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The water vapor sorption behavior of natural fibers

Journal of Applied Polymer Science · 2009 · Vol. 112(3) · pp. 1524–1537
Callum A. S. HillAndrew NortonGary Newman

Abstract

Abstract The water vapor sorption behavior of a range of natural fibers (jute, flax, coir, cotton, hemp, Sitka spruce) has been studied. The data were analyzed using the Hailwood Horrobin model for isotherm fitting and determination of monolayer moisture content. The Hailwood Horrobin model was found to provide good fits to the experimental data. The extent of hysteresis exhibited between the adsorption and desorption isotherms was dependent on fiber type studied and was larger with high lignin compared with low lignin content fibers. The area bounded by the hysteresis loop decreased as the isotherms were performed at progressively higher temperatures. This behavior is consistent with sorption interactions occurring with a glassy solid below the glass transition temperature. © 2009 Wiley Periodicals, Inc. J Appl Polym Sci, 2009

Textile materials and evaluationsNatural Fiber Reinforced CompositesMaterial Properties and ProcessingSorptionDesorptionHysteresisMaterials scienceLigninAdsorptionWater contentChemical engineeringWater vaporFiber
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References
Effects of environmental conditions on mechanical and physical properties of flax fibers
Composites Part A Applied Science and Manufacturing · 2001 · 428 citations
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