Baker, 1983, Bacterial activity associated with the decomposition of woody substrates in a stream sediment, Applied and Environmental Microbiology, 45, 516, 10.1128/AEM.45.2.516-521.1983
Blanchette, 1990, Biological degradation of wood, 141
Blanchette, 1991, Ultrastructure of ancient buried wood from Japan, Holzforschung, 45, 161
Boutelje, 1975, Decay in wood constructions below the ground water table, Swedish Journal of Agricultural Research, 5, 113
Courtois, 1966, Über den Zellwandabbau durch Bakterien im Nadelholz, Holzforschung, 20, 148
Daniel, G.F., Nilsson, T., 1986. Ultrastructural observations on wood degrading erosions bacteria. IRG/WP/1283. The International Research Group on Wood Preservation, Stockholm.
Daniel, 1998, Developments in the study of soft rot and bacterial decay, 37
Ellwood, 1959, Bacterial attack of pine logs in pond storage, Forest Products Journal, 9, 283
Eslyn, W.E., Clark, J.W., 1976. Appraising deterioration in submerged piling. Supplement 3 to Materials and Organisms.
Evans, 1992, Studies on the degradation and protection of wood surfaces, Wood Science and Technology, 26, 151, 10.1007/BF00194471
Faix, O., 1985. Investigation on lignin and lignin polymer models by FTIR spectroscopy, International Symposium on Wood and Pulping Chemistry, Vancouver, British Columbia, Canada, August 1985, Techn., pp. 133–134.
Faix, 1991, Classification of lignins from different botanical origins by FT-IR spectroscopy, Holzforschung, 45, 21, 10.1515/hfsg.1991.45.s1.21
Fengel, 1984
Filley, T.R., Blanchette, R.A., Simpson, E., Fogel, M.L., 2001. Nitrogen cycling by wood decomposing soft-rot fungi in the “King Midas tomb,” Gordion, Turkey, PNAS vol. 98 (23), pp. 13346–13350.
Grinda, M., 1997. Some experiences with attack of microorganisms on wooden constructions supporting foundations of houses and bridges, IRG/WP 97-10232. The International Research Group on Wood Preservation, Stockholm.
Harmsen, 1965, Der Bakterienangriff auf Holz, Holz als Roh- und Werkstoff, 23, 389, 10.1007/BF02613040
Hedges, 1990, The chemistry of archaeological wood, 111
Hendrickson, 1991, Abundance and activity of N2-fixing bacteria in decaying wood, Canadian Journal of Forest Research, 21, 1299, 10.1139/x91-183
Hoffmann, 1990, Structure and degradation process for waterlogged asrchaeological wood, 35
Hoffmann, 1986, Das Holz der Archaeologen: Untersuchungen an 1600 Jahren wassergesättigten Eichenhölzern der “Mainzer Roemerschiffe”, Holz als Roh- und Werkstoff, 44, 241, 10.1007/BF02627308
Iiyama, 1988, Chemical charcterization of ancient buried wood, Holzforschung, 42, 5, 10.1515/hfsg.1988.42.1.5
Jordan, B.A., Schmidt, E.L., 2000. Site Characteristics impacting historic waterlogged wood: a review. IRG/WP 00-10344. The International Research Group on Wood Preservation, Stockholm.
Jordan, B.A., Gregory, D.J., Schmidt, E.L., 2002. Examining environmental conditions and the biodeteriorastion of historic waterlogged wood: the Kolding Cog. IRG/WP 02-10441. The International Research Group on Wood Preservation, Stockholm.
Kajihara, 1993, Characterisation of antiviral water-soluble lignin from Bagasse degraded by Lentinus edodes, Holzforschung, 47, 479, 10.1515/hfsg.1993.47.6.479
Kim, 1990, Chemical characteristics of waterlogged archaeological wood, Holzforschung, 44, 169
Kim, 2000, Micromorphological characteristics of wood biodegradation in wet environments: a review, IAWA Journal, 21, 135, 10.1163/22941932-90000241
Kimura, 1992, FTIR study of UV-irradiated stoneground wood pulp, Holzforschung, 46, 529, 10.1515/hfsg.1992.46.6.529
Klaassen, R.K.W.M., 2007. Bacterial decay in wood foundation piles: patterns and causes. A study on historical pile foundations in the Netherlands. International Biodeterioration and Biodegradation, this issue.
