Tagungsprogramm

Programmflyer zum Download.

 

Mittwoch, 14. Oktober 2026

17:00 Uhr Registrierung

19:30 Uhr Welcome-Party im Grand Foyer des Grand Elysée Hotels Hamburg auf Einladung unserer Aussteller/Sponsoren.

 

Donnerstag, 15. Oktober 2026

7:30 Uhr Registrierung

8:30 bis 18:00 Uhr Fachvorträge im großen Tagungssaal des Grand Elysée Hotels

 

Session I | Business Environment
8:30 - 10:20 Uhr

Moderation: Raoul Klingner und Harald Schwab (Fraunhofer WKI)

Raoul Klingner   

 

10:20 Uhr Kaffeepause

Session II | Framework Conditions
11:15 - 12:45 Uhr

Moderation: Alen Bukvic (Hywax GmbH)

 

12:45 Uhr Mittagspause

Session III | Artificial Intelligence
14:15 - 15:45 Uhr

Moderation: Dorothee Flötotto (Sauerländer Spanplatten GmbH & Co. KG)

  • Thibault Straumann
    Thibault Straumann Smartech A. Hexion Company ........................................................................ Augmenting wood-based operators with industrial AI: From data-driven support to data-driven decisions
    Thibault Straumann

    Start: 14:15
    Augmenting wood-based panel operators with industrial AI: From data-driven support to data-driven decisions

    Thibault Straumann
    Smartech A. Hexion Company

  • Kevin Gleich | Gregor Bernardy
    Kevin Gleich | Gregor Bernardy KIT Karlsruher Insitute of Technology | G. Siempelkamp GmbH & Co. KG ........................................................................ AI-based end-to-end digitalization in the wood-panel industry - from chips to finished boards
    Kevin Gleich | Gregor Bernardy

    Start: 14:45
    AI-based end-to-end digitalization in the wood-panel industry – from chips to finished boards

    Kevin Gleich
    KIT Karlsruhe Insitute of Technology

    Gregor Bernardy
    G. Siempelkamp GmbH & Co. KG


    ABSTRACT

    While the long-term vision of an AI-based process control is clear, the practical transition is frequently characterized by a lack of structured methodologies and unsystematic integration strategies. Hereby, such approaches require an end-to-end digitization of the value chain to incorporate the necessary information and implicit expert knowledge. Accordingly, the path towards this goal comprises subsystems and steps that progressively support the human operator and simultaneously enable step-by-step automation of the entire process control. In recent years, an increasing number of Artificial Intelligence (AI) approaches and methods have also been adapted for different applications in the wood-panel industry. Such an approach for a stepwise, modular AI-driven process automation in the wood-panel industry was developed following the CRISP-DM process [1] and tested as part of the champI4.0ns project (champi40ns.eu).

    [1] J. S. Saltz, ‘CRISP-DM for Data Science: Strengths, Weaknesses and Potential Next Steps’, in 2021 IEEE International Conference on Big Data (Big Data), Orlando, FL, USA: IEEE, Dec. 2021, pp. 2337–2344. doi: 10.1109/BigData52589.2021.9671634.

  • Adrian Tißen | Marius Frye
    Adrian Tißen | Marius Frye Dieffenbacher GmbH ........................................................................ Changing environmental challenges for the WBP industry: Shaping the future of drying and emission control technologies
    Adrian Tißen | Marius Frye

    Start: 15:15
    Changing environmental challenges for the WBP industry: Shaping the future of drying and emission control technologies

    Adrian Tißen | Marius Frye
    Dieffenbacher GmbH


    ABSTRACT

    Drying in the wood-based panels industry (PB, OSB, MDF) and the treatment of dryer exhaust gases are evolving due to climate change, rising energy costs, and stricter EU regulations. The European Green Deal and Directive (EU) 2024/1785 promote resource-efficient, low-emission technologies. Water scarcity and high energy prices are pushing the industry toward energy- and resource-efficient processes. In PB and OSB production, directly and indirectly heated drum dryers, closed-loop dryers, and low-temperature belt dryers are used. Direct dryers are robust but emission-intensive, while indirect dryers reduce emissions. Closed-loop systems enable heat and moisture recovery, and low-temperature belt dryers efficiently use low-calorific heat while ensuring gentle drying. In MDF production, fresh-air, two-stage, and recirculation dryers are common. Closed-loop dryers with superheated steam recover energy and water and eliminate air emissions. Future developments will require retrofits and innovative exhaust air treatment systems to balance efficiency, safety, and compliance with emission limits.

