{"id":3918,"date":"2024-08-11T12:58:52","date_gmt":"2024-08-11T12:58:52","guid":{"rendered":"https:\/\/blogs.napier.ac.uk\/cwst\/?p=3918"},"modified":"2024-10-21T14:06:03","modified_gmt":"2024-10-21T14:06:03","slug":"wse2024-papers","status":"publish","type":"post","link":"https:\/\/blogs.napier.ac.uk\/cwst\/wse2024-papers\/","title":{"rendered":"WSE2024 papers"},"content":{"rendered":"\n<p class=\"wp-block-paragraph\">We now have the final programme for the <a href=\"https:\/\/blogs.napier.ac.uk\/cwst\/wse2024\/\">WSE2024 conference in October<\/a>. <\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><strong>You can read these papers on the <a href=\"https:\/\/wsenetwork.org\/?sfid=362&amp;_sfm_Year=2024\">network website<\/a> (after first making a free account). <\/strong>Delegates can find the book of short abstracts is on the <a href=\"https:\/\/open.napier.ac.uk\/course\/view.php?id=44\">conference Moodle<\/a>. You might also be interested in the <a href=\"https:\/\/blogs.napier.ac.uk\/cwst\/walking-woods\/\">DIY technical tour (a self-guided audio walking tour)<\/a>.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">We have 118 delegates from 53 organisations across 17 countries. About 1\/5th of the delegates are early career researchers (ECRs) and about 2\/5ths are students (mostly doctoral researchers). Authors of papers cover 77 organisations and a wide geographical range &#8211; but mostly (of course) Northern Europe.<\/p>\n\n\n\n<figure class=\"wp-block-image size-full\"><img loading=\"lazy\" decoding=\"async\" width=\"2948\" height=\"990\" src=\"https:\/\/blogs.napier.ac.uk\/cwst\/wp-content\/uploads\/sites\/23\/2024\/08\/WSE2024-map.png\" alt=\"\" class=\"wp-image-4105\" \/><\/figure>\n\n\n\n<p class=\"wp-block-paragraph\">Here is the list of papers (updated 18.10.2024):<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Day 1<\/h2>\n\n\n\n<h3 class=\"wp-block-heading\">Session 1: Trees and Wood Components<\/h3>\n\n\n\n<p class=\"wp-block-paragraph\">1.1 <strong>&#8216;A seasonal timeline of Sitka spruce tree growth&#8217;<\/strong> by Steven Adams<br>1.2 <strong>&#8216;Dendromechanics \u2013 Considering mechanical properties of wood as a function of wood growth over time&#8217;<\/strong> by Tobias Bender, Jens Schr\u00f6der, Alexander Pfriem, Linnea Hesse<br>1.3 <strong>&#8216;Development of the external appearance of spruce trees as a result of a fatal bark beetle infestation&#8217;<\/strong> by Jan-Frederik Trautwein, Holger Militz, Laurenz, Rudolf Rohde<br>1.4 <strong>&#8216;Silver birch and black alder wood properties of different genetic families&#8217;<\/strong> by Benas \u0160ilinskas, Marius Aleinikovas, Lina Beniu\u0161ien\u0117, Mindaugas \u0160k\u0117ma<br>1.5<strong> &#8216;Potential of hydrothermal conversion liquids from Scots pine needles for wood treatment&#8217; <\/strong>by Aitor Barbero-L\u00f3pez, Wen Jiang, Antti Haapala, Laura Tomppo<br>1.6<strong> &#8216;Bioprospecting <em>Pterocarpus santalinus<\/em> bark for multifaceted application&#8217;<\/strong> by Souvik Ray, Rakesh Kumar, Reza Hosseinpourpia<br>1.7 <strong>&#8216;Hydrophobic cellulose-based sorbents for oil\/water separation&#8217;<\/strong> by Karolina Tomkowiak, Bart\u0142omiej Mazela, Zuzanna Szubert, Waldemar Perdoch<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Session 2: Wood-Water-Interaction<\/h3>\n\n\n\n<p class=\"wp-block-paragraph\">2.1 <strong>&#8216;Are we there yet? What about now? How to balance data quality and impatience in automated sorption measurements&#8217;<\/strong> by Emil Thybring, Samuel Zelinka, Samuel Glass, Natalia Farkas, Maria Fredriksson<br>2.2<strong> &#8216;Challenges in measuring the water vapour adsorption of wood using long-wavelength infrared thermal imaging&#8217;<\/strong> by