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A methodological approach to define the state of conservation of the stone materials used in the Cairo historical heritage (Egypt)

机译:一种定义开罗历史遗产(埃及)中使用的石材保护状态的方法方法

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摘要

The use of stone materials in cultural heritage and architecture represents a practice that has its roots in ancient times. Stone buildings, depending on the construction materials and their location in the urban context, are particularly vulnerable to weathering phenomena. These can be often accelerated by changes in environmental conditions linked mostly to the anthropic activities. In this way, the present work is addressed on the minero-petrographic and geochemical characterisation of samples taken from the built historical heritage in Cairo (Egypt), related to seven monumental areas. These sites have been chosen based on their historical importance, type of material, state of preservation and position in the Cairo context. The construction materials used and their degradation products were studied comparing the results obtained by means of different analytical techniques such as polarised light optical microscopy (POM), ion chromatography (IC), Fourier transform infrared spectroscopy (FT-IR) and the carbonaceous fraction, detected by using the thermogravimetry (TG). The results achieved demonstrated that black crusts and salt crystallisation represent the most common and damaging degradation products affecting all the monumental sites. Moreover, the environmental pollution produced by industrial activities and vehicular traffic has been identified as the main cause of these processes, followed by a marginal contribution of natural sources such as the sea spray. The data collected provide useful information to plan efficient conservation strategies in the future.
机译:在文化遗产和建筑中使用石材代表着古代根源的实践。根据建筑材料及其在城市背景下的地理位置,石材建筑特别容易受到风化现象的影响。这些可以通过主要与人类活动相关的环境条件的变化加速。通过这种方式,目前的作品是关于从开罗(埃及)的建造历史遗产所采取的样本的Minero-icrographic和地球化学表征,与七个纪念碑有关。这些网站已根据其历史重要性,材料类型,保存状态和开罗背景的职位选择。研究了使用的结构和降解产物的降解产物,比较通过不同的分析技术获得的结果,例如偏振光光学显微镜(POM),离子色谱(IC),傅里叶变换红外光谱(FT-IR)和碳质馏分,通过使用热重率(TG)来检测。实现的结果表明,黑色外壳和盐结晶代表了影响所有巨大位点的最常见和损伤的降解产物。此外,产业活动和车辆交通产生的环境污染已被确定为这些过程的主要原因,其次是海浪等自然来源的边际贡献。收集的数据提供了有用的信息,以计划未来有效的保护策略。

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