Natural fiber-based materials offer sustainable applications, but are usually incinerated. The project investigates recycling barriers and develops AI-supported models for circular value creation.
Development and evaluation of suitable surface textures to enhance the sound absorption of clay-based building products for rooms with specific acoustic requirements
ForPeat researches the sustainable management of peatland forests through rewetting, AI-supported monitoring and climate protection. The project develops practical solutions for biodiversity, CO₂ storage and EU certification.
The energy input when cutting wood is influenced by cutting force and cutting edge wear. The aim is to achieve efficient circular sawing technology to reduce friction and adhesive wear.
The DUET project aims to develop utilization scenarios for by-products of solid wood processing and used wood in high-quality wall and ceiling elements.
The aim of the WeiTaRi project is to determine the potential for economically and ecologically long-term material use of silver fir wood with bark damage.
The Interreg project BAUHALPS promotes sustainable building in the Alpine region through Innovation, Culture and NEB values to develop climate-friendly standards for future construction.
Rosenheim University of Applied Sciences is planning a process technology for the CO2-neutral production of semi-finished fiber products from renewable raw materials. The aim is to optimize the production chain for sustainable lightweight construction, whereby gaps to conventional reinforcing fibres are to be closed.
The “BiMeBa” project is developing a band saw blade that enables cost-effective, energy- and resource-efficient wood cutting while delivering high-quality results on various types of wood.