Publications
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« New alternatives for wood preservation based on thermal and chemical modification of wood- a review », ANNALS OF FOREST SCIENCE , vol. 73, p. 559-570, 2016.
, « Evolution of wood surface free energy after heat treatment », Polymer Degradation and Stability, vol. 92, nᵒ 4, 2007.
, « Hydroxypropyl tannin from Pinus pinaster bark as polyol source in urethane chemistry », EUROPEAN POLYMER JOURNAL , vol. 67, p. 152-165, 2015.
, « Modification of condensed tannins: from polyphenol chemistry to materials engineering », NEW JOURNAL OF CHEMISTRY , vol. 40, p. 36-49, 2016.
, « Synthesis and physicochemical properties of hydroxypropyl tannins form maritime pine bark (Pinus pinaster Ait.) », Holzforschung, vol. 68, nᵒ 4, 2014.
, « Substitution pattern elucidation of hydroxypropyl Pinus pinaster (Ait.) bark polyflavonoids derivatives by ESI(-)-MS/MS. », J. Mass Spectrometry, vol. 49, nᵒ 10, 2014.
, « Hydroxypropyl tannin derivatives from Pinus pinaster (Ait.) bark », Ind.Crops & Pro., vol. 49, 2013.
, « Polyphenolic resins prepared with maritime pine bark tannin and natural bulky-aldehydes. », Ind. Crops & Prod., vol. 62, 2014.
, « Mild hydroxypropylation of polyflavonoids obtained under pilot-plant scale », INDUSTRIAL CROPS AND PRODUCTS , vol. 87, p. 350-362, 2016.
, « Wood welded connections: Energy release rate measurement », J. Adhesion Sci. Technol., vol. 22, 2008.
, « Predicting the thermal behaviour of wood during linear welding using the finite element method », J. Adhesion Sci. Technol., vol. 22, 2008.
, « Edge and face linear vibration welding of wood panels », Holz Roh Werkstoff, vol. 65, nᵒ 1, 2007.
, « Wood welding: chemical and physical changes according to the welding time », J. Adhesion Sci.Technol., vol. 22, 2008.
, « Causes of the water resistance of welded joints of Paduk wood (Pterocarpus soyauxii, Taub.) », J.Renewable Resources, vol. 1, nᵒ 1, 2013.
, « A Calculation Method for Interconnected Timber Elements Using Wood-Wood Connections », BUILDINGS, vol. 10, 2020.
, « Experimental investigations on the load-carrying capacity of digitally produced wood-wood connections », ENGINEERING STRUCTURES , vol. 213, 2020.
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