Skip to main content
Top
Published in: European Journal of Wood and Wood Products 5/2018

15-06-2018 | Original

Effects of recycled fiber content on the properties of medium density fiberboard

Authors: Muhammad Adly Rahandi Lubis, Min-Kug Hong, Byung-Dae Park, Sang-Min Lee

Published in: European Journal of Wood and Wood Products | Issue 5/2018

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The large global production quantity of medium-density fiberboard (MDF) creates equal quantities of waste MDF, which consequently requires research on the recycling of MDF. This work was conducted to study the effect of recycled fiber (RF) content on the recycling properties of MDF. After pretreating waste MDF, a refiner and hammer were used to isolate refiner RFs (RRFs) and hammer mill RFs (HRFs) from two softwood species. This work also characterized the physical, chemical, and morphological features of RFs and virgin fibers (VFs). RRF and HRF contents of 0, 5, 10, 20, 30, 50, and 100% were used to fabricate recycled MDF (rMDF) panels. All RFs had shorter fiber lengths and higher fines contents than VFs had. The presence of N from urea–formaldehyde resins was confirmed by multiple analyses; more N was distributed in RFs than in VFs. The highest internal bonding (IB) strength of the rMDF occurred at 10% RF, regardless of isolation method and wood species; IB strength decreased afterward. The mechanical properties, including modulus of rupture, modulus of elasticity, and screw withdrawal resistance of rMDF, showed behaviors similar to the IB strength with increasing RF content. However, the thickness swelling, water absorption, and formaldehyde emission of rMDF samples decreased with increasing RF content. Statistical analysis indicates that the minimum of 10% RFs can be used to replace VFs without diminishing the properties of rMDF. The improved properties of rMDF were ascribed to the reinforcing effects of RFs covered with cured resins.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Appendix
Available only for authorised users
Literature
go back to reference Brooks SHW (1973) Method of recycling waste cellulosic materials. US Patent Application. 3741863 Brooks SHW (1973) Method of recycling waste cellulosic materials. US Patent Application. 3741863
go back to reference Cha JK (2013) Predicting the screw withdrawal load of commercial particleboard manufactured in Korea. J Korean Wood Sci Technol 41(6):544–550CrossRef Cha JK (2013) Predicting the screw withdrawal load of commercial particleboard manufactured in Korea. J Korean Wood Sci Technol 41(6):544–550CrossRef
go back to reference Cooper MD (1992) Resin spotting in medium density fiberboard. Thesis. University of Canterbury Christchurch, New Zealand Cooper MD (1992) Resin spotting in medium density fiberboard. Thesis. University of Canterbury Christchurch, New Zealand
go back to reference Cowling EB, Merrill W (1966) Nitrogen in wood and its role in wood deterioration. Can J Bot 44(11):1539–1554CrossRef Cowling EB, Merrill W (1966) Nitrogen in wood and its role in wood deterioration. Can J Bot 44(11):1539–1554CrossRef
go back to reference Eckelman CA (1988) The withdrawal strength of screws from commercially available medium density fiberboard. Forest Product J 38:21–24 Eckelman CA (1988) The withdrawal strength of screws from commercially available medium density fiberboard. Forest Product J 38:21–24
go back to reference EPF (2015) European Panel Federation annual report 2014–2015, Germany EPF (2015) European Panel Federation annual report 2014–2015, Germany
go back to reference Grigsby WJ, Carpenter JEP, Sargent R (2014a) Investigating the extent of urea formaldehyde resin cure in medium density fiberboard: resin extractability and fiber effects. J Wood Chem Technol 34:225–238CrossRef Grigsby WJ, Carpenter JEP, Sargent R (2014a) Investigating the extent of urea formaldehyde resin cure in medium density fiberboard: resin extractability and fiber effects. J Wood Chem Technol 34:225–238CrossRef
go back to reference Grigsby WJ, Thumm A, Carpenter JEP, Hati N (2014b) Investigating the extent of urea formaldehyde resin cure in medium density fiberboard: characterization of extractable resin components. Int J Adhes Adhes 50:50–56CrossRef Grigsby WJ, Thumm A, Carpenter JEP, Hati N (2014b) Investigating the extent of urea formaldehyde resin cure in medium density fiberboard: characterization of extractable resin components. Int J Adhes Adhes 50:50–56CrossRef
go back to reference Hubbe MA, Venditti RA, Rojas OJ (2007) What happens to cellulosic fibers during papermaking and recycling? A review. BioResour 2(4):739–788 Hubbe MA, Venditti RA, Rojas OJ (2007) What happens to cellulosic fibers during papermaking and recycling? A review. BioResour 2(4):739–788
