35 results on '"Biziks, Vladimirs"'
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2. Substituting phenol in phenol–formaldehyde resins for wood modification by phenolic cleavage products from vacuum low-temperature microwave-assisted pyrolysis of softwood kraft lignin
3. Assessment of phenol-formaldehyde adhesive distribution on the strand surface by light microscopy.
4. Assessment of phenol-formaldehyde adhesive distribution on the strand surface by light microscopy
5. Density and density profile changes in birch and spruce caused by thermo-hydro treatment measured by X-ray computed tomography
6. Penetration depth of phenol-formaldehyde (PF) resin into beech wood studied by light microscopy
7. Modification of beech veneers with lignin phenol formaldehyde resins in the production of laminated veneer lumber (LVL)
8. Substituting phenol in phenol-formaldehyde resins for wood modification by phenolic cleavage products from vacuum low-temperature microwave-assisted pyrolysis of softwood kraft lignin
9. Water Vapor Sorption Kinetics of Beech Wood Modified with Phenol Formaldehyde Resin Oligomers.
10. Influence of Phenol–Formaldehyde Resin Oligomer Molecular Weight on the Strength Properties of Beech Wood
11. Vacuum Low-Temperature Microwave-Assisted Pyrolysis of Technical Lignins
12. Analytical pyrolysis as an instrument to study the chemical transformations of hydrothermally modified wood
13. Birch Wood Surface Characterization after Treatment with Modified Phenol-Formaldehyde Oligomers
14. Vacuum Low-Temperature Microwave-Assisted Pyrolysis of Pine Kraft Lignin - Products and Applications
15. Preparation of Polyurethane Adhesives from Crude and Purified Liquefied Wood Sawdust
16. Lignin and Lignin-Derived Compounds for Wood Applications—A Review
17. Changes in the microstructure of birch wood after hydrothermal treatment
18. Evaluation of water related properties of birch wood products modified with different molecular weight phenol-formaldehyde oligomers
19. Weathering Stability and Durability of Birch Plywood Modified with Different Molecular Weight Phenol-Formaldehyde Oligomers
20. Effect of phenol-formaldehyde (PF) resin oligomer size on the decay resistance of beech wood
21. Suitability of a lignin-derived mono-phenol mimic to replace phenol in phenol-formaldehyde resin for use in wood treatment
22. Effect of phenol-formaldehyde (PF) resin oligomer size on the decay resistance of beech wood.
23. Water Related Properties of Birch Wood Modified with Phenol-Formaldehyde (PF) Resins
24. Density and density profile changes in birch and spruce caused by thermo-hydro treatment measured by X-ray computed tomography
25. Penetration depth of phenol-formaldehyde (PF) resin into beech wood studied by light microscopy
26. Modification of beech veneers with lignin phenol formaldehyde resins in the production of laminated veneer lumber (LVL)
27. Various instrumental methods for quantifying phenol-formaldehyde resin into beech wood
28. Study on the microstructural changes of thermo-hydro treated wood using X-ray computed tomography
29. Scanning UV microspectrophotometry as a tool to study the changes of lignin in hydrothermally modified wood
30. Assessment of wood microstructural changes after one-stage thermo-hydro treatment (THT) by micro X-ray computed tomography
31. One-stage thermo-hydro treatment (THT) of hardwoods: an analysis of form stability after five soaking-drying cycles
32. Lignocellulolytic activity of Coniophora puteana and Trametes versicolor in fermentation of wheat bran and decay of hydrothermally modified hardwoods
33. Scanning UV microspectrophotometry as a tool to study the changes of lignin in hydrothermally modified wood.
34. Assessment of wood microstructural changes after one-stage thermo-hydro treatment (THT) by micro X-ray computed tomography.
35. One-stage thermo-hydro treatment (THT) of hardwoods: an analysis of form stability after five soaking-drying cycles.
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