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Chemical and mineralogical investigations of lime plasters of medieval structures of Hampi, India

机译:印度汉普地区中世纪结构石灰塑料的化学和矿物学研究

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The historical lime plasters of World Heritage Site of Hampi were analyzed using X-ray fluorescence (XRF), petrological microscope, granulometric analysis, X-ray Diffraction (XRD), Fourier transform Infrared spectroscopy (FTIR), and Scanning Electron Microscopy (SEM). The studies indicated presence of aragonite and vaterite, i.e., the polymorphs of calcite in the lime platers of Hampi. The crystallization of calcite has significantly been influenced by self-healing of lime due to wet and dry cycle in the presence of magnesium that promoted formation of calcite polymorphs. The increasing solubility of metastable calcite led to loss of plaster by water dissolution. Granulometric analysis revealed inclusion of sub-angular to sub-rounded medium-sized aggregate grains of granitic origin and the sediments were medium transported before its deposition in fluvial river basin. The cementation index and mineralogical composition point use of air lime/sub-hydraulic lime admixed with non-hydraulic components sourced differently for Hampi plaster. Petrological analysis confirmed the plaster rich in essential minerals like quartz, orthoclase, plagioclase, and other clay components. The presence of chlorite and cristobalite revealed from SEM studies may be resultant minerals from the river sand of Tungabhadra. The scientific studies yielded information about the mineralogical, micro-structural, and chemical composition of the Hampi plasters useful to tailor compatible lime plaster for future conservation works.
机译:使用X射线荧光(XRF),岩浆显微镜,粒状测量分析,X射线衍射(XRD),傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)分析了亨比的世界遗产遗产的历史石灰塑料。和​​扫描电子显微镜(SEM) 。研究表明,在亨比的石灰压板中,即石油站的铌铁矿石的存在。方解石的结晶显着受到石灰的自我愈合因湿润和干燥循环而受到促进方解石的形成。稳定性方解石的升溶度导致水溶液失去膏药。粒度分析显示将子角度置于亚圆形介质粒度的花岗岩起源颗粒,并且沉积物在河流河流域沉积前进行培养基。用不同于汉普膏石膏的空气石灰/亚液压石灰的胶结指数和矿物学组成点使用与非液压元件相混合。岩石学分析证实了石膏,如石英,正阳酶,普珠酶和其他粘土组分等必需矿物质。 SEM研究显示的亚氯酸盐和ristobalite的存在可能是来自Tungabhadra的河砂丛的结果矿物。科学研究产生了有关汉普塑料的矿物学,微观结构和化学成分的信息,可用于为未来的保护作品量身定制兼容的石灰膏药。

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