首页> 外文期刊>International journal of architectural heritage >Characterization of Hydraulic Lime Mortar Containing Opuntia ficus-indica as a Bio-Admixture for Restoration Applications
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Characterization of Hydraulic Lime Mortar Containing Opuntia ficus-indica as a Bio-Admixture for Restoration Applications

机译:包含仙人掌榕的水硬石灰砂浆的特性,作为修复用生物混合物

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摘要

Many successful and long lasting structures that contain lime mortars are hydraulic in nature. Organic admixtures are added to lime mortar mix to modify their fresh and hardened state properties. The present work proposes plant extract as bio-admixture for repair mortar towards the protection of heritage structures. The effect of cactus extract on the properties of hydraulic lime mortar is studied. Mortar ' s composition is selected with respect to the composition of historic mortars and modern restoration practice. Cactus extract was added to the lime sand mixture with varying concentrations (25%, 50%, 75%, and 100%) and with different fermentation periods of 0, 1, and 2 days The consistency and workability of modified mortar, mechanical behavior, water absorption, porosity, and water/salt absorption through capillary rise, salt crystallization have been studied. Micro structural properties of the resulting mortar have been evaluated by XRD and FT-IR to identify their mineralogical composition and morphology by SEM-EDX. It is observed that addition of 75% cactus extract with 1-day fermentation produces maximum positive effect on the strength and durability properties of lime mortar. It improves the mechanical characteristics, limits water and salt absorption by capillarity into mortar and also show resistance to salt crystallization cycles.
机译:许多包含石灰砂浆的成功且持久的结构本质上都是水硬性的。将有机外加剂添加到石灰砂浆混合物中,以改变其新鲜和硬化状态。目前的工作提出了植物提取物作为生物混合物,用于修补砂浆,以保护遗产结构。研究了仙人掌提取物对水硬石灰砂浆性能的影响。砂浆的成分是根据历史性砂浆的成分和现代修复实践选择的。将仙人掌提取物添加到石灰砂混合物中,使其浓度不同(分别为25%,50%,75%和100%),发酵时间分别为0、1、2天。改性砂浆的稠度和可加工性,机械性能,已经研究了通过毛细上升,盐结晶的吸水率,孔隙率和水/盐吸收率。通过XRD和FT-IR对所得砂浆的微观结构性能进行了评估,以通过SEM-EDX鉴定其矿物学组成和形态。可以观察到,经过1天的发酵添加75%的仙人掌提取物会对石灰砂浆的强度和耐久性能产生最大的积极影响。它改善了机械性能,通过毛细作用进入砂浆限制了水和盐的吸收,还显示了对盐结晶循环的抵抗力。

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