go back to reference Hwang CY, Hse CY, Shupe TF (2005) Effects of recycled fiber on the properties of fiberboard panels. Forest Prod J 55(1):61–64 Hwang CY, Hse CY, Shupe TF (2005) Effects of recycled fiber on the properties of fiberboard panels. Forest Prod J 55(1):61–64
go back to reference Ince PJ, McKeever DB (1995) Recovery of paper and wood for recycling: actual and potential. Gen. Tech. Rep. FPL-GTR-88. U.S. Depart. of Agriculture, Forest service, Forest Products Laboratory, Madison, p 11CrossRef Ince PJ, McKeever DB (1995) Recovery of paper and wood for recycling: actual and potential. Gen. Tech. Rep. FPL-GTR-88. U.S. Depart. of Agriculture, Forest service, Forest Products Laboratory, Madison, p 11CrossRef
go back to reference Jada SS (1988) The structure of urea-formaldehyde resins. J Appl Polym Sci 35:1573–1592CrossRef Jada SS (1988) The structure of urea-formaldehyde resins. J Appl Polym Sci 35:1573–1592CrossRef
go back to reference Kharazipour A, Kües U (2007) Recycling of wood compsites and solid wood products. In: Wood production, wood technology, and biotechnological impacts. Universitätsverlag Göttingen, Germany, pp 509–533 Kharazipour A, Kües U (2007) Recycling of wood compsites and solid wood products. In: Wood production, wood technology, and biotechnological impacts. Universitätsverlag Göttingen, Germany, pp 509–533
go back to reference Kim SB, Kim DJ (2015) Impacts of economic growth on forest products consumption in Korea. J Agric Life Sci 49(4):295–304CrossRef Kim SB, Kim DJ (2015) Impacts of economic growth on forest products consumption in Korea. J Agric Life Sci 49(4):295–304CrossRef
go back to reference Kim MH, Song HB (2014) Analysis of the global warming potential for wood waste recycling systems. J Clean Prod 69:199–207CrossRef Kim MH, Song HB (2014) Analysis of the global warming potential for wood waste recycling systems. J Clean Prod 69:199–207CrossRef
go back to reference KS F 3200 (2006), Korean Standard F 3200: Fiberboards, Korea Standard Association, Seoul KS F 3200 (2006), Korean Standard F 3200: Fiberboards, Korea Standard Association, Seoul
go back to reference Lee M, Prewitt L, Mun SP (2014) Formaldehyde release from medium density fiberboard in simulated landfills for recycling. J Korean Wood Sci Technol 42(5):597–604CrossRef Lee M, Prewitt L, Mun SP (2014) Formaldehyde release from medium density fiberboard in simulated landfills for recycling. J Korean Wood Sci Technol 42(5):597–604CrossRef
go back to reference Lubis MAR, Hong MK, Park BD (2018) Hydrolytic removal of cured urea-formaldehyde resins in medium-density fiberboard for recycling. J Wood Chem Technol 38(1):1–14CrossRef Lubis MAR, Hong MK, Park BD (2018) Hydrolytic removal of cured urea-formaldehyde resins in medium-density fiberboard for recycling. J Wood Chem Technol 38(1):1–14CrossRef
go back to reference Lykidis C, Grigoriou A (2008) Hydrothermal recycling of waste and performance of the recycled wooden particle-boards. Waste Manag 28(1):57–63CrossRefPubMed Lykidis C, Grigoriou A (2008) Hydrothermal recycling of waste and performance of the recycled wooden particle-boards. Waste Manag 28(1):57–63CrossRefPubMed
go back to reference Müller G, Bartholme M, Kharazipour A, Polle A (2008) FTIR-ATR spectroscopic analysis of changes in fiber properties during insulating fiberboard manufacture of beech wood. Wood Fiber Sci 40(4):532–543 Müller G, Bartholme M, Kharazipour A, Polle A (2008) FTIR-ATR spectroscopic analysis of changes in fiber properties during insulating fiberboard manufacture of beech wood. Wood Fiber Sci 40(4):532–543
go back to reference Müller G, Schöpper C, Vos H, Kharazipour A, Polle A (2009) FTIR-ATR spectroscopic analyses of changes in wood properties during particle- and fiberboard production of hard- and softwood trees. BioResources 4(1):49–71 Müller G, Schöpper C, Vos H, Kharazipour A, Polle A (2009) FTIR-ATR spectroscopic analyses of changes in wood properties during particle- and fiberboard production of hard- and softwood trees. BioResources 4(1):49–71
go back to reference Ormondroyd GA, Stefanowski B (2015) Fibreboards and their applications. Wood composite. Elsevier, pp 91–102 Ormondroyd GA, Stefanowski B (2015) Fibreboards and their applications. Wood composite. Elsevier, pp 91–102
go back to reference Park BD, Jeong HW, Lee SM (2011) Morphology and chemical elements detection of cured urea-formaldehyde resins. J Appl Polym Sci 120:1475–1482CrossRef Park BD, Jeong HW, Lee SM (2011) Morphology and chemical elements detection of cured urea-formaldehyde resins. J Appl Polym Sci 120:1475–1482CrossRef
