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Heavy Metals in Glass Beads Used in Pavement Markings

机译:路面标记中使用的玻璃珠中的重金属

摘要

Pavement markings are vital for safely navigating roadways. The nighttime visibility of pavement markings is enhanced by addition of retroreflective glass beads, most of which are made from recycled glass. Concern has been raised over the presence of heavy metals in glass beads used in pavement markings and their effect on human and environmental health. Based upon the potential risk associated with the presence of arsenic and lead in the glass beads, two Bills are currently being considered before the 112th Congress of the United States of America seeking to set a maximum permissible limit for the amount of arsenic and lead in glass beads used within pavement marking systems on domestic roadways. This study was designed to support legislative decision making by providing data necessary for risk assessment. The experiments carried out provide: an analysis of glass bead metal content and extractability; an evaluation of the relationship between arsenic content of the glass beads and their retroreflective performance; an evaluation of analytical methods used to measure the total bead metal content; and an analysis of samples of glass bead and soil mixture from a glass bead storage site used to determine site-specific metal concentrations in the soil media.Mean arsenic content, measured using the Pacific Northwest National Laboratory's KOH fusion digestion, in all the glass beads examined ranged from 11 ppm to 82 ppm, while mean lead content, measured using KOH fusion digestion, ranged from below quantification limit to 199 ppm. Total metal content measurements indicated a high amount of variability in the glass bead samples; most likely associated with the use of recycled glass feed during manufacturing. The relationship between the retroreflective performance and the arsenic content of the glass beads was analyzed and a weak but positive correlation was observed between the two factors. However, a more detailed study is required to evaluate the relationship between arsenic content and retroreflectivity. Different methods to evaluate the total metal content in glass beads were compared; it is recommended that any analytical method may be used, as long as the standard reference material is reproduced within the range of concentration expected in the glass beads. In the analysis of the field site samples of soil containing glass beads obtained from a glass bead storage and transfer facility, the mass content of beads in the soil varied from a mean of 19% to 78% depending on the location within the facility. However, a detailed analysis with larger number of samples must be performed to evaluate the effect of glass beads on the total arsenic content of the soil.
机译:路面标记对于安全行进道路至关重要。通过添加逆反射玻璃珠,可以提高夜间在路面标记上的可见度,其中大部分是由回收玻璃制成的。人们对在路面标记中使用的玻璃珠中重金属的存在及其对人体和环境健康的影响提出了关注。根据与玻璃珠中砷和铅相关的潜在风险,目前正在考虑在美国第112届国会前审议两项法案,以寻求对玻璃中砷和铅含量的最大限制家用道路路面标记系统中使用的珠子。本研究旨在通过提供风险评估所需的数据来支持立法决策。进行的实验提供:玻璃珠金属含量和可萃取性的分析;评估玻璃珠中砷含量与其回射性能之间的关系;对用于测量总珠金属含量的分析方法的评估;并分析了玻璃珠储存场所的玻璃珠和土壤混合物样品,以确定土壤介质中特定位置的金属浓度。使用西北太平洋国家实验室的KOH熔融消解法测量的所有玻璃珠中的平均砷含量被检测的铅含量在11 ppm至82 ppm之间,而使用KOH熔解法测得的平均铅含量则在定量限以下至199 ppm之间。总金属含量的测量结果表明玻璃珠样品中的变化很大。最有可能与制造过程中使用回收玻璃饲料有关。分析了玻璃珠的逆反射性能与砷含量之间的关系,发现这两个因素之间存在微弱但正相关的关系。但是,需要更详细的研究来评估砷含量与逆反射率之间的关系。比较了评估玻璃珠中总金属含量的不同方法;建议使用任何分析方法,只要在玻璃珠中预期的浓度范围内复制标准参考物质即可。在分析从玻璃珠储存和转移设施获得的含有玻璃珠的土壤的现场样本的分析中,土壤中珠的质量含量从平均19%到78%不等,具体取决于设施内的位置。但是,必须进行大量样品的详细分析,以评估玻璃珠对土壤总砷含量的影响。

著录项

  • 作者

    Mangalgiri Kiranmayi;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en_US
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