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      Water Vapour Adsorption on Moisture Buffering Building Materials

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      ScienceOpen
      2nd International Conference on Moisture in Buildings 2023 (ICMB23)
      3-4 July 2023
      Hygroscopic materials, moisture buffering, isotherm, dynamic vapour sorption, adsorption, water vapour, microstructure, heterogeneous materials, material performance, retrofit
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            Abstract

            Moisture buffering in buildings relies on the passive adsorption of water vapour at high relative humidity by hygroscopic materials and the release of that vapour when humidity falls. Understanding the material properties and processes that guide the isotherm behaviour, enables the effective use of materials in construction to modulate indoor humidity fluctuations. Filling in the material characterisation data gap for heterogeneous materials commonly used in the construction industry provides an improved basis for modelling and effective specification. This research can transform the way we build our homes and improve our ability todeal with dampness and indoor air quality without relying on mechanical ventilation systems.

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            Author and article information

            Conference
            ScienceOpen
            27 June 2023
            Affiliations
            [1 ] Civil and Environmental Engineering & Mechanical and Aerospace Engineering, University of Strathclyde, Glasgow, UK;
            Article
            10.14293/ICMB230032
            79f2479d-3d07-4a11-9fcf-2678ecb062d5

            Published under Creative Commons Attribution 4.0 International ( CC BY 4.0). Users are allowed to share (copy and redistribute the material in any medium or format) and adapt (remix, transform, and build upon the material for any purpose, even commercially), as long as the authors and the publisher are explicitly identified and properly acknowledged as the original source.

            2nd International Conference on Moisture in Buildings 2023
            ICMB23
            3-4 July 2023
            History
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            ScienceOpen


            Hygroscopic materials,moisture buffering,isotherm,dynamic vapour sorption,adsorption,water vapour,microstructure,heterogeneous materials,material performance,retrofit

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