Mikko Valkonen, Muhammad Awais, Lauri Rautkari<br>2.3 <strong>&#8216;Water imbibition in wood studied by time-resolved X-ray scattering&#8217;<\/strong> by Patrik Ahvenainen, Aleksi Zitting, Enriqueta Noriega Benitez, Ville Liljestr\u00f6m, Ryan Trevorah, Paavo Penttil\u00e4<br>2.4 <strong>&#8216;Thermodynamic modelling of water vapor sorption in wood: A semi-empirical approach&#8217;<\/strong> by Mark A. Dietenberger, Samuel V. Glass, Charles R. Boardman<br>2.5 <strong>&#8216;Anisotropic modelling of moisture transfer in CLT and a novel performance criterion for CLT end-grain moisture safety&#8217;<\/strong> by Kristo Kalbe, Targo Kalamees<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Session 3: Wood Properties<\/h3>\n\n\n\n<p class=\"wp-block-paragraph\">3.1 <strong>&#8216;Cleaving white oak (<em>Quercus petraea<\/em> &amp; <em>Q. robur<\/em>) for ship-boards used in reconstruction of Viking ships in Scandinavia&#8217;<\/strong> by Elias Garvik, Anders Q. Nyrud, Svein Solberg<br>3.2 <strong>&#8216;Bigger is not always better \u2013 the bending strength of 2-inch vs. 2-centimeter specimens&#8217;<\/strong> by Marlene Cramer, Luis Hidalgo Lomba<br>3.3<strong> &#8216;Mechanical properties of aspen wood of structural dimensions&#8217;<\/strong> by Barbora Herdov\u00e1, Rastislav Laga\u0148a<br>3.4 <strong>&#8216;Characterization by vibrational analysis of the elastic properties of wood samples in their natural diversity&#8217;<\/strong> by Alaa Al Fay, Olivier Arnould, St\u00e9phane Corn, Patrick Langbour, Delphine Jullien<br>3.5 <strong>&#8216;Nordmann and noble fir &#8211; determination of elastomechanical properties by non-destructive and destructive testing&#8217;<\/strong> by Martin Hackel, Katja Fruehwald-Koenig, Noah Burghaus, Felix Leonard Stracke<br>3.6 <strong>&#8216;Compressive behaviour of birch veneer: development of a novel testing method&#8217;<\/strong> by Robert Sn\u00e5rbacka, Steven Collins, Lauri Rautkari<br>3.7 <strong>&#8216;How is the colour change of wood assessed &#8211; as a function of time or as a function of radiation dose?&#8217; <\/strong>by Claudia Lenz, Paul Gollee, Alexander Pfriem<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Session 4: Products and Processes<\/h3>\n\n\n\n<p class=\"wp-block-paragraph\">4.1<strong> &#8216;Enhancing vibration control to expand timber floor applications in future wood engineering&#8217;<\/strong> by Haoyu Huang, Zeyu Deng<br>4.2 <strong>&#8216;An innovative timber connection system with the combination of indoor adhesive application and on-site adhesive-free assembly: a preliminary experimental investigation&#8217;<\/strong> by Tianxiang Wang, Yue Wang, Mattia Debertolis, Roberto Crocetti, Magnus W\u00e5linder<br>4.3 <strong>&#8216;Strength determination of birch wood finger jointed with conventional and newly developed finger joint profiles&#8217;<\/strong> by Hannes Stolze, Holger Militz<br>4.4 <strong>&#8216;Construction panels made with pre-stressed wave layered timber&#8217;<\/strong> by Steven Collins, Lauri Rautkari<br>4.5 <strong>&#8216;Exploring the performance of CLT external walls enhanced with wood-fibre-based ETICS: preliminary field measurement insights&#8217;<\/strong> by Villu Kukk, Targo Kalamees, Jaan Kers<br>4.6 <strong>&#8216;UK hardwood fibre characterisation for thermal insulation&#8217;<\/strong> by Paola Seminara, Julio Bros-Williamson, Andrew Livingstone, Robert Hairstans<br>4.7 <strong>&#8216;X-ray scattering analysis of spruce aided by machine learning&#8217;<\/strong> by Enriqueta Noriega Benitez, Mikko M\u00e4kel\u00e4, Patrik Ahvenainen, Matthias Stosiek, Patrick Rinke, Paavo Penttil\u00e4<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Day 2<\/h2>\n\n\n\n<h3 class=\"wp-block-heading\">Session 5: Adhesives<\/h3>\n\n\n\n<p