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Showing 2 results for Compatibility

Parsa Pahlavan, Hamid Fadaei, Stefania Manzi, Maria Chiara Bignozzi,
Volume 3, Issue 1 (6-2020)
Abstract

In this study, considerations for design, characterization, and in-situ application of sustainable materials for restorative use in the Pasargadae world heritage site are discussed. Based on some prior studies on sustainable waste-based restorative mortars, air lime mortars were made from lime putty, mixture of stones from the site, and additive sesame oils. The mortar samples were characterized in terms of microstructure, carbonation rate, hydric properties, and durability. The characterization aimed at compatibility assessment of mortars with a real situation. Considering the variety of natural conditions parameters compared to the laboratory, the mortar samples were also characterized in the site conditions. The results suggested the laboratory characterization, if done properly, can provide a promising degree of representation for the field conditions.

Mehdi Razani, Leyli Nemani Khiyavi ,
Volume 3, Issue 4 (3-2021)
Abstract

Historical structures, often constructed using porous materials such as stone, brick, and mortar, have been exposed to environmental and anthropogenic stressors over centuries, leading to their gradual deterioration. Consolidation, a critical intervention in the conservation of porous historical materials, aims to enhance their mechanical stability, mitigate further degradation, and prolong their lifespan. This process becomes essential when the structural integrity of an artifact is compromised due to factors such as weathering, salt crystallization, and biological growth. However, the effectiveness of consolidation treatments is highly dependent on the selection of appropriate consolidants, which must meet specific criteria, including deep and uniform penetration, minimal surface residue, chemical compatibility, reversibility, and the preservation of the material’s breathability. Despite its importance, the field faces significant challenges, including a lack of standardized protocols and comprehensive understanding of the long-term performance of consolidants. This research seeks to bridge the gap between theoretical principles and practical applications by evaluating the performance of various consolidants on-site and optimizing intervention strategies for porous historical materials. The findings aim to contribute to the development of more effective and sustainable conservation practices for cultural heritage. 


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