4 resultados para Historic Cartography

em Aston University Research Archive


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The French Past Historic (passé simple: PS), as a perfective past, is ideally suited to the obituary genre narrating the highlights of a life in chronological order. However, 20th century linguists have claimed that this tense has become obsolete. It is, therefore, worth exploring the presence of PS in obituaries. This paper explores three types of variation (diachronic, diastratic and diatopic) on a corpus of diachronic 20th century sources, and contemporary Parisian and regional newspapers. The study has noticed a diachronic diminution of the quantitative use of PS and a lesser decline of its functions as a foregrounded tense, and greater vitality in Western and Southern papers. However the geographical factor was less influential than the distribution. The readership may prove decisive as we have seen the most productive uses in the most conservative papers, the most formulaic in the left-wing paper, and the least developed in the populist paper.

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Magnesian limestone is a key construction component of many historic buildings that is under constant attack from environmental pollutants notably by oxides of sulfur via acid rain, particulate matter sulfate and gaseous SO 2 emissions. Hydrophobic surface coatings offer a potential route to protect existing stonework in cultural heritage sites, however, many available coatings act by blocking the stone microstructure, preventing it from 'breathing' and promoting mould growth and salt efflorescence. Here we report on a conformal surface modification method using self-assembled monolayers of naturally sourced free fatty acids combined with sub-monolayer fluorinated alkyl silanes to generate hydrophobic (HP) and super hydrophobic (SHP) coatings on calcite. We demonstrate the efficacy of these HP and SHP surface coatings for increasing limestone resistance to sulfation, and thus retarding gypsum formation under SO/H O and model acid rain environments. SHP treatment of 19th century stone from York Minster suppresses sulfuric acid permeation.

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