Article
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Frontmatter
Published/Copyright:
June 2, 2022
Published Online: 2022-06-02
Published in Print: 2022-06-27
©2022 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- Original Articles
- Dynamic modulus of elasticity in flexural vibration tests of Pinus sylvestris sawn timber obtained with fundamental resonant frequency and overtones
- Enzymatic treatments for improved dyeing of solid wood
- Hardness of surface-densified wood. Part 1: material or product property?
- Hardness of surface-densified wood. Part 2: prediction of the density profile by hardness measurements
- Increasing hardwood kraft pulp yield using sodium methyl mercaptide
- Chemical characteristics of heterogeneous lignocellulosic microfines prepared using the glycol ether-organosolv process: dissolution properties in an NaOH–urea aqueous solution
- Prediction model of axially-loaded wood-dowel welding joints by high-speed rotation
- Effect of PF resin penetration on interphase microstructure and quantitative micromechanical properties of different grained-wood laminates
- HSQC-NMR analysis of bamboo (Phyllostachys nigra)-cultured cell lignin produced under different phytohormone conditions
Articles in the same Issue
- Frontmatter
- Original Articles
- Dynamic modulus of elasticity in flexural vibration tests of Pinus sylvestris sawn timber obtained with fundamental resonant frequency and overtones
- Enzymatic treatments for improved dyeing of solid wood
- Hardness of surface-densified wood. Part 1: material or product property?
- Hardness of surface-densified wood. Part 2: prediction of the density profile by hardness measurements
- Increasing hardwood kraft pulp yield using sodium methyl mercaptide
- Chemical characteristics of heterogeneous lignocellulosic microfines prepared using the glycol ether-organosolv process: dissolution properties in an NaOH–urea aqueous solution
- Prediction model of axially-loaded wood-dowel welding joints by high-speed rotation
- Effect of PF resin penetration on interphase microstructure and quantitative micromechanical properties of different grained-wood laminates
- HSQC-NMR analysis of bamboo (Phyllostachys nigra)-cultured cell lignin produced under different phytohormone conditions