2016



  • Altgen D, Avramidis G, Viöl W, Mai C (2016) The effect of air plasma treatment at atmospheric pressure on thermally modified wood surfaces. In: Wood Sci Technol 50 (6): 1227–1241, DOI: 10.1007/s00226-016-0856-7

  • Altgen D, Bellmann M, Wascher R, Mai C (2016) Enhanced urea-formaldehyde adhesive spreading on plasma treated wood particles. In: Eur J Wood Wood Prod 74 (4): 617–620, DOI: 10.1007/s00107-016-1026-1

  • Altgen M, Militz H (2016) Influence of process conditions on hygroscopicity and mechanical properties of European beech thermally modified in a high-pressure reactor system. In: Holzforschung 70 (10): 971-979, DOI: 10.1515/hf-2015-0235

  • Altgen M, Militz H (2016) Photodegradation of thermally-modified Scots pine and Norway spruce investigated on thin micro-veneers. In: Eur J Wood Wood Prod 74 (2): 185-190, DOI: 10.007/s00107-015-0980-3

  • Altgen M, Hofmann T, Militz H (2016) Wood moisture content during the thermal modification process affects the improvement in hygroscopicity of Scots pine sapwood. In: Wood Sci Technol 50 (6): 1181–1195, DOI: 10.1007/s00226-016-08

  • Altgen M, Willems W, Militz H (2016) Wood degradation affected by process conditions during thermal modification of European beech in a high-pressure reactor system. In: Eur J Wood Wood Prod 74 (5): 653-662, DOI: 10.1007/s00107-016-1045-y

  • Andersons B, Noldt G, Koch G, Andersone I, Meija-Feldmane A, Biziks V, Irbe I, Grinins J (2016) Scanning UV microspectrophotometry as a tool to study the changes of lignin in hydrothermally modified wood. In: Holzforschung 70 (3): 215-221, DOI: 10.1515/hf-2015-0027

  • Avramidis G, Wascher R, Militz H, Viöl W (2016) Impact of air plasma treatment at atmospheric pressure on wood and wood extractives. In: Int Wood Prod J 7 (2): 76-79, DOI: 10.1080/20426445.2016.1162429

  • Bahari SA, Krause A (2016) Utilizing Malaysian bamboo for use in thermoplastic composites. In: J Clean Prod 110: 16-24, DOI: 10.1016/j.jclepro.2015.03.052

  • Bastani A, Adamopoulos S, Koddenberg T, Militz H (2016) Study of adhesive bondlines in modified wood with fluorescence microscopy and X-ray micro-computed tomography. In: Int J Adhes Adhes 68: 351–358, DOI: 10.1016/j.ijadhadh.2016.04.006

  • Bender M, Tiedemann M, Teuber L (2016) Online and stochastic optimization for the harvesting of short rotation coppice. In: J Clean Prod 110: 78-84, DOI: 10.1016/j.jclepro.2015.08.120

  • Biziks V, Van den Bulcke J, Grinins J, Militz H, Andersons B, Andersone I, Dhaene J, Van Acker J (2016) Assessment of wood microstructural changes after one-stage thermo-hydro treatment (THT) by micro X-ray computed tomography. In: Holzforschung 70 (2): 167–177, DOI: 10.1515/hf-2014-0337

  • Bongers F, Meijerink T, Lütkemeier B, Lankveld C, Alexander J, Militz H, Lehringer C (2016) Bonding of acetylated wood. In: Int Wood Prod J 7 (2): 102-106, DOI: 10.1080/20426445.2016.1161944

  • Direske M, Varel D, Weber A, Mai C (2016) Chemische Modifizierung von Holzfaserdämmstoffplatten mit niedermolekularem Phenol-Formaldehyd-Harz durch unterschiedliche Behandlungsverfahren. In: Holztechnologie 57 (4): 16-25

  • Gascón-Garrido P, Mainusch N, Militz H, Viöl W, Mai C (2016) Effects of copper-plasma deposition on weathering properties of wood surfaces. In: Appl Surf Sci 366: 112–119, DOI: 10.1016/j.apsusc.2016.01.060

  • Geldermann J, Kolbe LM, Krause A, Mai C, Militz H, Osburg VS, Schöbel A, Schumann M, Toporowski W, Westphal S (2016) Improved resource efficiency and cascading utilisation of renewable materials. In: J Clean Prod 110: 1-8, DOI: 10.1016/j.jclepro.2015.09.092

  • Gholamiyan H, Tarmian A, Ranjbar Z, Abdulkhani A, Azadfallah M, Mai C (2016) Silane nanofilm formation by sol-gel processes for promoting adhesion of waterborne and solvent-borne coatings to wood surface. In: Holzforschung 70 (5): 429–437, DOI: 10.1515/hf-2015-0072

  • Himmel S, Mai C (2016) Water vapour sorption of wood modified by acetylation and formalisation – analysed by a sorption kinetics model and thermodynamic considerations. In: Holzforschung 70 (3): 203–213, DOI: 10.1515/hf-2015-0015

