Simulation of Heavy Metals Migration in Soil of Rare Earth Mining Area

Y. F. Luo, Z. Wang, C. Zheng
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Abstract

The study of heavy metal interactions with soils under specific climatic circumstances might lead to a better understanding of heavy metal migration and provide further information for local pollution control. In this work, we collected soil samples from the world's largest light rare earth mining district, Bayan Obo mine district, and assessed the heavy metal content in the soil at various depths. The extraction effectiveness of Diethylenetriaminepentaacetic acid (DTPA) and Toxicity Characteristic Leaching Procedure (TCLP) for heavy metals in surface soil were compared. Furthermore, we studied the longitudinal transport of heavy metals under precipitation conditions using simulated experiments and kinetic fitting. We discovered that pH has a significant impact on heavy metal release. Precipitation easily transports Zn, Pb, and Cr to deeper layers of the soil. The modified Elvoich equation could better describe heavy metal release patterns.
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稀土矿区土壤重金属迁移模拟
研究特定气候条件下重金属与土壤的相互作用,有助于更好地了解重金属迁移,并为当地污染控制提供进一步的信息。在这项工作中,我们收集了世界上最大的轻稀土矿区——白云鄂博矿区的土壤样品,并评估了土壤中不同深度的重金属含量。比较了二乙烯三胺五乙酸(DTPA)和毒性浸出法(TCLP)对土壤表层重金属的浸出效果。此外,我们还利用模拟实验和动力学拟合研究了降水条件下重金属的纵向输送。我们发现pH值对重金属释放有显著影响。降水很容易将Zn、Pb和Cr输送到土壤的较深层。修正后的Elvoich方程可以更好地描述重金属的释放模式。
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