Litcius/Paper detail

Wettability of Wood Surface Layer Examined From Chemical Change Perspective

Éva Annamária Papp, Csilla Csiha, Ádám Nándor Makk, Tamás Hofmann, Levente Csóka

2020Coatings20 citationsDOIOpen Access PDF

Abstract

The effect of artificial ageing on spruce (Picea abies), beech (Fagus sylvatica L.), birch (Betula pendula), and sessile oak (Quercus petraea) wood surfaces were investigated using qualitative (total phenolic and total soluble carbohydrate content) chemical examination methods. During ageing (∑240h), the influence of surface chemistry modifications was monitored by contact angle measurements of polar, dispersive (distilled water), and dispersive (diiodomethane) liquids. The results clearly show the relation between the ratio of main chemical components of the wood surface layer and surface wettability during artificial radiation. The identified surface chemistry modifications cause more significant change in the contact angle of polar and dispersive liquid, relative to the change of dispersive liquid contact angle. Chemical changes of the wood surface layer are due to the degradation of the main wood components (cellulose, hemicelluloses, and lignin) which can be properly monitored by total phenolic (TPC) and total soluble carbohydrate content (TSCC) measurements.

Topics & Concepts

Contact angleLigninQuercus petraeaFagus sylvaticaPicea abiesWettingQuercus roburBetula pendulaCelluloseChemistrySessile drop techniqueChemical compositionDiiodomethaneDistilled waterBeechSurface layerMaterials scienceChemical engineeringLayer (electronics)Composite materialBotanyOrganic chemistryChromatographyEngineeringBiologyWood Treatment and PropertiesCultural Heritage Materials AnalysisSurface Roughness and Optical Measurements