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The Evaluation of Drying Results of Timber Loads with Different Densities — A New Approach
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D.E. Steinmann
Veröffentlicht/Copyright:
31. Juli 2009
Published Online: 2009-07-31
Published in Print: 1986
Walter de Gruyter
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Artikel in diesem Heft
- The Influence of Method Variables on the Aspergillus Bioassay of Wood Preservatives
- Studies on Kapok - 1. Electron Microscopic Observations
- The Evaluation of Drying Results of Timber Loads with Different Densities — A New Approach
- Abbaureaktionen von Glucose, Cellobiose und Holz unter dem Einfluß von Portlandzementmörtel
- The Piezoelectric Effect in Structural Timber
- Glycosidic Bonds between Lignin and Carbohydrates
- Gaschromatographische Analyse eines disproportionierten Tallharzes
- Personalia
- Degradation and Stereoselective Reduction of an α-Ketone Derivative of Guaiacylglycerol-ß-Vanillin Ether, a Lignin Substructure Model, by Fusarium solani M-13-1
- Selective Delignification of Birch Wood (Betula papyrifera) by Hirschioporus pargamenus in the Field and Laboratory
- Formation of Ether Linkage between Phenolic Acids and Gramineae Lignin: A Possible Mechanism Involving Quinone Methides
- Meetings
Artikel in diesem Heft
- The Influence of Method Variables on the Aspergillus Bioassay of Wood Preservatives
- Studies on Kapok - 1. Electron Microscopic Observations
- The Evaluation of Drying Results of Timber Loads with Different Densities — A New Approach
- Abbaureaktionen von Glucose, Cellobiose und Holz unter dem Einfluß von Portlandzementmörtel
- The Piezoelectric Effect in Structural Timber
- Glycosidic Bonds between Lignin and Carbohydrates
- Gaschromatographische Analyse eines disproportionierten Tallharzes
- Personalia
- Degradation and Stereoselective Reduction of an α-Ketone Derivative of Guaiacylglycerol-ß-Vanillin Ether, a Lignin Substructure Model, by Fusarium solani M-13-1
- Selective Delignification of Birch Wood (Betula papyrifera) by Hirschioporus pargamenus in the Field and Laboratory
- Formation of Ether Linkage between Phenolic Acids and Gramineae Lignin: A Possible Mechanism Involving Quinone Methides
- Meetings