go back to reference Pizzi A (2003) Urea-formaldehyde adhesives. Handbook of adhesive technology, revised and expanded. CRC press Pizzi A (2003) Urea-formaldehyde adhesives. Handbook of adhesive technology, revised and expanded. CRC press
go back to reference Rajak ZIBHA., Eckelman CA (1993) Edge and face withdrawal strength of large screws in particleboard and medium density fiberboard. Forest Prod J 43(4):25 Rajak ZIBHA., Eckelman CA (1993) Edge and face withdrawal strength of large screws in particleboard and medium density fiberboard. Forest Prod J 43(4):25
go back to reference Roffael E, Athanassiadou E, Mantanis G (2002) Recycling of particle and fiberboards using the extruder technique. In: Proc. Umweltschutz in der Holzwerkstoffindustrie. Goettingen, Germany, Georg-August-Universitat Gottingen, pp 56–65 Roffael E, Athanassiadou E, Mantanis G (2002) Recycling of particle and fiberboards using the extruder technique. In: Proc. Umweltschutz in der Holzwerkstoffindustrie. Goettingen, Germany, Georg-August-Universitat Gottingen, pp 56–65
go back to reference Roffael E, Behn C, Schneider T, Krug D (2016) Bonding of recycled fibres with urea-formaldehyde resins. Int Wood Prod J 7(1):36–45CrossRef Roffael E, Behn C, Schneider T, Krug D (2016) Bonding of recycled fibres with urea-formaldehyde resins. Int Wood Prod J 7(1):36–45CrossRef
go back to reference Singh AP, Nuryawan A, Park BD, Lee KH (2015) Urea-formaldehyde resin penetration into Pinus radiata tracheid walls assessed by TEM-EDXS. Holzforschung 69(3):303–306CrossRef Singh AP, Nuryawan A, Park BD, Lee KH (2015) Urea-formaldehyde resin penetration into Pinus radiata tracheid walls assessed by TEM-EDXS. Holzforschung 69(3):303–306CrossRef
go back to reference Taheri F, Enayati AA, Pizzi A, Lemonon J, Layeghi M (2016) Evaluation of UF resin content in MDF boards after hot-pressing by Kjeldahl method. Eur J Wood Prod 74(2):237-242CrossRef Taheri F, Enayati AA, Pizzi A, Lemonon J, Layeghi M (2016) Evaluation of UF resin content in MDF boards after hot-pressing by Kjeldahl method. Eur J Wood Prod 74(2):237-242CrossRef
go back to reference TAPPI (1997) Organic nitrogen in paper and paperboard T 418 cm-97 TAPPI (1997) Organic nitrogen in paper and paperboard T 418 cm-97
go back to reference TAPPI (2002) Hydrogen ion concentration (pH) of paper extracts (hot extraction method) T 435 om-02 TAPPI (2002) Hydrogen ion concentration (pH) of paper extracts (hot extraction method) T 435 om-02
go back to reference Thoemen H, Irle M, Sernek M (2010) Wood-based panels, an introduction for specialists. Brunel University Press, London Thoemen H, Irle M, Sernek M (2010) Wood-based panels, an introduction for specialists. Brunel University Press, London
go back to reference US EPA (2005) Municipal solid waste in the United States: 2003 facts and figures. U. S. Enviromental Protection Agency, Washington, DC US EPA (2005) Municipal solid waste in the United States: 2003 facts and figures. U. S. Enviromental Protection Agency, Washington, DC
go back to reference Wan H, Wang XM, Barry A, Shen J (2014) Recycling wood composite panels: characterizing recycled materials. BioResources 9(4):7554–7565CrossRef Wan H, Wang XM, Barry A, Shen J (2014) Recycling wood composite panels: characterizing recycled materials. BioResources 9(4):7554–7565CrossRef
go back to reference Wilcox KE (2014) Using regression analyses for the determination of protein structure from FTIR spectra. Thesis, Faculty of Life Sciences, University of Manchester Wilcox KE (2014) Using regression analyses for the determination of protein structure from FTIR spectra. Thesis, Faculty of Life Sciences, University of Manchester
go back to reference Xing C, Zhang SY, Deng J (2004) Effect of wood acidity and catalyst on UF resin gel time. Holzforschung 58:408–412CrossRef Xing C, Zhang SY, Deng J (2004) Effect of wood acidity and catalyst on UF resin gel time. Holzforschung 58:408–412CrossRef
go back to reference Yoo KY, Yi S (2014) Evaluation and development of solid waste management plan: a case of Seoul for past and future 10 years. J Mater Cycles Waste Manag 17(4):673–689CrossRef Yoo KY, Yi S (2014) Evaluation and development of solid waste management plan: a case of Seoul for past and future 10 years. J Mater Cycles Waste Manag 17(4):673–689CrossRef
Metadata
Title
Effects of recycled fiber content on the properties of medium density fiberboard
Authors
Muhammad Adly Rahandi Lubis
Min-Kug Hong
Byung-Dae Park
Sang-Min Lee
Publication date
15-06-2018
Publisher
Springer Berlin Heidelberg
Published in
European Journal of Wood and Wood Products / Issue 5/2018
Print ISSN: 0018-3768
Electronic ISSN: 1436-736X
DOI
https://doi.org/10.1007/s00107-018-1326-8

Other articles of this Issue 5/2018

European Journal of Wood and Wood Products 5/2018 Go to the issue