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Application of risk assessment in determination of soil remediation targets

机译:风险评估在土壤修复目标测定中的应用

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One challenge for soil and groundwater contamination remediation is to identify and assess potential risk of a historically contaminated site to human health and environment. In this article, a decision-making management model, risk based corrective actions guidance, is applied to devise a remediation strategy for a contaminant site to effectively mitigate the potential risk to human health and the environment. The detailed on-site contaminant investigation was first conducted for heavy metals and hydrocarbons by collecting 72 soil and groundwater samples. Then a conceptual site model was developed based on the Source-Pathway-Receptor linkage. The analysis results of the soil and groundwater samples were used to determine the potential risk to human health as well as the environment. Among the contaminants, lead is a cumulative toxicant. Currently, there is no official reference dose or carcinogenic slope factor for lead. For lead contamination, an "adult lead model" was adopted to determine remediation objectives by assessing human exposure through the measurement of lead in blood. Population race/ethnicity in study area was considered in this model to address a reasonable remediation goal. The analysis results indicate that 970.73 mg/kg of lead is the Tier III remediation objective. This research simultaneously predicts risk and proposes cost-effective options for remediating contaminated soil to acceptable values by tailoring on site-specific conditions and hazards. Meanwhile, an approach is developed to quantify the remediation objective for lead in soil and groundwater based on factual knowledge and scientific evidence concerning the type, level and environmental behavior of identified pollutants. Results from this study provide a streamlined process for future risk assessment work at hydrocarbon or lead polluted sites.
机译:土壤和地下水污染修复的一个挑战是识别和评估历史污染的部位对人类健康和环境的潜在风险。在本文中,基于决策管理模式,基于风险的纠正措施指导,应用于制定污染部位的修复策略,以有效地减轻人类健康和环境的潜在风险。通过收集72个土壤和地下水样品,首先对重金属和烃进行重质金属和烃进行详细的现场污染物研究。然后基于源通路受体联动开发了一个概念网站模型。土壤和地下水样品的分析结果用于确定人类健康以及环境的潜在风险。在污染物中,铅是一种累积毒性。目前,没有官方参考剂量或致癌斜率因子铅。对于铅污染,采用“成人铅模型”来通过评估通过血液铅的铅评估人的暴露来确定修复目标。在该模型中考虑了学习区的人口种族/民族,以解决合理的修复目标。分析结果表明,970.73mg / kg铅是Tier III修复目标。该研究同时预测风险,并提出通过根据特定现场条件和危害定制污染土壤来修复受污染土壤的经济效益的选择。同时,基于确定污染物的类型,水平和环境行为的事实知识和科学证据来制定一种方法以量化土壤和地下水中铅的修复目标。本研究的结果为未来风险评估工作提供了碳氢化合物或铅污染地点的简化过程。

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