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The hydrophobic properties of bark extractives
Authors:Karl Borgin  Kathleen Corbertt
Institution:(1) Department of Wood Science, Faculty of Forestry, University of Stellenbosch, Stellenbosch, South Africa
Abstract:Summary The hydrophobic properties of benzene-soluble extractives from the bark of Pinus radiata were studied by determining the water-solid-air contact angle and the resistance to water penetration.The material contained in the bark extract possessed wax-like and film-forming properties. It was highly hydrophobic with a contact angle with water of about 98°. Wood samples were impregnated with bark extract in order to study the ability of the hydrophobic bark extractives to prevent preferential wetting with water and the displacement of the impregnant from the hydrophilic wood surface. The wax-like material deposited from the bark extracts showed a remarkable affinity for wood as revealed by the high degree of resistance to water penetration and wetting of the treated wood even after several wetting-drying cycles which otherwise tend to break down the bonds and adhesion between a hydrophilic solid and a hydrophobic coating.Hydrophobic or film-forming additives did not improve the ability of bark extractives to protect a hydrophilic solid from water. The properties of the bark extractives as a water repellent and a water barrier could therefore be assumed to be as near perfect as possible.Nature seems to have solved the problem of producing one single, although complex, material with two properties which are extremely difficult, maybe impossible, to combine in a single synthetic material: one of high affinity for a hydrophilic solid and another of extreme water repellency and resistance to water.The in situ conditions prevailing in the bark tissue, combining bark extractives and cell walls of various anatomical structures, must therefore represent a rather unique and for this specific purpose highly efficient two-phase hydrophobic-hydrophilic solid system.The authors would like to express their appreciation to Kalley Timber Development Corporation for the close co-operation and support for our research on bark products and would also like to thank Lewis and Everitt, Poly-Resin Products Ltd., Taeuber and Corssen, Farbenfabriken Bayer AG, Scado-Archer-Daniels, Triton Chemicals and Rohm and Haas for supplying samples and information.
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