Knuth, 1962, Bacterial deterioration of pine logs in pond storage, Forest Products Journal, 12, 437
Miller, 1959, Use of dinitrsalicylic acid reagent for determination of reducing sugar, Analytical Chemistry, 31, 426, 10.1021/ac60147a030
Nilsson, T., Daniel, G.F., 1983. Tunnelling bacteria. IRG/WP/1186. The International Research Group on Wood Preservation, Stockholm.
Pandey, 1998, A study of chemical structure of soft and hardwood and wood polymers by FTIR spectroscopy, Journal of Applied Polymer Science, 71, 1969, 10.1002/(SICI)1097-4628(19990321)71:12<1969::AID-APP6>3.0.CO;2-D
Pandey, 1997, Analysis of wood surface and ground wood by diffuse reflectance (DRIFT) and photoacoustic (PAS) Fourier transform infrared spectroscopy, Holz als Roh- und Werkstoff, 55, 383, 10.1007/s001070050251
Pritchard, 1997, Atmospheric CO2 concentration, N availability, and water status affect patterns of ergastic substance deposition in longleaf pine (Pinus palustris Mill.) foliage, Trees, 11, 494, 10.1007/PL00009689
Rodrigues, 1998, Determination of lignin content of Eucalyptus globulus wood using FTIR spectroscopy, Holzforschung, 52, 46, 10.1515/hfsg.1998.52.1.46
Schultz, 1986, Quantitative structural analysis of lignin by diffuse reflectance Fourier transform spectrometry, Holzforschung, 40, 37
Singh, A.P., Butcher, J.A., 1990. Bacterial degradation of wood cell wall: a review of degradation patterns. IRG/WP/1460. The International Research Group on Wood Preservation, Stockholm.
Singh, 1991, Bacterial degradation of wood cell wall: a review of degradation patterns, Journal of the Institute of Wood Science, 12, 143
Singh, A.P., Kim, Y.S., 1997. Biodegradation of wood in wet environments: a review. IRG/WP 97-10217. The International Research Group on Wood Preservation, Stockholm.
Taniguchi, 1986, Accessibility and density of cell wall of unearthed buried wood, Mokuzai Gakkaishi, 32, 738
TAPPI Standard T 203 om-93, 1993. Alpha-, beta- and gamma-cellulose in pulp.
TAPPI Standard T 211 om-93, 1993. Ash in wood, pulp and paperboard: combustion at 525°C.
TAPPI Standard T 222 om-98, 1998. Acid insoluble lignin in wood and pulp.
TAPPI Standard T 264 cm-97, 1997. Preparation of wood for chemical analysis.
Troya, M.T., Escorial, M.C., Garcia, J., Cabañas, A., 1989a. Study of the degradation caused by microorganisms in Pinus spp. waterlogged wood, IRG/WP/1411. The International Research Group on Wood Preservation, Stockholm.
Troya, M.T., Garcia, A., Pozuelo, J.M., Navarrete, A., Cabañas, A., 1989b. Contribution to study of the degradation caused in Pinus spp. poles used in field test, IRG/WPG/1417. The International Research Group on Wood Preservation, Stockholm.
Ucar, 1995, Chemical and technological properties of 300 years waterlogged wood (Abies bornmulleriana M.), Holz als Roh- und Werkstoff, 53, 129, 10.1007/BF02716410
Wilcox, 1970, Anatomical changes in wood cell walls attacked by fungi and bacteria, The Botanical Review, 36, 10.1007/BF02859153
Wise, 1946, Chlorite holocellulose its fractionation and bearing on summative wood analysis and on studies on the hemicelluloses, Paper Trade Journal, 122, 11