In this paper the use of industrial by-products coming from raw materials treatment for ceramic industry has been investigated as reinforcing particulate in sulfur mortars, given that also sulfur binder could be replaced by fully recycled sulfur. Indeed, mechanical properties, microstructure and durability of the obtained particulate composites with fully recycled components exhibited outstanding properties. Finally, as sulfur is easily melted, sulfur composites may be wholly recycled without any loss in their performances.

E. Franzoni, S. Manzi, F. Sandrolini, M. C. Bignozzi (2004). High performance fully recycled materials for civil engineeering as an alternative to landfill disposal. NAPOLI : Liguori Editore.

High performance fully recycled materials for civil engineeering as an alternative to landfill disposal

FRANZONI, ELISA;MANZI, STEFANIA;SANDROLINI, FRANCO;BIGNOZZI, MARIA
2004

Abstract

In this paper the use of industrial by-products coming from raw materials treatment for ceramic industry has been investigated as reinforcing particulate in sulfur mortars, given that also sulfur binder could be replaced by fully recycled sulfur. Indeed, mechanical properties, microstructure and durability of the obtained particulate composites with fully recycled components exhibited outstanding properties. Finally, as sulfur is easily melted, sulfur composites may be wholly recycled without any loss in their performances.
2004
Proceedings of the First International Conference on Innovative Materials and Technologies for Construction and Restoration
395
405
E. Franzoni, S. Manzi, F. Sandrolini, M. C. Bignozzi (2004). High performance fully recycled materials for civil engineeering as an alternative to landfill disposal. NAPOLI : Liguori Editore.
E. Franzoni; S. Manzi; F. Sandrolini; M. C. Bignozzi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/8481
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