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Yellowing of a white granite pavement in urban environment: The Fe-rich patina of Piazza Cavalli, Piacenza (Italy)

机译:城市环境中白色花岗岩路面的泛黄:皮亚琴察(意大利)卡瓦利广场富含铁的铜绿

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An integrated petrographic, colorimetric and capillary water absorption study of decayed flagstones of Granito Bianco (white granite) Montorfano from Piazza Cavalli (Piacenza, Italy) can provide important clues on the formation of yellowish patina on leucocratic granites used for buildings and decorative purposes. The granitic flagstones constituting the pavement of Piazza Cavalli rest on a basement consisting of iron-rich (Fe_2O_3 = 6.53-7.37 wt%) clay bricks. After more than two centuries of exposition to the urban environment, these surfaces acquired a yellowish patina characterised by a significantly higher yellow component that do not occur on the fresh surfaces in the native quarry of Mergozzo (NW Italy). In particular, the intensity of the yellowish patina is not controlled by the modal amount of biotite, the main Fe-rich mineral of Granito Bianco Montorfano. The results of the capillary water absorption test indicate that the aged Granito Bianco Montorfano flagstones have higher water transport capability than samples recently extracted from the Mergozzo quarry. The capillary water rise is controlled by inter/intragranular porosity of the granite flagstones. In particular, iron-rich compounds preferentially occur along the pores, indicating that iron can be efficiently transported by advection from the clay brick basement towards the surface. The results of this study show that (i) external iron sources coupled with iron advection are essential to the development of a Fe-rich yellowish patina on white granites, (ii) the release of iron from femic minerals contribute to the development of rust stains, but cannot account for the yellowish patina covering large surfaces of white granite flagstones.
机译:来自Piazza Cavalli(意大利皮亚琴察)的Granito Bianco(白色花岗岩)Montorfano的腐烂石板的岩相,比色和毛细管吸水综合研究,可为在用于建筑和装饰目的的白土花岗岩上形成黄色古铜色提供重要线索。构成卡瓦利广场人行道的花岗岩石板位于由富含铁(Fe_2O_3 = 6.53-7.37 wt%)粘土砖组成的地下室上。在暴露于城市环境两个多世纪之后,这些表面获得了淡黄色的铜绿,其特征是黄色成分明显较高,这在Mergozzo(意大利西北部)的本地采石场的新鲜表面上不会出现。尤其是,淡黄色铜绿的强度不受黑云母(Granito Bianco Montorfano的主要富铁矿物)的模态量的控制。毛细管吸水试验的结果表明,老化的Granito Bianco Montorfano石板比最近从Mergozzo采石场提取的样品具有更高的水传输能力。毛细水的上升是受花岗岩石板间/晶间孔隙度控制的。尤其是,富含铁的化合物优先沿着孔隙出现,这表明通过平流可以将铁有效地从粘土砖基底向表面传输。这项研究的结果表明:(i)外源铁源与铁对流对白色花岗岩上富铁的淡黄色铜绿的形成至关重要,(ii)从矿物矿物中释放铁有助于锈迹的发展。 ,但不能解释覆盖白色花岗岩石板大表面的淡黄色铜绿。

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