Literatur
Hötte C, Nopens M, Militz H (2025) Esterification of wood with citric acid and sorbitol : effect of the copolymer on the properties of the modified wood ; Part 2: swelling and shrinking, sorption behaviour and liquid water uptake. Holzforsch 79(12):671-686, DOI:10.1515/hf-2025-0085
Literatur
Coniglio R, Behrens D, Schütt F, Roesky N, Vogler U, Appelt J (2025) Exploring the potential of ammoxidation of lignins to enhance amide-nitrogen for wood-based peat alternatives and its impact on plant development. Holzforsch 79(9):420-433, DOI:10.1515/hf-2024-0127
Literatur
Möck DMJ, Kühn LM, Appelt J (2025) Supercritical carbon dioxide extraction of crude tall oil : an alternative upgrading approach. Holzforsch 79(9):434-444, DOI:10.1515/hf-2024-0126
Suitability of different sealer media for moisture uptake tests of wood
Literatur
Nopens M, Ohlmeyer M, Brischke C (2025) Suitability of different sealer media for moisture uptake tests of wood. Holzforsch 79(2-3):134-137, DOI:10.1515/hf-2024-0076
Literatur
Möck DMJ, Radtke S, Riegert C, Appelt J (2024) Production of phenolic-rich slow pyrolysis liquid extracts by supercritical carbon dioxide fractionation. Holzforsch 78(11-12):657-672, DOI:10.1515/hf-2024-0039
Literatur
Flaig ML, Berger J, Helmling S, Olbrich A, Schaffrath HJ, Zahn D, Saake B (2024) Chemotaxonomic and anatomic wood species identification in bleached pulp: blind test and method validation. Holzforsch 78(9):487-502, DOI:10.1515/hf-2024-0025
Literatur
Flaig ML, Berger J, Wenig P, Olbrich A, Saake B (2023) Identification of tropical wood species in paper: a new chemotaxonomic method based on extractives. Holzforsch 77(11-12):860-878, DOI:10.1515/hf-2023-0048
Effect of phenol-formaldehyde (PF) resin oligomer size on the decay resistance of beech wood
Literatur
Biziks V, Bicke S, Koch G, Militz H (2021) Effect of phenol-formaldehyde (PF) resin oligomer size on the decay resistance of beech wood. Holzforsch 75(6):574-583, DOI:10.1515/hf-2020-0020
Specific heat capacity of wood between -140 and 50 °C in dry and wet state
Literatur
Nopens M, Sazama U, Krause A, Fröba M (2021) Specific heat capacity of wood between -140 and 50 °C in dry and wet state. Holzforsch 75(9):779-785, DOI:10.1515/hf-2020-0204
Literatur
Baar J, Paschova Z, Hofmann T, Kolár T, Koch G, Saake B, Rademacher P (2020) Natural durability of subfossil oak: wood chemical composition changes through the ages. Holzforsch 74(1):47-59, DOI:10.1515/hf-2018-0309