Reactive Synthetic Pozzolans in Mortars from Ancient Water Infrastructure Serving Rome and Pompeii

Cell Press Pub Date : 1900-01-01 DOI:10.2139/ssrn.3885241
Linda M Seymour, D. Keenan‐Jones, G. Zanzi, A. Masic
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Abstract

Ancient Roman concrete constitutes many ancient structures that remain standing; however, little is known about how it has remained durable. Here, we investigate the mortars used in ancient water bearing infrastructure such as aqueducts, cisterns, and baths. In these structures, crushed ceramics are used as a pozzolanic additive on surfaces in continuous or frequent contact with water. The ceramic-lime mortars are probed using a multi-scale characterization approach including SEM-EDS and Raman microspectroscopy. The analysis shows the role of ceramics within these structures as a source of aluminosilicates, mapping the presence of both pozzolanic and post-pozzolanic phases. A hybrid binder consisting of cementitious hydrates and calcite is mapped at the interface of the ceramics and evidence of post-pozzolanic densification of pores and cracks is observed. Comparison across structures shows that material selection and chemistry benefit the infrastructure applications. Understanding these ancient materials provides inspiration for new, durable infrastructure materials.
古罗马和庞贝古代水利设施砂浆中的活性合成火山灰
古罗马混凝土构成了许多仍然屹立不倒的古代建筑;然而,人们对它是如何保持耐用性知之甚少。在这里,我们研究了用于古代承载水的基础设施,如渡槽,蓄水池和浴池的砂浆。在这些结构中,破碎的陶瓷被用作火山灰添加剂,用于与水连续或频繁接触的表面。采用SEM-EDS和拉曼光谱等多尺度表征方法对陶瓷石灰砂浆进行了表征。分析显示了陶瓷在这些结构中的作用,作为铝硅酸盐的来源,绘制了火山灰和后火山灰相的存在。由胶结水合物和方解石组成的杂化粘合剂在陶瓷的界面上被映射,并且观察到后火山灰致密化的孔隙和裂缝的证据。跨结构的比较表明,材料选择和化学性质有利于基础设施的应用。了解这些古老的材料为新的、耐用的基础设施材料提供了灵感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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