Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.11960/4649
Title: Bioactive and phenolic profiles in Pinus pinaster Bark : a comparative study of microwave and ultrasound extraction methods
Authors: Barros, Diana
Alonso-Esteban, José Ignacio
Finimundy, Tiane C.
Pereira, Carla
Vaz, Josiana A.
Pereira-Pinto, Ricardo
Fernandes, Élia
Pires, Preciosa
Santos, Joana
Barros, Lillian
Vaz-Velho, Manuela
Keywords: Microwave-assisted extraction
Ultrasound-assisted extraction
Pinus pinaster
Phenolic compounds
Green extraction
Waste valorisation
Antioxidant activity
Process optimization 
Issue Date: 2026
Citation: Barros, D., Alonso-Esteban, J. I., Finimundy, T. C., Pereira, C., Vaz, J. A., Pereira-Pinto, R., Fernandes, E., Pires, P., Santos, J., Barros, L., & Vaz-Velho, M. (2026). Bioactive and phenolic profiles in Pinus pinaster Bark : a comparative study of microwave and ultrasound extraction methods. ChemEngineering, 10(1), Artigo e2. https://doi.org/10.3390/chemengineering10010002
Abstract: This study conducted a comprehensive comparison of two green extraction methods, microwave-assisted extraction (MAE) and ultrasound-assisted extraction (UAE), for recovering bioactive phenolic compounds from Pinus pinaster bark. The goal was to valorize timber industry waste and enhance the value of by-products through the development of eco-friendly processes to extract phenolic compounds from Pinus pinaster Aiton subsp. atlantica in northwest Portugal. MAE achieved significantly higher extraction yields than UAE (11.13 vs. 3.47 g extract/100 g bark) and superior total phenolic content (833 vs. 514 mg GAE/g). MAE extracts also exhibited enhanced antioxidant activity in most assays tested (DPPH, ABTS, ORAC, and OxHLIA), while both extracts effectively inhibited lipid peroxidation (TBARS) and showed activity against Gram-positive bacteria. Phenolic profile analysis revealed that MAE recovered a substantially higher amount of total phenolic compounds (230.0 mg/g) compared to UAE (86.95 mg/g), with procyanidins identified as the predominant compounds. The greater recovery of this complex procyanidin mixture by MAE is strongly associated with the enhanced bioactivities observed. Overall, this study confirms MAE as a highly efficient and sustainable technology for transforming pine bark waste into valuable antioxidant and antimicrobial extracts with potential applications in the food and pharmaceutical industries.
URI: http://hdl.handle.net/20.500.11960/4649
ISSN: 2305-7084
Appears in Collections:CISAS - Publicações indexadas à WoS/Scopus
ESTG - Publicações indexadas à WoS/Scopus

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