class=\"wp-block-paragraph\">5.1 <strong>&#8216;Isothermal strength development of clover grass protein adhesives&#8217;<\/strong> by Julian Christ, Mette L\u00fcbeck, Christopher G. Hunt, Anti Rohumaa, Anand Ramesh Sanadi<br>5.2 <strong>&#8216;Multiscale wood bonding enabled by cellulose-dissolving ionic liquid&#8217;<\/strong> by Shiying Zhang, Shennan Wang, Halvar Meinhard, Paavo Penttil\u00e4, Steven Collins, Lauri Rautkari<br>5.3 <strong>&#8216;Formaldehyde-free modified starch binder for innovative thermal insulation panels&#8217;<\/strong> by Waldemar Perdoch, Odunayo James Rotowa<br>5.4 <strong>&#8216;Distillation of lignin cleavage products to improve their suitability to substitute phenol in phenol-formaldehyde resins for wood modification&#8217;<\/strong> by Jan-Oliver Haase, Johannes Karth\u00e4user, Holm Fraundorf, Holger Militz<br>5.5 <strong>&#8216;Algabond: Nanocellulose-reinforced algae-based adhesive for wood composite development&#8217;<\/strong> by Stephen O. Amiandamhen, Ralf Rautenberger<br>5.6 <strong>&#8216;How flexible polyurethane adhesive bond properties change over time&#8217; <\/strong>by Jaka Ga\u0161per Pe\u010dnik, Andreja Pondelak, Martin Capuder, Boris Azinovi\u0107, Klaudia \u015aliwa-Wieczorek, Arkadiusz Kwiecie\u0144, Matthew Schwarzkopf<br>5.7 <strong>&#8216;Back in Black \u2013 AC\/DC electrical measurements of adhesive wood bondlines modified with carbon fillers&#8217;<\/strong> by Sarah Suarez, Maja Vasiljevic, Johannes Konnerth, Martin Riegler Anita Tran<br>5.8 <strong>&#8216;Smart wood: Investigating electrical properties for sustainable construction&#8217;<\/strong> by Maja Vasiljevic, Sarah Suarez, Barbara Hinterstoisser, Emil E Thybring, Martin Riegler, Gerhard Sinn, Helga Lichtenegger<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Session 6: Circular Economy<\/h3>\n\n\n\n<p class=\"wp-block-paragraph\">6.1<strong> &#8216;Reclaimed and rebuilt: Wood\u2019s role in tomorrow&#8217;s buildings&#8217;<\/strong> by Martha Godina, Nilmini Dissanayake, Antiopi Koronaki, Michael H Ramage, Darshil U Shah<br>6.2 <strong>&#8216;Assessment of secondary lumber for structural application through visual grading and mechanical testing&#8217;<\/strong> by Florian B\u00f6hm, Sajjad Hossan Jubair, Andriy Kovryga, Michael Risse<br>6.3<strong> &#8216;Developing a non-destructive procedure for assessing reclaimed timber&#8217; <\/strong>by Serkan Karatosun, Frederikke Paulin Petersen, Lisbeth M. Ottosen<br>6.4 <strong>&#8216;Non-destructive assessment of reclaimed timber: A pilot study&#8217; <\/strong>by Frederikke Paulin Petersen, Serkan Karatosun, Lisbeth M. Ottosen<br>6.5<strong> &#8216;CascadeUp: Extending the life of reclaimed solid wood through reuse in the manufacture of mass timber products&#8217; <\/strong>by Jonas Breidenbach, Colin M. Rose, Patrick Quinn, Julia A. Stegemann<br>6.6<strong> &#8216;Use of hyperspectral imaging to identify 3 common, yet optically similar, wood preservatives&#8217;<\/strong> by Jaka Levani\u010d, Bo\u0161tjan Lesar, Miha Humar<br>6.7 <strong>&#8216;Development and characterization of bioblocks: A sustainable woodbased composite utilizing MDF residues, citric acid and polyols&#8217;<\/strong> by Peer Thorben Lewandowski, Erik Larn\u00f8y, Holger Militz<br>6.8<strong> &#8216;Circular economy business ecosystem: from barriers to solutions in wood construction in Finland&#8217;<\/strong> by Md. Rayhanur Rahman, Angelina Korsunova, Anastasija Dmitrijeva, Anne Toppinen<br>6.9<strong> &#8216;Eco-friendly panels repurposing sawdust and textile waste&#8217;<\/strong> by Papiya Bhowmik, Ravi Kant, Harpreet Singh, Reza Hosseinpourpia<\/p>\n\n\n\n<h3 class=\"wp-block-heading\">Session 7: Durability &amp; LCA &amp; Education<\/h3>\n\n\n\n<p