  • Hosseinpourpia R, Mai C (2016) Mode of action of brown rot decay resistance in phenol-formaldehyde-modified wood: resistance to Fenton’s reagent. In: Holzforschung 70 (3): 253–259, DOI: 10.1515/hf-2015-0045

  • Hosseinpourpia R, Mai C (2016) Mode of action of brown rot decay resistance of acetylated wood: resistance to Fenton’s reagent. In: Wood Sci Technol 50 (2): 413–426, DOI: 10.1007/s00226-015-0790-0

  • Hosseinpourpia R, Mai C (2016) Mode of action of brown rot decay resistance of thermally modified wood: resistance to Fenton’s reagent. In: Holzforschung 70 (7): 691–697, DOI: 10.1515/hf-2015-0141

  • Hünnekens B, Peters F, Avramidis G, Krause A, Militz H, Viöl W (2016) Plasma treatment of wood–polymer composites: A comparison of three different discharge types and their effect on surface properties. In: J Appl Polym Sci 133 (18): 43376, DOI: 10.1002/app.43376

  • Kielmann BC, Mai C (2016) Application and artificial weathering performance of translucent coatings on resin-treated and dye-stained beech-wood. In: Prog Org Coat 95: 54-63, DOI: 10.1016/j.porgcoat.2016.02.019

  • Kielmann BC, Mai C (2016) Natural weathering performance and the effect of light stabilizers in water-based coating formulations on resin-modified and dye-stained beech-wood. In: J Coat Technol Res 13: 1065-1074, DOI: 10.1007/s11998-016-9818-0

  • Kielmann BC, Militz H, Mai C (2016) The effect of combined melamine resin coloring agent modification on water related properties of beech wood. In: Wood Res-Slovakia 61 (1): 1-12

  • Koddenberg T (2016) Book Review - Handbook of Wood Chemistry and Wood Composites. In: J Clean Prod 110: 193, DOI: 10.1016/j.jclepro.2015.07.070

  • Plinke B, Benthien JT, Krause A, Krause KC, Schirp A, Teuber L (2016) Optische Größenvermessung von Holzpartikeln für die WPC-Herstellung. In: Holztechnologie 57 (4): 43-50

  • Sharapov E, Mahnert KC, Militz H (2016) Residual strength of thermally modified Scots pine after fatigue testing in flexure. In: Eur J Wood Wood Prod 74 (6): 875-884, DOI: 10.1007/s00107-016-1082-6

  • Teuber L (2016) Industrial application of natural fibres: a book review. In: J Clean Prod 110: 191, DOI: 10.1016/j.jclepro.2015.05.089

  • Teuber L, Militz H, Krause A (2016) Dynamic particle analysis for the evaluation of particle degradation during compounding of wood plastic composites. In: Compos Part A-Appl S 84: 464-471, DOI: 10.1016/j.compositesa.2016.02.028

  • Teuber L, Militz H, Krause A (2016) Processing of wood plastic composites: The influence of feeding method and polymer melt flow rate on particle degradation. In: J Appl Polym Sci 133 (13): 1-9, DOI: 10.1002/app.43231

  • Teuber L, Osburg VS, Toporowski W, Militz H, Krause A (2016) Wood polymer composites and their contribution to cascading utilisation. In: J Clean Prod 110: 9-15, DOI: 10.1016/j.jclepro.2015.04.009

  • Wascher R, Avramidis G, Neubauer A, Seifert C, Militz H, Viöl W (2016) Entwicklung von Vorbehandlungsmethoden für Holz und Holzwerkstoffe auf Basis einer dielektrisch behinderten Gasentladung unter Atmosphärendruck. In: Holztechnologie 57 (2): 12-17

  • Wöhler-Geske A, Moschner CR, Gellerich A, Militz H, Greef JM, Hartung E (2016) Provenances and properties of thatching reed (Phragmites australis). In: Landbauforschung-Ger 66 (1): 1-10, DOI: 10.3220/LBF1457686750000

  • Wöhler-Geske A, Moschner CR, Gellerich A, Militz H, Greef JM, Hartung E (2016) Yield, fermentation kinetics and the role of quality properties of thatching reed (Phragmites australis) during discontinuous anaerobic fermentation. In: Ind Crop Prod 83: 701–709, DOI: 10.1016/j.indcrop.2015.12.041

  • Xiao Z, Xu J, Mai C, Militz H, Wang Q, Xie Y (2016) Combustion behavior of Scots pine (Pinus sylvestris L.) sapwood treated with a dispersion of aluminum oxychloride-modified silica. In: Holzforschung 70 (12): 1165–1173, DOI: 10.1515/hf-2016-0062

  • Xie Y, Xu J, Militz H, Wang F, Wang Q, Mai C, Xiao Z (2016) Thermo-oxidative decomposition and combustion behavior of Scots pine (Pinus sylvestris L.) sapwood modified with phenol- and melamine-formaldehyde resins. In: Wood Sci Technol 50: 1125–1143, DOI: 10.1007/s00226-016-0857-6