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Relative efficacy of heartwood extracts and proprietory wood preservatives as wood protectants

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The relative potentials of either heartwood extracts (air dry extracts in 60 percent methanol) of very durable woods (Afzelia africana J.E. Smith;Erythrophleum suaveolens (Guill & Perr.) Brenam. Syn.E guinensis G.Don. orMilicia excelsa (Welw) C.C. Berg. Syn.Chlorophora excelsa (Welw) Benth.) or any of two proprietary wood preservatives (AWPA type “C”-Chromated Copper Arsenate (CCA) or 5 percent solution of AWPA Standard Designation P “9” type “C”—Pentanchlorophenol (Penta) in light oil solvent) to suppress attack on pressure treatedAntiaris toxicaria Lesch Sapwood by either any of three species of decaying fungi (Coridopsis Polyzona Klotzch;Lenzites trabea; orTrametes cingulata Fr.) under soil block exposure conditions were investigated and threshold values determined. Extract/preservative dosages were either 8.009; 24.778; 48.056; 96.111 or 144.167 kg m−3 (0.5; 1.5; 3.0; 6.0 or 9.0 1b/ft3). Exposure was for either 14 or 28 weeks and in accordance with ASTM D1413-72 Provisions. Conclusions reached were that at threshold values the ability of either any of the heartwood extracts or proprietary wood preservatives to suppress attack under conditions in this study was significant at 0.01. Relative efficacy of those biocides was dependent on fungal species. Neither any of the heartwood extracts nor any of the proprietary wood preservatives (except in the case ofTrametes cingulata attack on CCA treated wood at highest retention level) was able to confer “very durable” rating on treated wood. Possible reasons for the reduced relative durability of extracts visa vis native heartwood were advanced. At the highest retention level (144.167 kg m−3) there was no significant difference (at 0.05 level) between efficacy of each of the heartwood extracts and any of the proprietary wood preservatives (CCA or Penta).

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References

  • Agboola, S.A. 1979. An Agricultural Atlas of Nigeria [M]. Oxford University Press.

  • American society for Testing and Materials. 1972. Standard methods of testing wood preservatives by laboratory soil block cultures. ASTM D 1413. Book of standards [S]. Philadelphia. pa.

  • American society for Testing of Materials. 1971. Book of Standards [S]. Philadelphia, pa. Specifications for Chromated Copper Arsenate D 1627–68. Specifications for Volatile Petroleum Solvent (LPG) for Preparing Pentachlorphenol Solutions-D 2605-68T. Specifications for Pentachlorophenol-D 1272-58(70).

  • American Wood Preservers’ ’Association. 1963. Standard method of testing wood preservatives by laboratory soil-block cultures. AWPA standard M 10-63 [S]. American Wood Preservers’ Assoc-Washington, DC.

  • Barnes, H.M., Murphy, R.J. 1995. Wood preservation: The classics and the new age [J]. For. Prod. J.,45(9): 16–26.

    Google Scholar 

  • Barnes, H.M., Nicholas, D.D. 1992. Alternative preservative systems: Pros and cons. In abstract proceedings arsentic and mercury workshop on removal, recovery, treatment, and disposal [M]. Ft. Washington, PA. EPA/600/R-92/105. pp. 20–23.

  • Behr, A.E. 1973. Decay test methods. In wood deterioration and its prevention by preservative treatments. Vol. 1. Degradation and protection of wood [C]. In: Nicholas, D.D. (ed) Syracuse University Press. p217–246.

  • Borazjani, H., Diehl, S.V., and Stewart, H.A. 1997. Composting may offer a solution to the costly wood waste handling problem [R]. Forest Products Laboratory, Forest and Wildlife Research Center, Research Advances, vol. 2. No. 2, p4.

    Google Scholar 

  • Borazjani, H., Ferguson, B.J., Mcfarland. L.K.,et al., 1990. Evaluation of wood-treating plant sites for land treatment of creosote and pentachlorophenol contaminated soils [J]. In: Emerging Technologies in Hazardous Waste Management, ACS Symposium Series No.422(15): 252–266.

  • Brazier, J.D., and Franklin, G.L. 1961. Identification of hardwoods. A Microscopic Key [J]. Forest Products Research Bull,46; H.M.S.O., London p96.

    Google Scholar 

  • Bultman, J.D., Gilbertson, R.L., Adaskaveg, J.E.,et al. 1991. The efficacy of guayule resin as a pesticide [J]. Bioresources Technology,35(1991): 197–201.

    Article  CAS  Google Scholar 

  • Coggins, C.R., and Moldrup, M.B. 1991. Improvement in safety and environmental protection and timber treatment plants: accelerated fixation and other new systems [C]. Record 1991 Annual Conference of the British Wood Preservers’ and Damp-Proofing Association.

  • Cowling, E.B. 1957. The relative preservative tolerance of 18 wood destroying fungi [J]. For. Prod.3(7): 355–359.

