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Hydrophobic Zinc Oxide Nanocomposites for Consolidation and Protection of Quartzite Sculptures: A Case Study

机译:疏水性氧化锌纳米复合材料,用于固结和保护石英岩雕塑:案例研究

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摘要

Quartzite sculptures are considered some of the most impressive and informative archaeological remains which have been found in the most of Egyptian archaeological sites. Regrettably, quartzite sculptures suffer from many deterioration aspects such as granular disintegration, scaling, cracking, efflorescence, soiling, microbiological colonization. Water is the main aggressive deterioration factor of stones and stone-based monuments, as in addition to its direct role in deterioration mechanisms, it plays as a catalyst in the physicochemical and microbiological deterioration processes.During the last two decades, polymer nanocomposites have widely been applied in the field of cultural heritage conservation due to their unique physical and chemical characteristics. Zinc oxide nanoparticles are among the most important semiconductive nanomaterials that have been applied in the fabrication of nanocomposites. They have been demonstrated to improve the physicochemical and mechanical properties of polymers. In addition, zinc oxide nanoparticles were mixed with polymers in order to fabricate superhydrophobic and self-cleaning protective materials.The aim of this paper is to evaluate the efficiency of zinc oxide nanocomposites, in order to select the best of them for the consolidation and protection of a colossal quartzite statue of Ramesses II. The properties of the treated quartzite samples were comparatively examined by colourimetric measurements, static water contact angle, compressive strength, and scanning electron microscope.
机译:石英岩雕塑被认为是最令人印象深刻和最令人印象深刻的考古遗迹,这些遗迹已经在埃及的考古遗址中发现。令人遗憾的是,石英岩雕塑患有许多劣化方面,例如粒状崩解,缩放,开裂,兴坏,污染,微生物殖民化。水是石头和基于石头古迹的主要侵略性因素,除了其在恶化机制中的直接作用外,它还在物理化学和微生物劣化过程中发挥作用。过去二十年来,聚合物纳米复合材料广泛存在由于其独特的物理和化学特征,在文化遗产保护领域应用。氧化锌纳米颗粒是在纳米复合材料的制造中施加的最重要的半导体纳米材料中。已经证明了它们以改善聚合物的物理化学和机械性能。此外,将氧化锌纳米颗粒与聚合物混合以制造超疏水和自清洁保护材料。本文的目的是评估氧化锌纳米复合材料的效率,以便为整合和保护选择最好的氧化物纳米复合材料巨大石英岩雕像的雕像II。通过阴部测量,静电接触角,抗压强度和扫描电子显微镜相对接受处理的石英岩样品的性质。

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