Published January 5, 2023 | Version v1

The Potential Value of Debarking Water as a Source of Polyphenolic Compounds for the Specialty Chemicals Sector

  • 1. InnoRenew CoE, Izola, Slovenia, Andrej Marušič Institute, University of Primorska, 6000 Koper, Slovenia
  • 2. InnoRenew CoE, Izola, Slovenia
  • 3. Faculty of Health Sciences, University of Primorska, 6310 Izola, Slovenia
  • 4. Faculty of Mathematics, Natural Sciences and Information Technologies, University of Primorska, 6000 Koper, Slovenia

Description

Forest-based industries produce huge quantities of bark during their primary processing activities. In Nordic pulp and paper industries, where a wet debarking process is used for bark removal, toxic debarking water and bark press water are produced as a by-product. However, polyphenols represent an important fraction of the debarking water and bark press water. These polyphenolic compounds are of commercial interest in chemical specialty sectors since polyphenols have been proven to have diverse health benefits, and after collecting them from waste sources, they can act as alternatives to oil-based chemicals. Determining the economic potential of polyphenolic compounds, identifying their molecular structure, and determining the antioxidant capacity of these compounds present in debarking water and bark can support the identification of their potential applications. The results show that water extractions from bark have a lower efficiency than (partial) alcoholic extractions. Nevertheless, a considerable amount of low-molecular polyphenolic compounds, which are of interest for high-end applications, was found in all extracts. Bark press water has a highly versatile range of polyphenolic compounds and showed some antioxidant activity, making it a great source for the collection of polyphenolic compounds, in contrast to debarking water, which had a much lower polyphenolic content and low antioxidant activity.

Notes

Republic of Slovenia (investment funding from the Republic of Slovenia and the European Regional Development Fund), the ARRS infrastructure program IO-0035 and project J4-1767.

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Additional details

Funding

European Commission
PACK-NIN - Modified lignin nanoparticles for composite and bio-based/Cu packaging applications 101031402
European Commission
InnoRenew CoE - Renewable materials and healthy environments research and innovation centre of excellence 739574