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Moisture performance of silica-paper hybrids in the hygroscopic range

TAPPI Journal. Bd. 25. H. 3. TAPPI 2026 S. 169

Erscheinungsjahr: 2026

Publikationstyp: Zeitschriftenaufsatz

Sprache: Deutsch

Doi/URN: 10.32964/tj25.3.169

Volltext über DOI/URN

Geprüft:Bibliothek

Inhaltszusammenfassung


Vapor retarders, crucial in building constructions, are traditionally made from plastic-based materials, raising environmental concerns due to the use of fossil materials. This study explores the potential of functionalized papers, particularly silica-paper hybrids, as sustainable alternatives. This work delves into the moisture properties of sol-gel coated linter papers, considering the water vapor permeability and physisorption behavior following DIN EN ISO 12572 and DIN EN ISO 12571. The s...Vapor retarders, crucial in building constructions, are traditionally made from plastic-based materials, raising environmental concerns due to the use of fossil materials. This study explores the potential of functionalized papers, particularly silica-paper hybrids, as sustainable alternatives. This work delves into the moisture properties of sol-gel coated linter papers, considering the water vapor permeability and physisorption behavior following DIN EN ISO 12572 and DIN EN ISO 12571. The study addresses hysteresis, noting the lower hysteresis of mesoporous coatings in comparison to dense coatings and implying benefits in moisture release. Findings underscore the need for a nuanced understanding of coating characteristics and their impact on sorption. In order to better assess the relationship between the coating content of the papers and their specific sorption properties, further investigations, such as the measurement of specific surface properties (e.g., specific surface area), are required. The findings of the water vapor diffusion resistance measurement study demonstrate a correlation between the observed resistance and the vapor levels. The results show that the water vapor diffusion resistance is elevated at lower vapor levels when compared to higher levels. This particular material behavior is typically employed within the construction industry for the utilization of moisture-variable water vapor retarders. The silica-paper hybrids exhibit a response that indicates the potential for advancement into a moisture-variable water vapor barrier.» weiterlesen» einklappen

Autoren


Bosse, Naomi (Autor)
Czerwenka, Laura (Autor)
Andrieu-Brunsen, Annette (Autor)

Klassifikation


DDC Sachgruppe:
Ingenieurwissenschaften

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