FITNESs, Fibre Tessili Naturali per l’Edilizia Sostenibile (Natural Textile Fibers for Sustainable Building), is a research project concerning an experimental hemp and sheep wool insulation panel. The new panel has two main innovative features: unlike the already existing hemp and wool insulation mats, it is a semi-rigid product and has low environmental impact, as shown by the Life Cycle Assessment. FITNESs panels are particularly suitable for eco-building sector, as they are 100% natural, recyclable and made with by-products from local production chains (Piemonte Region). The paper presents the production process of the panel from wool and hemp fibers and some experimental applications for sustainable architecture.
Building insulation products based on natural fibers: Wool and hemp panels / Bosia, Daniela; Patrucco, Alessia; Pennacchio, Roberto; Savio, Lorenzo; Piccablotto, Gabriele; Thiebat, Francesca. - STAMPA. - (2017), pp. 63-64. (Intervento presentato al convegno 3rd International Conference on Natural Fibers - Advanced Materials for a Greener World - ICNF2017 tenutosi a Braga, Portogallo nel 21-23 Giugno 2017).
Building insulation products based on natural fibers: Wool and hemp panels
Bosia, Daniela;Patrucco, Alessia;Pennacchio, Roberto;Savio, Lorenzo;Piccablotto, Gabriele;Thiebat, Francesca
2017
Abstract
FITNESs, Fibre Tessili Naturali per l’Edilizia Sostenibile (Natural Textile Fibers for Sustainable Building), is a research project concerning an experimental hemp and sheep wool insulation panel. The new panel has two main innovative features: unlike the already existing hemp and wool insulation mats, it is a semi-rigid product and has low environmental impact, as shown by the Life Cycle Assessment. FITNESs panels are particularly suitable for eco-building sector, as they are 100% natural, recyclable and made with by-products from local production chains (Piemonte Region). The paper presents the production process of the panel from wool and hemp fibers and some experimental applications for sustainable architecture.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2847304