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Chemical-Thermal Quantitative Methodology for Carbon Speciation in Damage Layers on Building Surfaces

机译:建筑表面损伤层中碳形态的化学-热定量方法

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摘要

The issue of environment protection,including the conservation of the monumental heritage worldwide,is related to atmospheric pollution,and its future therefore depends on air pollutant reduction.Carbonaceous particles emitted by combustion processes are the main factors responsible forthe blackening of buildings.The identification and evaluation of the carbon species constituting the noncarbonate fraction of total carbon in damage layers,particularly in urban areas,are required in orderto investigate atmospheric deposition on building surfaces.Since noncarbonate carbon contains organic and elemental carbon originating from various human activities,its measurement and speciation are crucial to the protection and conservation of monuments and ancient masonry,playing an important role both in the proposal of mitigation strategies and in the definition of conservation treatments.The availability of a correct,accurate,and reproducible analytical method for a complete carbon balance is essential in studying the effects of atmospheric pollutants on the environment,including those affecting cultural heritage.A chemical-thermal methodology was set up,and its sensitivity,accuracy,repeatability,and reproducibility were tested on appropriate standard samples of composition similar to the black crusts on stones and mortars.The results indicate that the technique satisfactorily distinguishes among carbon species,particularly those of anthropogenic origin,allowing a reliable evaluation of their quantities in damage layers.In view of the difficulties encountered in applying the thermo-optical methods adopted for the measurement of carbon filters,the proposed methodology contributes to filling the current gap in suitable and reliable analytical procedures in the field of cultural heritage protection.
机译:环境保护问题,包括保护全球范围内的重要遗产,与大气污染有关,因此其未来取决于减少空气污染物。燃烧过程中排放的碳颗粒是造成建筑物变黑的主要因素。为了调查建筑物表面的大气沉积,需要评估受损层(尤其是城市地区)中构成总碳的非碳酸盐分数的碳物种,因为非碳酸盐碳包含源自人类各种活动的有机碳和元素碳,因此其测量和形态对于保护和保护古迹和古代砖石至关重要,在缓解策略的提议和保护方法的定义中都起着重要作用。对于完整的碳平衡,正确,准确和可重复的分析方法的可用性是埃塞研究大气污染物对环境的影响,包括影响文化遗产的污染物。建立了化学-热学方法,并在类似于黑皮的适当标准样品上测试了其敏感性,准确性,可重复性和再现性。结果表明,该技术令人满意地区分了碳物种,特别是人为来源的碳物种,从而能够可靠地评估损伤层中碳的数量。碳过滤器的测量,所提出的方法有助于在文化遗产保护领域以适当和可靠的分析程序填补当前空白。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第3期|p.939-944|共6页
  • 作者单位

    Institute of Atmospheric Sciences and Climate, National Research Council (CNR),Via Gobetti,101, 40129 Bologna,Italy;

    Institute of Atmospheric Sciences and Climate, National Research Council (CNR),Via Gobetti,101, 40129 Bologna,Italy;

    Institute of Atmospheric Sciences and Climate, National Research Council (CNR),Via Gobetti,101, 40129 Bologna,Italy;

    Institute of Atmospheric Sciences and Climate, National Research Council (CNR),Via Gobetti,101, 40129 Bologna,Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:06:49

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