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A risk-based approach for assessing the recycling potential of an alkaline waste material as road sub-base filler material

机译:一种基于风险的方法,用于评估碱性废料作为路基填料的再循环潜力

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摘要

HighlightsRisk-based approach to assess a recycling option for an alkaline waste material.Use of lab leaching test results for the assessment of contaminants release.Evaluation of the effects of weathering in terms of release and associated risks.Application of Monte Carlo analysis to evaluate the effects of scenario conditions.Estimated groundwater concentrations affected by the type of test used and weathering.AbstractIn this work we present an integrated risk-based approach that can be used to evaluate the recycling potential of an alkaline waste material such as incineration bottom ash (BA) as unbound material for road sub-base construction. This approach, which is aimed at assessing potential risks to the groundwater resource (in terms of drinking water quality) and human health associated to the leaching of contaminants from the BA, couples the results of leaching tests for the estimation of source concentrations with the fate and transport models usually adopted in risk assessment procedures. The effects of weathering and of the type of leaching test employed to evaluate eluate concentrations were assessed by carrying out different simulations using the results of laboratory leaching tests. Specifically, pH-dependence and column percolation leaching tests were performed on freshly collected and 1-year naturally weathered BA samples produced from a grate-fired incineration plant treating Refuse Derived Fuel (RDF). To evaluate a broad span of possible scenario conditions, a Monte Carlo analysis was performed running 5000 simulations, randomly varying the input parameters within the ranges expected in the field. In nearly all the simulated conditions, the concentrations of contaminants in the groundwater for the specific type of BA tested in this work were well below EU and WHO drinking water quality criteria. Nevertheless, some caution should be paid in the case of the establishment of acidic conditions in the field since in this case the concentration of some elements (i.e. Al, Pb and Zn) is expected to exceed threshold values. In terms of risks to human health, for the considered utilization scenario the probability of exceeding the acceptable reference dose for water ingestion was usually less than 1% (except for Cr and Pb for which the probability was lower than 3.5% and 7%, respectively).
机译: 突出显示 基于风险的方法来评估碱性废料的回收方案。 使用实验室浸出测试结果进行评估污染物释放。 根据释放和相关风险评估风化的影响。 应用蒙特卡洛分析来评估场景条件的影响。 估计的地下水浓度受所用测试类型和气候影响。 < / ce:abstract-sec> 摘要 在这项工作中,我们提出了一种基于风险的集成方法评估碱性废料(如焚化底灰(BA))作为未粘结材料在公路路基施工中的回收潜力。该方法旨在评估与从BA浸出污染物相关的地下水资源(就饮用水水质)和人体健康的潜在风险,将浸出测试的结果与源浓度的估算结合在一起风险评估程序中通常采用的运输模型。通过使用实验室浸出试验的结果进行不同的模拟,评估了风化作用和用于评估洗脱液浓度的浸出试验类型的影响。具体而言,对新鲜收集的和1年自然风化的BA样品进行了pH依赖性和柱渗滤试验,这些样品是从处理g废燃料(RDF)的炉排焚烧厂生产的。为了评估可能的情景条件的广泛范围,执行了5000次模拟,在现场预期的范围内随机改变输入参数,进行了蒙特卡洛分析。在几乎所有模拟条件下,这项工作中测试的特定类型BA的地下水中污染物的浓度均远低于EU和WHO饮用水水质标准。然而,在现场建立酸性条件的情况下,应格外小心,因为在这种情况下,某些元素(即Al,Pb和Zn)的浓度有望超过阈值。就人类健康的风险而言,在考虑的利用情景下,摄入水超过可接受的参考剂量的概率通常小于1%(铬和铅的概率分别低于3.5%和7%) )。

著录项

  • 来源
    《Waste Management》 |2018年第1期|440-453|共14页
  • 作者单位

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome “Tor Vergata”;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome “Tor Vergata”;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome “Tor Vergata”;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome “Tor Vergata”;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome “Tor Vergata”;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome “Tor Vergata”;

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

    RDF incineration bottom ash; Road sub-base material; Risk assessment; Leaching tests; Weathering;

    机译:RDF焚烧底灰;路基材料;风险评估;浸出试验;风化;

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