(6): 748-755. https://doi.org/10.5658/WOOD.2018.46.6.748
- Hadi, Y.S., Rahayu, I.S., Danu, S. 2013. Physical and mechanical properties of methyl methacrylate impregnated jabon wood. Journal of the Indian Academy of Wood Science 10(2): 77-80. https://doi.org/10.1007/s13196-013-0098-3
- Hadi, Y.S., Rahayu, I.S., Danu, S. 2015. Termite resistance of jabon wood impregnated with methyl methacrylate. Journal of Tropical Forest Science 27(1): 25-29.
- Hartono, R., Hidayat, W., Wahyudi, I., Febrianto, F., Dwianto, W., Jang, J.H., Kim, N.H. 2016. Effect of phenol formaldehyde impregnation on the physical and mechanical properties of soft-inner part of oil palm trunk. Journal of the Korean Wood Science and Technol 44(6): 842-851. https://doi.org/10.5658/WOOD.2016.44.6.842
- Hill, C.A.S. 2006. Wood Modification: Chemical, Thermal and Other Processes. John Wiley and Sons Ltd., Chichester, UK.
- Jasni, Hadjib, N., Barly, Hadi, Y.S., Afidudin, Y. 2004. The resistence of wood polymer composite to the dry wood termite (Cryptotermes cynocephalus Light) and the subterranean termite (Coptotermes curvignathus Holmgreen) infestation. Indonesian Journal of Forestry Research 1(1): 50-59. https://doi.org/10.20886/ijfr.2004.1.1.50-59
-
Jiang, Y., Wu, G., Chen, H., Shuping, S., Pu, J. 2013. Preparation on nano-
$SiO_2$ modified urea-formaldehyde performed polymer to enhance wood properties. Reviews on Advanced Materials Science 33: 46-50. - Lee, J.M., Lee, W.H. 2018. Dimensional stabilization through heat treatment of thermally compressed wood of korean pine. Journal of the Korean Wood Science and Technology 46(5): 471-485. https://doi.org/10.5658/WOOD.2018.46.5.471
- Lestari, A.S.R.D., Hadi, Y.S., Hermawan, D., Santoso, A. Physical and mechanical properties of glued laminated lumber of pine (Pinus merkussii) and jabon (Anthocephalus cadamba). Journal of the Korean Wood Science and Technology 46(2): 143-148. https://doi.org/10.5658/WOOD.2018.46.2.143
- Martawijaya, A., Kartasujana, I., Mandang, Y.I., Prawira, SA., Kadir, K. 2005. Atlas Kayu Indonesia Jilid II. Badan Penelitian dan Pengembangan Kehutanan, Departemen Kehutanan. Bogor.
- Oh, S.W., Park, H.J. 2015. Vacuum pressure treatment of water-soluble melamine resin impregnation for improvement of dimensional stability on softwoods. Journal of the Korean Wood Science and Technology 43(3): 327-333. https://doi.org/10.5658/WOOD.2015.43.3.327
- Orwa, C., Mutua, A., Kindt, R., Jamnadass, R., Anthony, S. 2009. Agroforestry tree database: a tree reference and selection guide version 4.0. http://www.worldagroforestry.org/treedb2/AFTPDFS/Anthoce phalus_cadamba.pdf (accessed January 31, 2019).
- Priadi, T., Sholihah, M., Karlinasari, L. 2019. Water absorption and dimensional stability of heat-treated fast-growing hardwoods. Journal of the Korean Wood Science and Technology 47(5): 567-578. https://doi.org/10.5658/wood.2019.47.5.567
- Rahayu, I., Darmawan, W., Nugroho, N., Nandika, D., Marchal, R. 2014. Demarcation point between juvenile and mature wood in sengon (Falcataria moluccana) and jabon (Anthocephalus cadamba). Journal of Tropical Forest Science 26(3): 331-339.
- Rahayu, I., Darmawan, W., Zaini, L.H., Prihatini, E. 2019. Characteristics of fast-growing wood impregnated with nanoparticles. Journal of Forest Research ISSN 1007-662X.
- Rowell, R.M, Ellis, W.D. 1978. Determination of dimensional stabilization of wood by water soak method. Wood Fiber Science 10: 104-111.
-
Trung, T., Cho, W.J., Ha, C.S. 2003. Preparation of
$TiO_2$ nanoparticles in glycerol containing solution. Material Letters 57: 2746-2750. https://doi.org/10.1016/S0167-577X(02)01369-1 - Wardani, L., Risnasari, I., Yasni, Hadi, Y.S. 2012. Resistance of jabon timber modified with styrene and methyl methacrylate against drywood termites and subterranean termites. In: Wardani, L., Risnasari, I., (eds.), Hanoi, Vietnam, Proc. of 9th Pacific Rim Termite Research Group Conference (2012), pp. 73-78.
- Zhang, Y.H., Huang, Y.X., Ma, H.X., Yu, W.J., Qi, Y. 2018. Effect of different pressing processes and density on dimensional stability and mechanical properties of bamboo fiber-based composites. Journal of the Korean Wood Science and Technology 46(4): 355-361. https://doi.org/10.5658/WOOD.2018.46.4.355