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Microstructure and geochemistry of lime plaster mortar from a heritage structure

机译:传统结构的石灰灰浆的微观结构和地球化学

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This study presents the observations from a comprehensive Scanning Electron Microscopy (SEM) study of lime mortar from a heritage structure. Microstructural and geo-chemical characterization of carbonate, chloride and sulphate phases was performed based on Energy Dispersive Spectroscopy (EDS). The hydrated carbonates underwent polymorphic changes ranging between the vaterite, aragonite and calcite forms. The habit of crystallization of calcite widely varies depending upon its environment of crystallization amidst pore spaces and voids. The repeated influx and evaporation of capillary ground water and storm water into the lime mortar caused the precipitation of carbonate materials of wide compositional variation. The presence of halite mineral crystallized as interstitial skeletal or hopper crystals was found inside the mortars. Capillary channels filled with these crystals indicated that the capillary forces played a critical role in the influx and evaporation of pore fluids with successive chemical variations from bicarbonate ground water source contaminated with chloride ions. Presence of portlandite, anhydrite, and gypsum was confirmed along with minor traces of ettringite and thaumasite. Chemical compositions of these minerals indicated that they were crystallized from a common source of pore fluids of meteoric water composed with carbonates, chlorides and sulphates. The repeated differential order volume change by expansion and shrinkage had induced the development of hairline cracks and deformations in the lime mortar. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究提出了从综合结构的石灰砂浆的综合扫描电子显微镜(SEM)研究中获得的观察结果。基于能量色散谱(EDS)对碳酸盐,氯化物和硫酸盐相进行了微观结构和地球化学表征。水合碳酸盐经历了球the石,文石和方解石形式的多晶型变化。方解石的结晶习性根据其在孔隙和空隙中的结晶环境而变化很大。毛细血管地下水和雨水反复流入并蒸发到石灰砂浆中,导致成分差异很大的碳酸盐材料沉淀。在砂浆中发现了以间隙骨架或漏斗状结晶结晶的盐岩矿物。填充有这些晶体的毛细管通道表明,毛细作用力在孔隙液的流入和蒸发中起着关键作用,碳酸氢盐地下水源的连续化学变化使这些流体被氯离子污染。确认存在波特兰石,硬石膏和石膏,以及少量的钙矾石和高岭石。这些矿物质的化学成分表明,它们是从常见的由碳酸盐,氯化物和硫酸盐组成的陨石孔隙流体中结晶出来的。由于膨胀和收缩而引起的反复的有序体积变化引起了灰浆中发际线裂纹的发展和变形。 (C)2019 Elsevier Ltd.保留所有权利。

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