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首页> 外文期刊>Environmental earth sciences >Physical-mechanical consolidation and protection of Miocenic limestone used on Mediterranean historical monuments: the case study of Pietra Cantone (southern Sardinia, Italy)
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Physical-mechanical consolidation and protection of Miocenic limestone used on Mediterranean historical monuments: the case study of Pietra Cantone (southern Sardinia, Italy)

机译:地中海历史遗迹上的中新世石灰岩的物理机械加固和保护:Pietra Cantone案例研究(意大利南部撒丁岛)

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摘要

The present work aims to study the consolidating and protective chemical treatments of the Pietra Cantone, a Miocenic (lower Tortonian) limestone widely used in important monuments and historical buildings of Cagliari (southern Sardinia, Italy). Similar limestones of the same geological period have also been used in several important monuments of Mediterranean area, i.e., Malta and Gozo Islands, Matera (central Basilicata, Italy), Lecce (southern Puglia, Italy) and Balearic Islands (Spain). The Pietra Cantone limestone shows problems of chemical-physical decay, due to their petrophysical and compositional characteristics: high porosity (on average 28-36 vol%), low cemented muddy-carbonate matrix, presence of phyllosilicates and sindepositional sea salts (<3%). So, after placed in the monument, this stone is easily alterable by weathering chemical processes (e.g., carbonate dissolution and sulfation) and also by cyclic mechanisms of crystallization/solubilization of salts and hydration/dehydration of hygroscopic phases of the clay component. To define the mineralogical-petrographic features (composition, texture) of limestone, the clay and salt crystalline phases, the optical microscope in polarized light and diffraction analysis were used. To define the petrophysical characteristics (i.e., shape and size distribution of porosity, surface area (SBET), matrix microstructures, rock composition) and interactions of chemical treatments with rock, SEM-EDS analysis and N2 porosimetry with BET and BJH methods were used. To evaluate the efficacy of Na/K-silicates, ethyl silicate consolidants and protective nano-molecular silane monomer water repellent, the mechanical strengths (uniaxial compressive strength, point load and flexural resistance), water/helium open porosity, water absorption and vapour permeability data determined before and after the chemical treatments of the Pietra Cantone samples from monument were compared.
机译:本工作旨在研究Pietra Cantone的固结和保护性化学处理,Pietra Cantone是一种中新世(低托托尼亚)石灰石,广泛用于卡利亚里(意大利南部撒丁岛)的重要古迹和历史建筑。在地中海地区的几个重要古迹中也使用了相同地质时期的类似石灰岩,即马耳他和戈佐群岛,马泰拉(意大利中部巴斯利卡塔中部),莱切(意大利普利亚南部)和巴利阿里群岛(西班牙)。 Pietra Cantone石灰石由于其岩石物理和组成特征而显示出化学物理衰减的问题:高孔隙度(平均28-36 vol%),低胶结泥状碳酸盐基质,页硅酸盐和正沉积海盐的存在(<3% )。因此,在放置在纪念碑中之后,可以通过风化化学过程(例如碳酸盐溶解和硫酸化)以及盐的结晶/增溶和粘土组分的吸湿相的水合/脱水的循环机制轻易地改变该石材。为了定义石灰石,粘土和盐晶相的矿物岩石特征(组成,质地),使用了偏光光学显微镜和衍射分析。为了定义岩石物理特征(即孔隙度的形状和尺寸分布,表面积(SBET),基体微观结构,岩石组成)以及岩石与化学处理的相互作用,SEM-EDS分析以及BET和BJH方法进行的N2孔隙率测定。为了评估Na / K硅酸盐,硅酸乙酯固结剂和保护性纳米分子硅烷单体防水剂的功效,机械强度(单轴抗压强度,点载荷和抗弯强度),水/氦气开孔率,吸水率和透湿性比较了对纪念碑的Pietra Cantone样品进行化学处理之前和之后确定的数据。

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