Waste biomass valorisation for the development of sustainable cellulosic aerogels and their sound absorption properties

  • Isaac Benito-González
  • , Jose Cucharero
  • , Yazan Al Haj
  • , Tuomas Hänninen
  • , Tapio Lokki
  • , Marta Martinez-Sanz
  • , Amparo López-Rubio
  • , Antonio Martinez-Abad
  • , Jaana Vapaavuori

Research output: Contribution to journalArticleScientificpeer-review

Abstract

Novel and more sustainable sound absorbing materials are produced through the valorization of waste biomass sources by following circular economy principles. Cellulosic nanocrystals (CNC) were extracted from Posidonia oceanica dead leaves, spent barely grains, and kale stems using a simplified purification protocol. These nanocrystals are used to prepare cellulosic aerogels, evaluating the effect of three parameters, namely, concentration (0.5–4%), CaCl 2 and poly(lactic acid) (PLA) incorporation (hybrid aerogels), on their sound absorption properties. Aerogels from 4% suspensions show the highest sound absorption, outperforming benchmark rockwool and polyester—two modern commonly-used sound absorbers. Moreover, PLA coating also improves the sound absorption performance of the most aerogels. CNC from KS aerogels are selected as the optimum at both high (500–6000 Hz) and low (100–1500 Hz) frequency ranges. Overall, these results represent a new proof-of-concept of waste biomass conversion to high-performance cellulosic aerogels that have excellent sound absorbing properties.

Original languageEnglish
Article number2200248
Number of pages12
JournalAdvanced Sustainable Systems
Volume6
Issue number11
DOIs
Publication statusPublished - 2022
MoE publication typeA1 Journal article-refereed

Keywords

  • aerogels
  • biomass valorisation
  • cellulosic nanocrystals
  • poly(lactic acid)
  • sound absorption

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