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首页> 外文期刊>Journal of Hazardous Materials >Leaching of metal(loid)s from a construction material: Influence of the particle size, specific surface area and ionic strength
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Leaching of metal(loid)s from a construction material: Influence of the particle size, specific surface area and ionic strength

机译:从建筑材料中浸出金属(胶体):粒径,比表面积和离子强度的影响

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摘要

Construction materials are tested worldwide for a potential release of dangerous substances to prevent adverse effects on humans and biota. It is crucial to identify and understand the processes which are decisive for the release of hazardous substances. The current study compares the results of different test methods. Taking copper slag as model material, the influence of material particle size, eluant composition and ionic strength was tested. Ionic strength and salinity significantly influenced the release of metal(loid)s in the water phase. Furthermore, it was elucidated that colloids can cause methodological artefacts. The available specific surface area exhibited a positive correlation with the release of hazardous substances. The specific surface areas of materials were determined by the Brunauer, Emmett and Teller model (BET) and four other methods. The aluminium foil method showed the best results with regard to the statistical uncertainty, compared to a 3D laser scanning method. With help of the roughness factor γ it is possible to compare the results from surface area measurements with different material particle sizes (0-250 mm). This comparability offers the potential to match the release of metal(loid)s from laboratory studies with field applications and catchment area calculations/modelling, based on the release per m~2.
机译:全球范围内对建筑材料进行了潜在危险物质释放测试,以防止对人类和生物群产生不利影响。识别和了解决定性释放有害物质的过程至关重要。当前的研究比较了不同测试方法的结果。以铜渣为模型材料,测试了材料粒径,洗脱液组成和离子强度的影响。离子强度和盐度显着影响水相中金属(金属)的释放。此外,已阐明胶体可引起方法学上的伪像。有效比表面积与有害物质的释放呈正相关。材料的比表面积通过Brunauer,Emmett和Teller模型(BET)和其他四种方法确定。与3D激光扫描方法相比,铝箔方法在统计不确定性方面显示出最好的结果。借助粗糙度系数γ,可以比较不同材料粒径(0-250毫米)的表面积测量结果。这种可比性提供了根据每m〜2的释放量将实验室研究中的金属(金属)释放量与现场应用和集水面积计算/模型相匹配的潜力。

著录项

  • 来源
    《Journal of Hazardous Materials 》 |2012年第15期| p.257-264| 共8页
  • 作者单位

    Federal Institute of Hydrology, Department of Aquatic Chemistry, Am Mainzer Tor 1,56068 Koblenz, Germany;

    Federal Institute of Hydrology, Department of Aquatic Chemistry, Am Mainzer Tor 1,56068 Koblenz, Germany;

    Federal Institute of Hydrology, Department of Aquatic Chemistry, Am Mainzer Tor 1,56068 Koblenz, Germany;

    Federal Institute of Hydrology, Department of Aquatic Chemistry, Am Mainzer Tor 1,56068 Koblenz, Germany;

    Federal Institute of Hydrology, Department of Aquatic Chemistry, Am Mainzer Tor 1,56068 Koblenz, Germany;

    Federal Institute of Hydrology, Department of Aquatic Chemistry, Am Mainzer Tor 1,56068 Koblenz, Germany;

    Federal Institute of Hydrology, Department of Aquatic Chemistry, Am Mainzer Tor 1,56068 Koblenz, Germany;

  • 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
  • 关键词

    specific surface area; metal(loid) release; copper slag; iron silicate; salinity;

    机译:比表面积;金属(胶体)释放;铜渣硅酸铁盐度;

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