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Pinus radiata

Theron JM, Donald DGM, Broembsen SL, Van der Merwe JA (1982) The effect of warm water treatment of Pinus radiata seedlings on mycorrhizae survival, root growth capacity and Phytophthora eradication. S Afr For J 123 31-35 Thomashow LS, Weller DM (1990) Application of fluorescent pseudomonads to control root diseases of wheat and some mechanisms of disease suppression. In Hornby D (ed) Biological control of plant pathogens. CABI, Wallingford, UK, pp 109-122... [Pg.272]

Sources 1 D.H. Bennett, C.M. Falter and A.F. Campbell, Prediction of Effluent Characteristics, Use of Lime Treatments and Toxicity of the Proposed Ponderay Mill , Appendix in engineer s report on Effluent Characteristics for Washington State Department of Ecology, 1987. 2 D.F. Zinkel, Tall Oil Precursors of Loblolly Pine , Tappi, 1975, 58, 2, pp. 118-121. 3 R.W. Hemingway, P.J. Nelson and W.E. Hillis, Rapid Oxidation of the Fats and Resins in Pinus Radiata Chips for Pitch Control , Tappi, 1971, 54, 1, pp. 95-98. 4 D.O. Foster, D.F. Zinkel and A.H. Conner, Tall Oil Precursors of Douglas Fir , Tappi, 1980, 63, 12, pp. 103-105. [Pg.173]

Coniophora puteana Radiata pine (Pinus radiata) 20 to >20 22 to 57 Van Acker (2003)... [Pg.61]

Torr, K.M., Dawson, B.S.W., Ede, R.M. and Singh, J. (1996). Surface changes on acetylation and exposure to ultraviolet radiation of Pinus radiata using X-ray photoelectron spectroscopy. Holzforschung, 50(5), 449-456. [Pg.228]

Wakeling, A.N., Plackett, D.V. and Cronshaw, D.R. (1991). The susceptibility of acetylated Pinus radiata to mould and stain fungi. In Proceedings of the International Symposium on Chemical Modification of Wood, Kyoto, Japan, Takahashi, M. (Ed.), pp. 142-147. [Pg.229]

Hopmans, P. and D.W. Ehnn. 1984. Boron deficiency in Pinus radiata D. Don and the effect of applied boron on height growth and nutrient uptake. Plant Soil 79 295-298. [Pg.1585]

BWC. Brit abbr for board wood cellulose which is obtained from Pinus Radiata. It contains ca 85% of a-cellulose... [Pg.394]

McDonald, A. G. and Clark, T. A., Characterization of oligosaccharides released by steam explosion of sulfur-dioxide impregnated pinus-radiata. J Wood Chem Technol 1992, 12 (1), 53-78. [Pg.1539]

Bland DE, Foster RC, Logan AF (1971) The mechanism of permanganate and osmium tetroxide fixation and distribution of lignin in the cell wall of Pinus radiata Holzforschung... [Pg.143]

Fig. 4.5.4. Signal heights as a function of the contact time L for the lignin signal at 149 ppm in Pinus radiata wood (circles) along with a best-fit curve (solid line) based on Eq. (1) and a simulated curve (broken line) for a CH group... Fig. 4.5.4. Signal heights as a function of the contact time L for the lignin signal at 149 ppm in Pinus radiata wood (circles) along with a best-fit curve (solid line) based on Eq. (1) and a simulated curve (broken line) for a CH group...
Moistening the sample assists proton spin-lattice relaxation. Experiments in the authors laboratory gave a value of Ti(H) = 0.05 s for a sample of Pinus radiata wood containing 45% moisture this rose to 0.75 s when the sample was... [Pg.151]

Fig. 4.5.7. CP/MAS NMR spectrum of Pinus radiata wood. The area of the enlarged region is used for determination of the lignin content... Fig. 4.5.7. CP/MAS NMR spectrum of Pinus radiata wood. The area of the enlarged region is used for determination of the lignin content...
Hemmmgson JA (1983) The structure of lignin from Pinus radiata exploded wood J Wood Chem Technol 3 289-312... [Pg.248]

Hillis WE, Nelson P, Zadow G (1966) The cause of discoloration of Pinus Radiata bisulfite pulp Appita 19 111-114... [Pg.444]

In contrast, Yazaki and Hillis 29) obtained a viscosity of 8,500 mPa-s for a 45% solution of the aqueous extract from Pinus radiata bark. This is almost an order of magnitude higher than that expected on the basis of the procyanidin polymer results. Viscosities of the methanol-soluble portion and the ultrafiltered portions of this extract were 500 and 90 mPa-s, respectively. The former value is about that expected for a proanthocyanidin polymer, but the latter indicates that most of the polymer has been excluded by the filter, and it further implies that molecular sizes of proanthocyanidins based on ultrafiltration measurements are often misleading. [Pg.178]

Reid, C. P. P. Bowen, G. D. (1979b). Effect of water stress on phosphorus uptake by mycorrhizas of Pinus radiata. New Phytologist, 83, 103-7. [Pg.96]

Pinus radiata (control) 18% exudates allocation/GPP Ryan et al. (1996)... [Pg.104]

Beets, P. N. Whitehead, D. (1996). Carbon partitioning in Pinus radiata in relation to foliage nitrogen status. Tree Physiology, 16, 131-8. [Pg.122]

Gadgil, R. L. Gadgil, P. D. (1975). Suppression of litter decomposition by mycorrhizal roots of Pinus radiata. New Zealand Journal of Forest Science, 5, 33 1. [Pg.124]


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