class=\"wp-block-paragraph\">7.1<strong> &#8216;Resistance of modified beech (Fagus sylvatica L.) LVL against biodegradation in outdoor soil contact&#8217; <\/strong>by Maik Slabohm, Holger Militz<br>7.2<strong> &#8216;Methodology for studying fungal degradation under precisely controlled moisture conditions&#8217; <\/strong>by Maria Fredriksson, Gry Alfredsen<br>7.3<strong> &#8216;Advancing wood durability: Exploring bio-based polyols and citric acid treatments&#8217; <\/strong>by Ad\u00e8le Chabert, Holger Militz<br>7.4 <strong>&#8216;A timeless classic: Wood-water interaction after modification with phenol urea formaldehyde resin&#8217;<\/strong> by Carlo Kupfernagel, Morwenna J Spear, Graham A Ormondroyd<br>7.5 <strong>&#8216;The use of timber in the built environment \u2013 is it beneficial?&#8217;<\/strong> by Callum Hill, Mark Hughes<br>7.6 <strong>&#8216;How long is \u2018long enough\u2019? Carbon storage and wood products&#8217;<\/strong> by Morwenna Spear<br>7.7 <strong>&#8216;Preparing for the future: Educating modern construction professionals&#8217;<\/strong> by Steve Bertasso, Sarah Jayne Hitt, Benjamin Shirley<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Poster papers<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">P01 see 3.1<br>P02 <strong>&#8216;The timber-time continuum: VOC emission, wood, and the indoor environment&#8217; <\/strong>by Ingrid Bakke<br>0.03 <strong>&#8216;Linseed oil-based coating for retarding mould growth on wood&#8217;<\/strong> by Dace Cirule, Edgars Kuka, Errj Sansonetti, Ingeborga Andersone, Bruno Andersons<br>P04 <strong>&#8216;Exploring the interaction between water and fire retardants in Scots pine&#8217;<\/strong> by Maja Katharina Fjalland<br>P05 <strong>&#8216;New ceiling material, same fire problems?: Ignition and flashover of reduced scale compartments with timber ceilings&#8217;<\/strong> by James Greer, Sergio Caponi, Rory M. Hadden, Angus Law<br>P06 <strong>&#8216;Enhancing biomass valorization through advanced analytical techniques&#8217;<\/strong> by Wen Jiang, Aitor Barbero-L\u00f3pez, Laura Tomppo<br>P07 <strong>&#8216;Advanced peeling strategies for thin aspen veneer production&#8217;<\/strong> by Heikko Kallakas, Catherine Kilumets, Kaur Tootsi, Jaan Kers<br>P08 <strong>&#8216;The pH value change of wood during the period of use in the chicken barn&#8217;<\/strong> by Anja Kampe, Alexander Pfriem<br>P09 <strong>&#8216;Triboelectrification in woodworking&#8217;<\/strong> by Lena M Leiter, Julie Cool, Rupert Wimmer<br>P10 <strong>&#8216;Utilization of <em>Pterocarpus santalinus<\/em> bark extracts for improving the degradation resilience&#8217;<\/strong> by Souvik Ray, Rakesh Kumar, Reza Hosseinpourpia<br>P11 <strong>&#8216;Adhesive wet strength of grass protein glues using glyoxal as a crosslinker&#8217;<\/strong> by Anand Ramesh Sanadi, Mette L\u00fcbeck, Christopher G. Hunt, Anti Rohumaa, Julian Christ<br>P12 <strong>&#8216;Impact of drying and pretreatment methods on the wood-water interaction in green Norway spruce&#8217;<\/strong> by Shennan Wang, Mikko Valkonen, Tainise V. Lourencon, Kristiina Lillqvist, Lauri Rautkari<br>P13 <strong>&#8216;Small scale fire testing to predict the class of chemical-modified wood&#8217; <\/strong>by Muting Wu, Christoph Hoette, Holger Militz<br>P14<strong> &#8216;Energy saving potential of cross-laminated timber buildings in the United Kingdom&#8217;<\/strong> by Jiaqi Yu, Kening Guo<br>P15 <strong>&#8216;Weathering performance of mineralized fir after 16 months of outdoor exposure&#8217;<\/strong> by Tom Franke, Thomas Volkmer<br>P16 <strong>&#8216;Towards a new method for determining the above-ground durability of wood \u2013 A Round Robin using the Bundle approach&#8217;<\/strong> by Christian Brischke, Gry Alfredsen, Maja