 

15:45 Uhr Kaffeepause

Session IV | Recycling
16:30 - 18:00 Uhr

Moderation: Kris Wijnendaele (European Panel Federation)

  • Mark Irle
    Mark Irle ESB École Supérieure du Bois ........................................................................ Recycling fibreboard via EcoReFibre technologies
    Mark Irle

    Start: 16:30
    Recycling fibreboard via EcoReFibre technologies

    Mark Irle
    ESB École Supérieure du Bois


    ABSTRACT

    Medium-density fibreboard (MDF) is currently manufactured almost exclusively from virgin wood fibres, while post-consumer fibreboard is largely downcycled or used for energy recovery. The Horizon Europe EcoReFibre project developed and validated technologies to close this material loop through industrial demonstrations covering the entire recycling value chain. Advanced sensor-based sorting produced high-purity fibreboard and solid wood fractions (>95%), which were processed using steam-assisted, dry-impact and modified thermo-mechanical pulping technologies. Recycled fibres and fines were successfully reintegrated into industrial products, including particleboard, MDF, HDF, insulation materials, bioblocks and Cyclic Thin Board. Industrial trials demonstrated substitution rates of up to 20% in particleboard and 25% in fibreboard without significant loss of performance. While challenges remain regarding feedstock homogeneity, pre-processing and process adaptation, the results confirm the technical feasibility of large-scale fibreboard recycling and provide a viable pathway towards circularity in the wood-based panel industry.

  • Louis Van Roy
    Louis Van Roy Unilin Technologies ........................................................................ Osiris - Breakthrough recycling technology for MDF/HDF
    Louis Van Roy

    Start: 17:00
    Osiris – Breakthrough recycling technology for MDF/HDF

    Louis Van Roy
    Unilin Technologies


    ABSTRACT

    MDF currently lacks an effective recycling pathway, limiting its contribution to a circular material use. Osiris introduces a process that enables the recovery of high-quality wood fibres from MDF waste while preserving their performance characteristics. The technology allows the reuse of different waste streams, supporting improved circularity and addressing increasing market requirements on sustainability. Moreover, Osiris contributes to reducing raw material cost (virgin wood) substantially. Validation results show that recycled fibres can replace virgin material without compromising technical properties, while also contributing to lower raw material and energy needs. Overall, Osiris provides a scalable approach to support the transition of the wood fibreboard industry towards more circular practices. Fully developed by Unilin inhouse, and operational on an industrial scale, Osiris is ready to transform the wood fiberboard industry.

  • Sarah Ritter
    Sarah Ritter Wood K plus - Kompetenzzentrum Holz GmbH ........................................................................ Recycled wood processing: Effects on wood particle and particle-board performance by novel adaptive technology
    Sarah Ritter

    Start: 17:30
    Recycled wood processing: Effects on wood particle and particleboard performance by novel adaptive technology

    Sarah Ritter
    Wood K plus - Kompetenzzentrum Holz GmbH


    ABSTRACT

    Although recovered wood has been used as a raw material in the particleboard industry for decades, producing particleboards from 100% recycled wood particles remains challenging due to heterogeneous particle geometry and reduced bonding performance.

    This study investigates a pilot-scale adaptive cutting mill as an alternative to conventional hammermilling. Recycled wood chips from an industrial particleboard production line were processed, characterized, and used to manufacture single-layer particleboards.

    The adaptive cutting mill increased suitable particle yield (97.4% vs. 86.1%) and generated particles with different morphology, resulting in higher internal bond strength (0.36 N/mm² vs. 0.23 N/mm²) without the density increase typically required for high recycled wood contents, while the modulus of rupture was slightly reduced compared to hammermilled-particle panels. The technology demonstrates potential for more resource-efficient particleboard production from recycled wood.

