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Using Prototyping to Minimise Remediation Costs: a Case Study on a Former Paint Factory

机译:使用原型设计以最大限度地减少修复成本:以前涂料厂为例

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Soils containing high concentrations of metals were treated using a soil washing process. The hypothesis was that metals could be concentrated in a single or small number of fine fractions which could be removed and disposed of to treat the contaminated soil. Lead and zinc were shown to be distributed over the > 4000, 2000–4000, 600–2000, 180–600, 38–180, 38–23, and < 9 µm soil size fractions. The study demonstrated that only one of four of the composites tested, generated a metal-rich fraction as a result of washing and soil fractionation. Using a scaling approach, with a laboratory prototype, this study demonstrates that lead and zinc contamination across the site were not able to be concentrated into any size fraction. Further, the metals could not be concentrated to any commercially viable extent to enable the development of a remediation strategy. The approach illustrated how costs can be contained in developing full-scale remediation processes through using a staged process based on the principles of prototyping and scaling.
机译:使用土壤洗涤过程处理含有高浓度金属的土壤。假设是金属可以浓缩成单个或少量的细部分,这可以除去和处理以治疗受污染的土壤。铅和锌显示出分布在> 4000,2000-4000,600-2000,180-600,38-180,38-23和<9μm的土壤尺寸级分。该研究证明,仅测试了四种复合材料中的一种,由于洗涤和土壤分馏而产生金属富含的馏分。使用缩放方法,具有实验室原型,本研究表明,该部位的铅和锌污染不能集中成任何尺寸的分数。此外,金属不能集中在任何商业上可行的范围内,以实现修复策略。该方法通过使用基于原型化和缩放原理,通过使用分阶段的过程来开发满量程修复过程中的成本如何。

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