    Google Scholar 

  • Duncan, C.G. 1958. Studies of the methodology of soil-block testing [R]. USDA; For. Prod. Lab. Report No 2114.

  • Findlay, W.P.K. (1985). The Nature and durability of wood. In; Preservation of timbers in the tropics [C], In: Findlay, W.P.K. (ed.) Martinus Nijhoff/Dr. W. Junk Publishers, Lancaster. p 1–15.

    Google Scholar 

  • Fisher, C.W. 1968. Effluent handling for wood-preserving plants [R]. Environmental health and Safety Section, Research Department, Koppers Co. Inc. Pittsburg, Pa. In Mimeo.

    Google Scholar 

  • Lfebueme, S.C. 1977. Natural durability of wood with particular reference to West African timbers. In: Proceedings of the Intern [C]. Workshop on Wood Preservation held at the Forestry Research Institute of Nigeria, Ibadan. 7–12th November 1977. p14–96.

  • Kamden, D.P. 1994. Fungal decay resistance of aspen block treated with heartwood extracts [J]. For. Prod. J.,44: 30–32.

    Google Scholar 

  • Loftus, R.G., and Loftus, E.E. 1988. Essence of statistics [M]. New York: Alfred a. Knopf, p323–395.

    Google Scholar 

  • Nicholas, D.D. and Schultz, T.P. 1997. Comparative performance of several ammonical copper preservative systems [C]. The International Res. Group on Wood Preservation Document No. IRG/WP97-30151. p7.

  • Nicholas, D.D. 1983. Trends in the use of chemicals for preservative treatment of wood [J]. In: Advances in Production of Forest products, AICHE Symposium Series No.233(79): 75–78.

  • Odeyinde, M.E. 1977. Wood destroying fungi. In: Proceedings of the Intern [C]. Workshop on Wood Preservation held at Forestry Res. Institute of Nigeria, Ibadan. 7–12th Nov. 1977. p27–28.

  • Ofoso-Asiedu, A. 1975. The occurrence and importance of some wood decay fungi in Ghana [J]. Material and Organismen,3(3): 35–42.

    Google Scholar 

  • Okoro, S.P.A. 1982. Biological deterioration of some West African indegeneous hardwood tree species [J]. Nigerian J. of For.,12(2): 38–40.

    Google Scholar 

  • Onuorah, O.E. 2000. Short Communication:-The Wood preservative potentials of heartwood extracts ofMilicia excelsa andErythrophleum suaveolens [J]. Bioresources Technology,75: 171–173.

    Article  CAS  Google Scholar 

  • Princess Risborough Laboratory. 1972. Handbook of hardwoods [M]. 2nd edition. H.M.S.O., London.

    Google Scholar 

  • Princess Risborough Laboratory. 1963. The Natural Durability Classification of Timber [R]. Technical Note No. 44; Forest Prod. Laboratory, H.M.S.O. London.

    Google Scholar 

  • Rudman, P. 1962. The causes of natural durability in timber [J]. Holzforcbung,16: 74.

    CAS  Google Scholar 

  • Schultz, T.P., Harmes, W.B., Fisher, T.H.,et al. 1995. Durability of angiosperm heartwood: The importance of extractives [J]. Holzforschung49(1): 29–34.

    Article  CAS  Google Scholar 

  • Thompson, W.S. 1971. Contribution of the wood preserving industry to water pollution [C]. In: W. S. Thompson (ed.) Proceeding of Conference on Pollution, Abetment and control in the wood-preserving industry. Mississippi for. Prod. Lab; Mississippi State College. p50–75.

  • Thompson, W.S. and Dust, J.V. 1971. Pollution control in the wood preserving industry. Part I: Nature and scope of the problem [J]. For. Prod. J.,21(9): 70–75.

    CAS  Google Scholar 

  • Thompson, W.S. and Dust, J.V. 1972b. Pollution control in the wood preserving industry. Part III: Chemical and physical methods of treating waste water [J]. For. Prod. J.,22(12): 25–30.

    Google Scholar 

  • Thompson, W.S. and Dust, J.V. 1973. Pollution control in the wood preserving industry. Part IV: Biological methods of treating waste water [J]. For. Prod. J.,23(9): 59–66.

    Google Scholar 

  • Zabel, R.A. 1954. Variations in preservative tolerance of wood destroying fungi [J]. J. For. Prod Res. Soc.,4(4): 166–169.

    Google Scholar 

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Biography: Eugene Onyekwe Onuorah (1952-), male, Dept. of Forest Production and Utilization University of Agriculture, P. M. B. 2373, Makurdi, Benue State, Nigeria.

Responsible editor: Song Funan

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Onuorah, E.O. Relative efficacy of heartwood extracts and proprietory wood preservatives as wood protectants. Journal of Forestry Research 13, 183–190 (2002). https://doi.org/10.1007/BF02871694

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