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Research Articles

Brittleness increase in Eucalyptus wood after thermal treatment

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Pages 38-42 | Received 08 May 2019, Accepted 06 Jan 2020, Published online: 29 Jan 2020

References

  • Andreaus J, Filho EXF, Bon EPS. 2008. Biotechnology of holocellulose-degrading enzymes. In: Hou CT, Shaw J-F., editor. Biocatalysis and bioenergy. Hoboken (NJ): John Wiley & Sons; p. 197–230.
  • ASTM. 2000. Standards methods of testing small clear specimens of timber: D143-94. West Conshohocken: Annual Book of ASTM Standard.
  • ASTM. 2010. Standard practice for sampling forest trees for determination of clear wood properties: D5536 - 94. West Conshohocken: Anual Book of ASTM Standart.
  • Bal BC, Bektaş İ. 2013. The effects of heat treatment on some mechanical properties of juvenile wood and mature wood of Eucalyptus grandis. Drying Technol. 31(4):479–485. doi: 10.1080/07373937.2012.742910
  • Boonstra MJ, van Acker J, Tjeerdsma BF, Kegel EV. 2007. Strength properties of thermally modified softwoods and its relation to polymeric structural wood constituents. Ann For Sci, Springer Verlag/EDP Sciences. 64(7):679–690. doi: 10.1051/forest:2007048
  • Calonego F, Severo E, Ballarin A. 2012. Physical and mechanical properties of thermally modified wood from E. grandis. European J Wood Wood Prod. 70(4):453–460. doi: 10.1007/s00107-011-0568-5
  • Conte B, Missio AL, Pertuzzatti A, de Cademartori PHG, Gatto DA. 2014. Physical and colorimetric properties of Pinus elliottii var. elliottii thermally treated wood. Scientia Forestalis. 42(104):545–553.
  • de Cademartori PHG, Eduardo Schneid E, Gatto DA, Beltrame R, Stangerlin DM. 2012. Modification of static bending strength properties of Eucalyptus grandis heat-treated wood. Mater Res. 15(6):922–927. doi: 10.1590/S1516-14392012005000136
  • de Cademartori PHG, Missio AL, Mattos BD, Gatto DA. 2015. Effect of thermal treatments on technological properties of wood from two Eucalyptus species. Anais Acad Brasil Ciências. 87(1):471–481. doi: 10.1590/0001-3765201520130121
  • de Moura LF, Brito JO, da Silva Júnior FG. 2012. Effect of thermal treatment on the chemical characteristics of wood from Eucalyptus grandis W. Hill ex Maiden under different atmospheric conditions. CERNE. 18:449–455. doi: 10.1590/S0104-77602012000300012
  • EMBRAPA. 2013. Sistema brasileiro de classificação de solos. Brasílis - DF. p. 353.
  • Esteves BM, Pereira HM. 2009. Wood modification by heat treatment: A Review. Bioresources. 4(1):370–404.
  • Giovanella R, Muniz GIBd. 2010. Congelamento de madeira – avaliação preliminar de sua utilização. FLORESTA. 40(2):311–318. doi: 10.5380/rf.v40i2.17826
  • Glossop BR. 1994. Effect of hot-water soaking or freezing pre-treatments on drying rates of two eucalypts. Forest Prod J. 44(10):29–32.
  • Hill CAS. 2006. Wood modification: chemical, thermal and other processes, 1st. Chichester: John Wiley & Sons. 260 ISBN 0470021721.
  • Hur JY, Kang HY. 1997. Measurement of longitudinal liquid permeability using pressure bomb method. J Korean Wood Sci Technol. 25(3):66–74.
  • Ilic J. 1995. Advantages of prefreezing for reducing shrinkage-related degrade in eucalypts: general considerações and review of the literature. Wood Sci Technol. 29(4):277–284. doi: 10.1007/BF00202087
  • Kačíková D, Kačík F, Cabalová I, Durkovič J. 2013. Effects of thermal treatment on chemical, mechanical and colour traits in Norway spruce wood. Bioresour Technol. ISSN 0960-8524. Disponível em: http://www.sciencedirect.com/science/article/pii/S0960852413010390.
  • Kim DY, Nishiyama Y, Wada M, Kuga S, Okano T. 2001. Thermal decomposition of cellulose crystallites in wood. Holzforschung. 55(5):521–524. doi: 10.1515/HF.2001.084
