Research Publications
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Filters: Author is Pereira, Helena and Keyword is Cork [Clear All Filters]
Aliphatic bio-oils from corks: A Py–GC/MS study.
Journal of Analytical and Applied Pyrolysis.
(2014). Thermal behaviour of cork and cork components.
Thermochimica Acta. 582, 94 - 100.
(2014). Effect of Density on the Compression Behaviour of Cork.
Materials & Design.
(2013). Gas transport through cork: Modelling gas permeation based on the morphology of a natural polymer material.
Journal of Membrane Science. 428, 52 - 62.
(2013). Permeability of Cork for Water and Ethanol.
Journal of Agricultural and Food Chemistry. 61(40), 9672 - 9679.
(2013). Variability of the Chemical Composition of Cork.
BioResources. 8, 2246-2256.
(2013). Cellular structure and chemical composition of cork from the Chinese cork oak (Quercus variabilis).
Journal of Wood Science.
(2012). Drying kinetics of cork planks in a cork pile in the field.
Food and Bioproducts Processing. 1 - 9.
(2012). Lignin monomeric composition of corks from the barks of Betula pendula, Quercus suber and Quercus cerris determined by Py–GC–MS/FID.
Journal of Analytical and Applied Pyrolysis. 1-7.
(2012). Study of thermochemical treatments of cork in the 150–400°C range using colour analysis and FTIR spectroscopy.
Industrial Crops and Products. 38, 132-138.
(2012). Temperature-induced structural and chemical changes in cork from Quercus cerris.
Industrial Crops and Products. 37, 508-513.
(2012). The cellular structure of cork from Quercus cerris var. cerris bark in a materials’ perspective.
Industrial Crops and Products. 34, 929-936.
(2011). Characterization of radial bending properties of cork.
European Journal of Wood and Wood Products. 69, 557-563.
(2011). Suberized Cell Walls of Cork from Cork Oak Differ from Other Species.
Microscopy and Microanalysis. 16(5), 569 - 575.
(2010). Tensile properties of cork in axial stress and influence of porosity, density, quality and radial position in the plank.
European Journal of Wood and Wood Products. 69(1), 85 - 91.
(2010). Ultrastructural Observations Reveal the Presence of Channels between Cork Cells.
MICROSCOPY AND MICROANALYSIS. 15(6), 539 - 544.
(2009). Ultrastructural Observations Reveal the Presence of Channels between Cork Cells.
MICROSCOPY AND MICROANALYSIS. 15, 539-544.
(2009). Effect of quality, porosity and density on the compression properties of cork.
Holz als Roh- und Werkstoff. 66, 295-301.
(2008). Effect of quality, porosity and density on the compression properties of cork.
Holz als Roh- und Werkstoff. 66(4), 295 - 301.
(2008). The periderm development in Quercus suber.
IAWA Journal. 25, 325-335.
(2004). Caractérisation de la croissance et de la qualité du liège dans une région de production.
Ann. For. Sci.. 57, 187-193.
(2000). Caractérisation de la croissance et de la qualité du liège dans une région de production.
Ann. For. Sci.. 57(2), 187 - 193.
(2000). Methanolysis of bark suberins: analysis of glycerol and acid monomers.
Phytochemical Analysis. 11, 45-51.
(2000). Feruloyl Esters of ω-Hydroxyacids in Cork Suberin.
Journal of Wood Chemistry and Technology. 18, 207-217.
(1998). Cork Suberin: A Glyceryl Based Polyester.
Holzforschung - International Journal of the Biology, Chemistry, Physics and Technology of Wood. 51, 225-234.
(1997). Suberina: o polímero responsá vel pelas propriedades da cortiça.
II Congreso Forestal Español. 225-228.
(1997). Variaçáo da porosidade da cortiça ao longo do tronco dosobreiro.
II Congreso Forestal Español. 253 - 258.
(1997). Variaçáo da porosidade da cortiça ao longo do tronco dosobreiro.
II Congreso Forestal Español. 253-258.
(1997). High - pressure extraction of cork with CO2 and 1,4-dioxane.
(Proceedings, P. Rudolf von, & Technology C. Trepp B. T., Ed.).High Pressure Chemical Engineering Proceedings of the 3rd International Symposium on High Pressure Chemical Engineering. Volume 12, 417-422.
(1996). THE CELLULAR STRUCTURE OF CORK FROM QUERCUS SUBER L.
IAWA Bulletin. 8, 213-218.
(1987).