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Strategic Selection of an Optimal Sorbent Mixture for In-Situ Remediation of Heavy Metal Contaminated Sediments: Framework and Case Study

机译:用于重金属污染沉积物原位修复的最佳吸附剂混合物的战略选择:框架和案例研究

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摘要

Aquatic sediments contaminated with heavy metals originating from mining and metallurgical activities of aquatic sediments poses significant risk to the environment and human health due to the fact that these sediments not only act as a sink for heavy metals, but can also constitute a secondary source of heavy metal contamination. A variety of sorbent materials has demonstrated the potential to immobilize heavy metals. However, the complexity of multi-element contamination makes choosing the appropriate sorbent mixture and application dosage highly challenging. In this paper, a strategic framework is designed to systematically address the development of an in-situ sediment remediation solution through Assessment, Feasibility and Performance studies. The decision making tools and the experimental procedures needed to identify the optimum sorbent mixtures are detailed. Particular emphasis is given to the utilization and combination of commercially available, and waste-derived sorbents to enhance the sustainability of the solution. A specific case study for a contaminated sediment site in Northern Belgium with high levels of As, Cd, Pb and Zn originating from metallurgical activities is presented. The proposed framework is utilized to achieve the required remediation targets and to meet the imposed regulations on material application in natural environments.
机译:来自采矿和冶金活动的水金属沉积物被重金属污染的水沉积物对环境和人类健康构成重大风险,因为这些沉积物不仅充当了重金属的汇,而且还可以构成重金属的第二来源金属污染。多种吸附剂材料已显示出固定重金属的潜力。但是,多元素污染的复杂性使得选择合适的吸附剂混合物和应用剂量极具挑战性。在本文中,设计了一个战略框架,以通过评估,可行性和性能研究系统地解决原位沉积物修复解决方案的开发问题。详细介绍了确定最佳吸附剂混合物所需的决策工具和实验程序。特别强调了可商购的和废物衍生的吸附剂的利用和结合,以提高溶液的可持续性。提出了一个针对比利时北部受污染的沉积物场地的具体案例研究,该沉积物具有来自冶金活动的高水平的As,Cd,Pb和Zn。拟议的框架可用于实现所需的修复目标并满足在自然环境中对物质应用施加的法规。

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