Bleckmann, K\u00e9vin Candelier, Andreas W Christof, Lukas Emmerich, Miha Humar, Marie-France Th\u00e9venon<br>P17<strong> &#8216;A three-country survey of personality traits and perception of fungal decay in wooden cladding&#8217;<\/strong> by Geir W. Gustavsen, Gry Alfredsen, Philip B. van Niekerk, Jonas Niklewski, Christian Brischke<br>P18<strong> &#8216;Next Generation Wood Products&#8217;<\/strong> by Colm C Faulkner, J Moore, M Pallikkandiyil, J De Micco, SS Lal, RP Babu, MA Morris<br>P19 <strong>&#8216;WoodStock \u2013 a new Horizon Europe project targeting climate smart use of wood in building constructions&#8217;<\/strong> by Jan Van den Bulcke, Liselotte De Ligne, Marijke Steeman, Nathan Van den Bossche, Joris Van Acker, Stijn Brancart, Andreja Kutnar, Mark Huges, Myriame Ali Oualla, Phillippe Galimard, Daniell M\u00fcller, Ina Van Hoye, Patrick McGetrick, Uwe Kies, Oliver Jancke, Bartosz Walczak, Andrew Norton, Callum Hill, Nhat Str\u00f8m-Andersen, Gry Alfredsen, Kristina Bringedal Gedde, Lampros Lamprinakis, Lone Ross<br>P20 <strong>&#8216;Hyperspectral mapping of fire-retardant effectiveness in wood&#8217;<\/strong> by Muhammad Awais, Michael Altgen, Lone Ross, Thomas Thiis, Arnkell Petersen, Ingunn Burud<br>P21 <strong>&#8216;Application of the United Nations Framework Classification for Resources to classify anthropogenic material recovery projects: Timber from construction and demolition waste&#8217;<\/strong> by Jonas Breidenbach, Colin M. Rose, Julia A. Stegemann<br>P22 <strong>&#8216;Utilization of cascade-processed willow fibre residues in insulation panels&#8217; <\/strong>by Elina HH Kettunen, Jani Lehmonen, Jenna Frantsi, Kalle Kaipanen, Karita Kinnunen-Raudaskoski, Kristiina R L\u00e5ng, Petri O Kilpel\u00e4inen Risto I Korpinen, Tuula M Jyske<br>P23 <strong>&#8216;Fire and weatherability tests on Ciol wood to reach class B&#8217; <\/strong>by Manon Diraison, Erik Larn\u00f8y<br>P24 <strong>&#8216;Dowel embedment behaviour for emerging wood products&#8217; <\/strong>by Tianxiao Yin, Zhiqiang Wang, Thomas Reynolds<br>P25<strong> &#8216;Opportunities for industrial symbiosis in the wood industry&#8217;<\/strong> by Vaida Jonaitien\u0117, Kazimieras Juz\u0117nas<br>P26<strong> &#8216;Hygroexpansion of Norway spruce branch wood investigated by microscopic computed tomography&#8217;<\/strong> by Boris Poupet, Henrik Lycksam, Fredrik Forsberg, Marie Hartwig-Nair, Sara Florisson<br>P27 <strong>&#8216;Sustainable wood utilization: Insights from the CircWood project&#8217;<\/strong> by Roja Modaresi<br>P28 <strong>&#8216;The effect of hardwood veneer densification on plywood density, surface hardness, and screw withdrawal capacity&#8217;<\/strong> by Tolgay Akkurt, Heikko Kallakas, Alexander Scharf, Fred M\u00fchls, Anti Rohumaa, Jaan Kers<br>P29 <strong>&#8216;Mechanical performance of basalt based mineral fibre reinforced plywood&#8217; <\/strong>by Tanuj Kattamanchi, Heikko Kallakas, Joonas Hakonen, Jaan Kersand Rynno Lohmus<br>P30 <strong>&#8216;Effect of controlled drying on the properties of cellulose ester films synthesised in novel ionic liquid [mTBNH][Oac]&#8217;<\/strong> by Tanuj Kattamanchi, H.Kallakas, E.Tarasova, P.Alao, R.Lohmus, A.Mere, T.Kaljuvee, A.Krumme, J.Kers<br>P31 <strong>&#8216;Wood delignification as a pretreatment for green adhesive improvement&#8217; <\/strong>by Jack Moore, Michael Morris<br>P32 <strong>&#8216;Quantifying hygroscopic deformation in lignocellulosic tissues: A DVC tool comparison&#8217; <\/strong>by Fabian Scheckenbach, Kim Ulrich, Linnea Hesse<br>P33 see 6.9<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Author organisations<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">Aalborg University<br>Aalto University<br>AMBER Research Centre<br>Bangor University<br>Bern