• Lietuvių
    • English
  • Lietuvių 
    • Lietuvių
    • English
  • Prisijungti
Peržiūrėti įrašą 
  •   DSpace pagrindinis
  • Mokslinės publikacijos (PDB) / Scientific publications (PDB)
  • Moksliniai ir apžvalginiai straipsniai / Research and Review Articles
  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources
  • Peržiūrėti įrašą
  •   DSpace pagrindinis
  • Mokslinės publikacijos (PDB) / Scientific publications (PDB)
  • Moksliniai ir apžvalginiai straipsniai / Research and Review Articles
  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources
  • Peržiūrėti įrašą
JavaScript is disabled for your browser. Some features of this site may not work without it.

Sapropel as a binding material for wood processing waste in the development of thermal insulation biocomposite

Thumbnail
Peržiūrėti/Atidaryti
materials-16-02230 sapropelis.pdf (5.042Mb)
Data
2023
Autorius
Vėjelis, Sigitas
Karimova, Meruert
Kuatbayeva, Tokzhan
Kairytė, Agnė
Šeputytė-Jucikė, Jurga
Metaduomenys
Rodyti detalų aprašą
Santrauka
When developing new innovative building materials, their performance characteristics as well as their environmental friendliness are important. It is difficult to produce a fully ecological material for building envelopes, because there is a lack of ecological binding materials on the market, good binding materials are very expensive, and cheaper ones have poorer adhesive properties and performance characteristics. In this work, natural organic sapropel was used as an ecological binder. Before use, an organic sapropel was additionally mechanically activated. Its activation efficiency was evaluated on the basis of consistency and tensile strength. Sapropel activation increased its consistency from 112 to 168 mm and its tensile strength from 466 to 958 kPa. Wood processing waste was used as a filler for the thermal insulation biocomposite. Additionally, the wood waste was chopped to regulate the density and main performance properties of the biocomposite. The density of the biocomposite was also regulated using different amounts of sapropel and the degree of compaction of the composite mixture. In this work, the influence of the amount of sapropel, the level of compression of the biocomposite mixture, and the size of the wood waste particles on the thermal conductivity and compressive stress of the biocomposite was analyzed. It was found that the compression level had the greatest influence on both the compressive stress and thermal conductivity, up to 12 times and 43.3%, respectively.
Paskelbimo data (metai)
2023
URI
https://etalpykla.vilniustech.lt/handle/123456789/115432
Kolekcijos
  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources [7946]

 

 

Naršyti

Visame DSpaceRinkiniai ir kolekcijosPagal išleidimo datąAutoriaiAntraštėsTemos / Reikšminiai žodžiai InstitucijaFakultetasKatedra / institutasTipasŠaltinisLeidėjasTipas (PDB/ETD)Mokslo sritisStudijų kryptisVILNIUS TECH mokslinių tyrimų prioritetinės kryptys ir tematikosLietuvos sumanios specializacijosŠi kolekcijaPagal išleidimo datąAutoriaiAntraštėsTemos / Reikšminiai žodžiai InstitucijaFakultetasKatedra / institutasTipasŠaltinisLeidėjasTipas (PDB/ETD)Mokslo sritisStudijų kryptisVILNIUS TECH mokslinių tyrimų prioritetinės kryptys ir tematikosLietuvos sumanios specializacijos

Asmeninė paskyra

PrisijungtiRegistruotis