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Advanced Eco-friendly Wood-Based Composites

Advanced Eco-friendly Wood-Based Composites

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In collaboration with the MDPI publishing house, we are pleased to introduce the reader to our new project, a Special Issue entitled “Advanced Eco-friendly Wood-Based Composites”. This Special Issue provides an opportunity to investigate advanced eco-friendly wood-based composites from a broader perspective. The coronavirus pandemic and shutdown measures employed to contain it, as well as the ongoing war in Ukraine, have influenced and decelerated the world economy and adversely impacted research activities on most levels in all countries. Surprisingly, researchers in the field of wood-based composites have continued to make progress, which is also described in this Special Issue.

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Keywords

  • acid-base buffer
  • alternative raw material
  • angle of repose
  • applied pressure
  • artificial weathering
  • bending strength
  • bio waste
  • bio-based adhesives
  • bio-polyurethane resin
  • biopolymer
  • black chokeberry
  • carbon storage
  • chemical and physical properties
  • color change
  • composite
  • composites
  • corner joints
  • dust filtration
  • eco-friendly wood
  • extract
  • fiber
  • filler
  • formaldehyde content
  • fractionated lignin
  • Hemp
  • History of engineering & technology
  • impregnation
  • lattice beams
  • lightweight panels
  • long-term filtration
  • Machine learning
  • magnesium lignosulfonate
  • Materials science
  • maturation of filter bags
  • Mechanical engineering & materials
  • Mechanical properties
  • moisture content
  • n/a
  • particleboard
  • particleboards
  • photodegradation
  • physical and mechanical properties
  • physical properties
  • polymer
  • polyurethane foams
  • poured bulk density
  • Properties
  • ramie fiber
  • raspberry
  • recycling
  • resin content
  • separation efficiency
  • slippery angle of repose
  • sodium lignosulfonate
  • stiffness
  • Structure
  • tapped bulk density
  • Technology, engineering, agriculture
  • Technology: general issues
  • Thermal stability
  • Ultraviolet radiation
  • upcycling
  • urea formaldehyde resin
  • Walnut
  • waste cardboard
  • Wood
  • wood characterization
  • wood dust
  • wood particles
  • wood residues
  • wood-based composites

Links

DOI: 10.3390/books978-3-0365-6408-1

Editions

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