  • Korkut S, Budakçi M. 2009. Effect of high-temperature treatment on the mechanical properties of rowan (Sorbus aucuparia L.) wood. Drying Technol. 27(11):1240–1247, 2009/10/22. ISSN 0737-3937. Disponível em: http://www.tandfonline.com/doi/abs/10.1080/07373930903267161. Acesso em: 2013/08/26.
  • Liu H, Gao J, Chen Y. 2015. Effects of pre-freezing prior to drying upon some physical and mechanical properties of Eucalyptus urophylla x Eucalyptus grandi wood. Bioresources. 10(4):6417–6427.
  • Militz H. 2002. Heat treatment technologies in Europe: scientific background and technological State-of-Art. Enhancing the durability of lumber and engineered wood products. Madison: Forest Products Society.
  • Missio AL, Cademartori PHGd, Mattos BD, Santini EJ, Haselein CR, Gatto DA. 2016a. Physical and mechanical properties of fast-growing wood subjected to freeze-heat treatments. Bioresources. 11(4):10378–10390. doi: 10.15376/biores.11.4.10378-10390
  • Missio AL, Mattos BD, de Cademartori PHG, Gatto DA. 2016b. Effects of two-step freezing-heat treatments on Japanese Raisintree (Hovenia Dulcis Thunb.) wood properties. J Wood Chem Technol. 36(1):16–26. doi: 10.1080/02773813.2015.1039544
  • Missio AL, Mattos BD, de Cademartori PHG, Pertuzzatti A, Conte B, Gatto DA. 2015. Thermochemical and physical properties of two fast-growing eucalypt woods subjected to two-step freeze–heat treatments. Thermochim Acta. 615:15–22. doi: 10.1016/j.tca.2015.07.005
  • Murata K, Watanabe Y, Nakano T. 2013. Effect of thermal treatment on fracture properties and adsorption properties of spruce wood. Materials (Basel). 6(9):4186–4197. doi: 10.3390/ma6094186
  • Pertuzzatti A, Conte B, Missio AL, Soares AK, Guma RL, Haselein CR, Gatto DA. 2015. Alterações físicas e superficiais da madeira de canemaçu (Tetrorchidium rubrivenium) termorretificada. Rev Brasil Ciên Agrár. 10(1):140–146.
  • Pertuzzatti A, Missio AL, Gatto DA, Farias JA, Haselein CR. 2016. Wood heat treatment in glycerin atmosphere. Pesq Flor Brasil. 36(88):443–449. doi: 10.4336/2016.pfb.36.88.1183
  • Phuong L, Shida S, Saito Y. 2007. Effects of heat treatment on brittleness of Styrax tonkinensis wood. J Wood Sci. 53(3):181–186. ISSN 1435-0211. Disponível em http://dx.doi.org/10.1007/s10086-006-0841-0.
  • Shangguan W, Gong Y, Zhao R, Ren H. 2016. Effects of heat treatment on the properties of bamboo scrimber. J Wood Sci. 62(5):383–391. doi: 10.1007/s10086-016-1574-3
  • Sundqvist B, Westermark U, Eriksson G. 2006. Cellulose degradation during hydrothermal treatment of birch wood (Betula pubescens Ehrh.). Cell Chem Technol. 40(3–4):217–221.
  • Szmutku MB, Campean M, Porojan M. 2013. Strength reduction of spruce wood throug slow freezing. Eur J Wood Wood Prod. 71(2):205–210. doi: 10.1007/s00107-013-0667-6
  • Taiz L, Zeiger E. 2006. Fisiologia vegetal, 3. ed. São Paulo: Artmed, traduzida. p. 719.
  • Weigl M, Muller U, Wimmer R, Hansmann C. 2012. Ammonia vs. thermally modified timber-comparison of physical and mechanical properties. Eur J Wood Wood Prod. 70:233–239. doi: 10.1007/s00107-011-0537-z
  • Wentzel M, Brischke C, Militz H. 2019. Dynamic and static mechanical properties of Eucalyptus nitens thermally modified in an open and closed reactor system. Mader Cien tecnol. 21(2):141–152.
  • Wentzel M, Fleckenstein M, Hofmann T, Militz H. 2019. Relation of chemical and mechanical properties of Eucalyptus nitens wood thermally modified in open and closed systems. Wood Mat Sci Eng. 14(3):165–173. doi: 10.1080/17480272.2018.1450783
  • Yildiz S, Gümuüskaya E. 2007. The effects of thermal modification on crystalline structure of cellulose in soft and hardwood. Build Environ. 42:62–67. doi: 10.1016/j.buildenv.2005.07.009

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