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首页> 外文期刊>Environmental Geology >Physical and mechanical properties of the repaired sandstone ashlars in the facing masonry of the Charles Bridge in Prague (Czech Republic) and an analytical study for the causes of its rapid decay
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Physical and mechanical properties of the repaired sandstone ashlars in the facing masonry of the Charles Bridge in Prague (Czech Republic) and an analytical study for the causes of its rapid decay

机译:布拉格(捷克共和国)查理大桥饰面砖中修复的砂岩方石的物理和力学性能以及其快速衰减的原因的分析研究

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摘要

The facing masonry of the Gothic Charles Bridge in Prague (Czech Republic) has been largely altered during nineteenth and twentieth century repairs, due to extensive replacements of weathered sandstone ashlar blocks. Natural stone varieties used during these replacements show different responses to a variety of weathering processes which lead to their rapid decay. The decay of the newer stone has been accelerated by use of Portland cement paste as the binding and fill material, instead of the original hydraulic lime-based and cocciopesto-type mortars. The hardened Portland cement paste makes an almost impermeable barrier, with permeability three to four orders of magnitude lower, compared to the original mortars and natural stone. The low permeability of this new alien material results in the accumulation of water-soluble salts (specifically nitrates, but also sulphates and chlorides) in the facing masonry ashlars, with their crystallisation coming in the form of both sub- and efflorescence, as well as the development of various decay forms (blistering, granular disintegration and/or scaling and flaking). The source of the water-soluble salts can be traced back to previous restoration attempts. These included chemical cleaning (black crust removal) by nitric acid, ammonium hydroxide ('ammonium water'), or ammonium hydrogen carbonate, all which can be linked to high nitrate content in the efflorescence.
机译:布拉格(捷克共和国)的哥特式查理大桥饰面的砌体在19世纪和20世纪的维修过程中已发生了很大变化,这是由于风化的砂岩方石块的大量更换。在这些替换过程中使用的天然石材品种对各种风化过程表现出不同的响应,导致其迅速腐烂。通过使用波特兰水泥浆作为粘结和填充材料,而不是原来的液压石灰基和球墨铸铁型砂浆,可以加速新型石材的腐烂。与原始砂浆和天然石材相比,硬化的波特兰水泥浆具有几乎不可渗透的屏障,渗透率低三至四个数量级。这种新的外来物质的低渗透性导致饰面砌筑方石中的水溶性盐(特别是硝酸盐,以及硫酸盐和氯化物)积聚,它们的结晶以亚花序和风化的形式出现,以及各种衰变形式(起泡,颗粒崩解和/或结垢和剥落)的发展。水溶性盐的来源可以追溯到以前的修复尝试。这些措施包括用硝酸,氢氧化铵(“铵水”)或碳酸氢铵进行化学清洁(去除黑皮),所有这些都可能与风化过程中硝酸盐含量高有关。

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  • 来源
    《Environmental Geology》 |2011年第8期|p.1623-1639|共17页
  • 作者单位

    Faculty of Science, Institute of Geochemistry, Mineralogy and Mineral Resources, Charles University, Albertov 6, 128 43 Prague 2, Czech Republic;

    Institute of Rock Structure and Mechanics, Academy of Sciences of the Czech Republic, v.v.i., V Holesovickach 41, 182 09 Prague 8, Czech Republic;

    Laboratory of Molecular Spectroscopy, Institute of Chemical Technology, Technicka 5, 166 28 Prague 6, Czech Republic;

    School of Art Restoration, Academy of Fine Arts in Prague, U akademie 4, 172 22 Prague 7, Czech Republic;

    Faculty of Science, Institute of Geochemistry, Mineralogy and Mineral Resources, Charles University, Albertov 6, 128 43 Prague 2, Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    natural stone; weathering; water-soluble salts; conservation; portland cement; modern repairs; charles bridge in prague;

    机译:天然石材风化;水溶性盐;保护;硅酸盐水泥;现代维修;布拉格查理大桥;

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