 

19:00 Uhr Abendempfang auf Einladung der Fa. Hywax GmbH für registrierte Teilnehmer
19:30 Uhr Begrüßungsrede

 

Freitag, 16. Oktober 2026

9:00 bis 14:15 Uhr Fachvorträge im großen Tagungssaal des Grand Elysée Hotels

Session V | Developments
9:00 - 11:00 Uhr

Moderation: Larissa Kuntz (elka-Holzwerke GmbH)

  • Thomas Walther
    Thomas Walther AFRY Management Consulting ........................................................................ Market outlook 2027 - the shift in global trade
    Thomas Walther

    Start: 9:00
    Market outlook 2027 – the shift in global trade

    Thomas Walther
    AFRY Management Consulting

  • Fabian Meinker
    Fabian Meinker Hywax GmbH ........................................................................ Synthetic nano wax dispersions - a way to meet increasingly challenging wood availabiltiy?
    Fabian Meinker

    Start: 9:30
    Synthetic nano wax dispersions – a way to meet increasingly challenging wood availabiltiy?

    Fabian Meinker
    Hywax GmbH

  • Wilke Pannbacker | Jan Weißmann
    Wilke Pannbacker | Jan Weißmann Fagus-GreCon ........................................................................ From weight per unit area distribution to edge integrity: A holistic approach to process control
    Wilke Pannbacker | Jan Weißmann

    Start: 10:00
    From weight per unit area distribution to edge integrity: A holistic approach to process control

    Wilke Pannbacker and Jan Weißmann
    Fagus-GreCon


    ABSTRACT

    Process optimization and automated control are becoming increasingly important in the wood-based panel industry. Two key inline quality parameters are weight per unit area and raw edge quality.

    Weight per unit area is measured continuously across the full mat width using an X-ray system that also detects foreign objects. The data provides information on distribution, standard deviation, and local minimum values. Combined with segmented material removal, fluctuations in weight distribution can be reduced, setpoints lowered, and sanding allowances minimized. This leads to a more stable pressing process, lower maintenance requirements, and material savings of up to 4.5% in reference applications.

    Raw edge quality is monitored through inline porosity measurement and 3D edge inspection. Density variations can indicate spreading, pressing, or sawing problems and enable early corrective action. GreCon EDGEINSPECT captures edge geometry, derives objective quality parameters, and transfers the results directly to the process control system for continuous monitoring.

  • Paul Röllig
    Paul Röllig Institut für Holztechnologie Dresden gGmbH ........................................................................ Alternative heating concepts for thick and leightweight wood-fibre insulation materials
    Paul Röllig

    Start: 10:30
    Alternative heating concepts for thick and leightweight wood-fibre insulation materials

    Paul Röllig
    Institut für Holztechnologie Dresden gGmbH


    ABSTRACT

    Conventional hot air or steam-assisted heating processes for thick and lightweight wood-fibre insulation materials are limited in the temperatures that can be achieved efficiently throughout the product. Thus, specified binders are required but leading to increased manufacturing costs. This creates a need for alternative processing approaches that enable a more effective energy input into the material without the necessity of hot air- or steam provision.

    High-frequency heating offers a promising alternative in this context, as the temperature level can be controlled more flexibly and significantly higher temperatures can be reached within the material.
    This contribution presents the investigation of a dielectric heating approach for the manufacturing of wood-fibre-based insulation materials. The study focuses on the general suitability of this technology for lightweight insulation products and examines its potential for different product concepts. The results indicate that dielectric heating can support the production of both rigid and flexible insulation materials and offers promising perspectives for the processing of thicker structures.
    The work further highlights that process behaviour is influenced by material-related and product-related parameters and therefore requires careful adaptation to the respective application. At the same time, the study contributes to further insights into the processing of high frequency technology especially for the use case of lightweight wood fibre insulation with high thickness and shows the efficiency of this certain technology.

    Overall, the results provide evidence that the dielectric heating is an efficient process to manufacture lightweight wood fibre insulation materials with various specifications. This underlines the relevance of HF technology for future application-oriented research approaches.

 

11:00 Uhr Kaffeepause mit Posterpräsentation

Session VI | Binder Systems & Raw Materials
12:00 - 14:15 Uhr

Moderation: Dirk Berthold (Fraunhofer WKI)

 

14:15 Uhr Ende der Veranstaltung und Mittagsimbiss bzw. Lunchpaket nach Wahl.

(Änderungen vorbehalten)

 

Die Vorträge werden in die Sprachen Deutsch und Englisch simultan übersetzt.

Den Tagungsteilnehmern werden die Vortragsfolien sowie die Abstracts in englischer Sprache mit den Tagungsunterlagen zur Verfügung gestellt.