Effectiveness and Compatibility of a Novel Sustainable Method for Stone Consolidation Based on Di-Ammonium Phosphate and Calcium-Based Nanomaterials

Author:

Pesce CeciliaORCID,Moretto Ligia M.ORCID,Orsega Emilio F.ORCID,Pesce Giovanni L.ORCID,Corradi MarcoORCID,Weber Johannes

Abstract

External surfaces of stones used in historic buildings often carry high artistic value and need to be preserved from the damages of time, especially from the detrimental effects of the weathering. This study aimed to test the effectiveness and compatibility of some new environmentally-friendly materials for stone consolidation, as the use thereof has been so far poorly investigated. The treatments were based on combinations of an aqueous solution of di-ammonium phosphate (DAP) and two calcium-based nanomaterials, namely a commercial nanosuspension of Ca(OH)2 and a novel nanosuspension of calcite. The treatments were applied to samples of two porous stones: a limestone and a sandstone. The effectiveness of the treatments was assessed using scanning electron microscopy coupled with energy-dispersive X-ray spectroscopy, Fourier-transform infrared spectroscopy, ultrasound pulse velocity test, colour measurements, and capillary water absorption test. The results suggest that the combined use of DAP and Ca-based nanosuspensions can be advantageous over other commonly used consolidants in terms of retreatability and physical-chemical compatibility with the stone. Some limitations are also highlighted, such as the uneven distribution and low penetration of the consolidants.

Publisher

MDPI AG

Subject

General Materials Science

Reference76 articles.

1. Illustrated Glossary on Stone Deterioration Patterns;Verges-Belmin,2008

2. UNI 11182: Beni Culturali: Materiali Lapidei Naturali ed Artificiali: Descrizione Della Forma di Alterazione—Termini e Definizioni,2006

3. Natural Stone, Weathering Phenomena, Conservation Strategies and Case Studies;Siegesmund,2002

4. Biodegradation of Cultural Heritage: Decay Mechanisms and Control Methods;Tiano,2002

5. Stone in Architecture;Winkler,1994

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