University of Applied Sciences<br>BiomassProtein Aps<br>CIRAD<br>Cracow University of Technology<br>Danish Technological Institute (DTI)<br>DBI Fire and Security<br>Eberswalde University for Sustainable Development<br>Edinburgh Napier University<br>European Confederation of Woodworking Industries<br>Fiberwood Oy<br>Georg-August University G\u00f6ttingen<br>Ghent University<br>Indian Institute of Technology Ropar<br>InnoRenew CoE<br>Innovawood<br>Institute of Wood Science and Technology<br>Institute of Wood Technology Dresden (IHD)<br>JCH Industrial Ecology Ltd<br>Kaunas University of Technology (KTU)<br>KTH Royal Institute of Technology<br>Latvian State Institute of Wood Chemistry<br>Linnaeus University<br>Lithuania research centre for agriculture and forestry (LAMMC)<br>Lodz University of Technology<br>Lule\u00e5 University of Technology<br>Lund University<br>MPA Eberswalde<br>Nanjing Forestry University<br>Nanjing Forestry University<br>Natural Resources Institute Finland (Luke)<br>New Model Institute of Technology and Engineering (NMITE)<br>Newcastle University<br>Norwegian Institute of Bioeconomy Research (NIBIO)<br>Norwegian Institute of Wood Technology (NTI)<br>Norwegian University of Life Sciences (NMBU)<br>Norwegian University of Science and Technology (NTNU)<br>OWL University of Applied Sciences and Arts<br>Pozna\u0144 University of Life Sciences<br>Rosenheim Technical University of Applied Sciences<br>Satakunta University of Applied Sciences<br>Slovenian National Building and Civil Engineering Institute<br>South-Eastern Finland University of Applied Sciences<br>Tallinn University of Technology<br>Technical University Delft<br>Technical University in Zvolen<br>Technical University of Denmark<br>Technical University of Munich<br>Th\u00fcnen Institute of Wood Research<br>Trinity College Dublin<br>University College London (UCL)<br>University of Agriculture in Krak\u00f3w<br>University of Bordeaux<br>University of British Columbia<br>University of Cambridge<br>University of Copenhagen<br>University of Eastern Finland<br>University of Edinburgh<br>University of Freiburg<br>University of Galway<br>University of Hamburg<br>University of Helsinki<br>University of Ljubljana<br>University of Montpellier<br>University of Natural Resources and Life Sciences Vienna (BOKU)<br>University of Primorska<br>University of Sheffield<br>University of Tartu<br>Uppsala University<br>USDA Forest Products Laboratory<br>VTT Technical Research Centre of Finland<br>Wald und Holz NRW<br>WETA BV<br>Wood K plus<\/p>\n","protected":false},"excerpt":{"rendered":"<div class=\"mh-excerpt\"><p>We now have the final programme for the WSE2024 conference in October. You can read these papers on the network website (after first making a <a class=\"mh-excerpt-more\" href=\"https:\/\/blogs.napier.ac.uk\/cwst\/wse2024-papers\/\" title=\"WSE2024 papers\">[&#8230;]<\/a><\/p>\n<\/div>","protected":false},"author":57,"featured_media":3919,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_crdt_document":"","jetpack_post_was_ever_published":false,"footnotes":""},"categories":[7,6],"tags":[25],"class_list":["post-3918","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-events","category-research","tag-conference"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.3 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>WSE2024 papers - Centre for Wood Science &amp; Technology<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/blogs.napier.ac.uk\/cwst\/wse2024-papers\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"WSE2024 papers - Centre for Wood Science &amp; Technology\" \/>\n<meta property=\"og:description\" content=\"We now have the final programme for the WSE2024 conference in October. 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