<epdcx:descriptionSet xsi:schemaLocation="http://purl.org/eprint/epdcx/2006-11-16/ http://purl.org/eprint/epdcx/xsd/2006-11-16/epdcx.xsd" xmlns:epdcx="http://purl.org/eprint/epdcx/2006-11-16/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">
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    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/elements/1.1/identifier">
      <epdcx:valueString epdcx:sesURI="http://purl.org/dc/terms/URI">http://openarchive.icomos.org/id/eprint/2587/</epdcx:valueString>
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    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/elements/1.1/title">
      <epdcx:valueString>Earth Plasters: The Influence of Clay Mineralogy in the Plasters’ Properties</epdcx:valueString>
    </epdcx:statement>
    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/elements/dc/terms/abstract">
      <epdcx:valueString>Earth-based mortars have been used all over the world since ancient times in an extensive range&#13;
of building types from vernacular architecture to monuments. Plastering is one of the most&#13;
common contemporary applications of earth-based mortars used for earthen-building conservation&#13;
or modern architecture. Raw earth is a very diverse natural material, and clay minerals play&#13;
a key role in plaster properties being responsible for their setting process and providing the&#13;
capacity of balancing the indoor hygrometric conditions of buildings. This capacity offers significant&#13;
benefits to energy savings delivering comfort and health of inhabitants and also contributes&#13;
to building conservation. For this study, three mortars were produced with different&#13;
clayish earths to assess the influence of clay mineralogy. Mortars characterization confirmed that&#13;
clay mineralogy drives important plaster properties, such as vapour adsorption and drying&#13;
shrinkage, while also having a significant influence on mechanical strength, dry abrasion, and&#13;
thermal conductivity. Within the studied mortars, illitic clayish earth stands outs as more adequate&#13;
for earth-based plasters, showing balanced properties, namely linear drying shrinkage, mechanical&#13;
strength, dry abrasion, and water vapour adsorption.</epdcx:valueString>
    </epdcx:statement>
    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/elements/dc/elements/1.1/creator">Lima, José</epdcx:statement>
    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/elements/dc/elements/1.1/creator">Faria, Paulina</epdcx:statement>
    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/elements/dc/elements/1.1/creator">Santos Silva, António</epdcx:statement>
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  <epdcx:description epdcx:resourceId="expression_2587_1">
    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/elements/1.1/title">
      <epdcx:valueString>Earth Plasters: The Influence of Clay Mineralogy in the Plasters’ Properties</epdcx:valueString>
    </epdcx:statement>
    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/terms/available">2022-03-18T08:37:43Z</epdcx:statement>
    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/elements/1.1/type" epdcx:valueURI="http://purl.org/eprint/type/JournalArticle"></epdcx:statement>
    <epdcx:statement epdcx:propertyURI="http://purl.org/dc/terms/bibliographicCitation">Lima, José et Faria, Paulina et Santos Silva, António   (2020)  Earth Plasters: The Influence of Clay Mineralogy in the Plasters’ Properties.   International Journal of Architectural Heritage, 14  (7).   p. 948-963.  ISSN 1558-3058  [Article]</epdcx:statement>
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