Biological performance of particleboard incorporated with boron minerals
Evren Terzi , S. Nami Kartal , Philippe Gerardin , Claudia Marcela Ibanez , Tsuyoshi Yoshimura
Journal of Forestry Research ›› 2016, Vol. 28 ›› Issue (1) : 195 -203.
Biological performance of particleboard incorporated with boron minerals
We compared resistance to decay, mold fungi, termites and insect larvae of particleboards incorporated with the raw boron minerals ulexite and colemanite to that of particleboards impregnated with the commercial boron preservative zinc borate, or boric acid plus a borax mixture. We also quantified water absorption, thickness swell and boron release of particleboards. Ulexite had the best decay resistance, and colemanite had the best termite resistance. However, ulexite and colemanite were not as effective as zinc borate or the boric acid/borax mixture in preventing mold growth. In general, the boric acid/borax mixture combination was more effective against Anobium larvae than the other treatments. Less boron was released by specimens containing zinc borate and colemanite than by those containing ulexite or the boric acid/borax mixture. In general, water absorption and thickness swell were similar among the different treatments, but both were slightly higher in the ulexite-incorporated specimens. Further mechanical tests will be needed to evaluate the particleboard properties and thereby the compatibility of these boron minerals with various manufacturing processes.
Biological resistance / Borax / Boric acid / Colemanite / Particleboard / Ulexite
| [1] |
|
| [2] |
ASTM. ASTM D4445 Standard test method for fungicides for controlling sapstain and mould on unseasoned lumber (laboratory method), 2010, West Conshohocken: ASTM International. |
| [3] |
AWPA. AWPA T1-12 use category system: processing and treatment standard, 2012, Alabama: AWPA Birmingham. |
| [4] |
|
| [5] |
Barnes HM, Amburgey TL (1993) Technologies for the protection of wood composites. In: Preston AF (ed) Proceedings of the IUFRO symposium on protection of wood-based composite products. Orlando, FL, Forest Products Society, Madison, WI, pp 7–11 |
| [6] |
Bhatia TK (2002) Use of borate-treated wood as part of an IPM approach for durable and sustainable construction. In: Jones SC, Zhai J, Robinson WMH (eds) Proceedings of the 4th international conference on Urban pests, Charleston, pp 269–276 |
| [7] |
|
| [8] |
BS EN (1993) BS EN 317 Particleboard and Fiberboard—Determination of Swelling in Thickness after Immersion in Water. BSI—British Standards Institution, BSI London, the UK |
| [9] |
BS EN (1997) BS EN 113 Wood preservatives—test method for determining the protective effectiveness against wood destroying Basidiomycetes—determination of the toxic values. BSI—British Standards Institution, BSI London, the UK |
| [10] |
BS EN (2005) BS EN 48 wood preservatives. Determination of eradicant action against larvae of Anobium punctatum (De Geer) (Laboratory Method). BSI—British Standards Institution, BSI London, the UK |
| [11] |
BS EN (2010) BS EN 312 Particleboards. Specifications. BSI—British Standards Institution, BSI London, the UK |
| [12] |
|
| [13] |
ENV (1995) ENV 1250-2 Wood preservatives. Methods of measuring losses of active ingredients and other preservative ingredients from treated timber part 2: laboratory method for obtaining samples for analysis to measure losses by leaching into water or synthetic sea water. European Committee for Standardization, Brussels, Belgium |
| [14] |
|
| [15] |
|
| [16] |
|
| [17] |
|
| [18] |
Jones WA (2002) Biological, mechanical, and physical properties of southern yellow pine flakeboard containing calcium borate, Unpublished Master’s Thesis, Mississippi State University, Mississippi State, MS |
| [19] |
|
| [20] |
Kartal SN, Imamura Y (2004) The use of boron as wood preservative systems for wood and wood-based composites. In: Proceedings of the 2nd international boron symposium, Eskişehir, Turkey |
| [21] |
|
| [22] |
Kistler RB, Helvacı C (1994) Boron and borates. In: Carr DD (ed) Industrial minerals and rocks (6th ed), Society for Mining, Metallurgy and Exploration Inc., Littleton, Colorado, pp 171–186 |
| [23] |
Laks PE, Manning MJ (1997) Mobility of zinc borate wood composite preservative. IRG/WP 97-30153. International Research Group on Wood Preservation, Stockholm, Sweden |
| [24] |
Laks PE, Palardy RD (1990) The development of borate-containing flakeboard. In: Hamel M, Robertson D (eds) Proceedings of the 1st international conference on wood protection with diffusible preservatives, Proceedings No. 47355, Forest Products Society, Madison, pp 76–79 |
| [25] |
|
| [26] |
|
| [27] |
|
| [28] |
Murphy RJ, Dickinson DJ, Turner P, Wickens PJ, Hashim R (1993) Vapor boron treatment of wood composites. In: Preston AF (ed) Proceedings of the IUFRO symposium on protection of wood-based composite products. Orlando, FL, Forest Products Society, Madison, WI, pp 49–56 |
| [29] |
|
| [30] |
|
| [31] |
|
| [32] |
|
| [33] |
US Geological Survey Minerals Yearbook 2013. Boron [Advance Release]. US Department of the Interior, US Geological Survey, July 2015, 10 pp. Available at http://minerals.usgs.gov/minerals/pubs/commodity/boron/myb1-2013-boron.pdf |
| [34] |
|
| [35] |
|
| [36] |
|
| [37] |
|
/
| 〈 |
|
〉 |