Utilize este identificador para referenciar este registo: http://hdl.handle.net/20.500.11960/4224
Título: The chemical characterisation of the maritime pine bark cultivated in northern Portugal
Autores: Barros, Diana
Fernandes, Élia
Jesus, Meirielly
Barros, Lillian
Alonso-Esteban, José Ignacio
Pires, Preciosa
Vaz-Velho, Manuela
Palavras-chave: Bark
Pinus pinaster Aiton subsp. atlantica
Extractives
Holocellulose
Cellulose
FTIR
Data: 22-Nov-2023
Citação: Barros, d., Fernandes, E., Jesus, M., Barros, L., Alonso-Estaban, J: I:, Pires, P., & Vaz-Velho, M. (2023). The chemical characterisation of the maritime pine bark cultivated in northern Portugal. Plants, 12(23), Artigo e3940. https://doi.org.10.3390/plants12233940
Resumo: Maritime pine, scientifically known as Pinus pinaster, holds a vital role in Iberian Peninsula forests, primarily as a source of wood for panels, paper, and cellulose production. Recently, there has been a growing interest in utilising agroforestry by-products to yield valuable chemicals for applications in various sectors, including the food, pharmaceutical, and bioenergy industries. This study aimed to assess the value of the primary by-product of Pinus pinaster from the Minho region of northwestern Portugal, i.e., the bark. The research extensively examined the bark’s chemical and thermal characteristics, including ash content, extractives, lignin, cellulose, hemicellulose, fatty acids, and mineral composition. Additionally, various analytical techniques like FTIR, SEM, DSC, DTG, and XRD were used to observe chemical structure differences. The results reveal that the Pinus pinaster bark primarily consists of lignin (51.15%) and holocellulose (46.09%), with extractives mainly soluble in toluene–ethanol, followed by water, and a small amount of them are soluble in ethanol. The bark contained around 0.44% ash, and heavy metals such as Cd and Pb were not found. During degradation, Pinus pinaster experienced a 10% mass loss at 140 °C. In terms of crystallinity, holocellulose and cellulose showed similar percentages at approximately 25.5%, while α-cellulose displayed the highest crystallinity index at 41%.
URI: http://hdl.handle.net/20.500.11960/4224
ISSN: 2223-7747
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