Spatial distribution of rare earth elements and their impact factors in an area with a high abundance of regolith-hosted deposits

风化土 丰度(生态学) 天体生物学 空间分布 环境科学 地球科学 地质学 生态学 遥感 物理 生物
作者
Zhuoling Lin,Yaduo Zhang,Xiaoliang Liang,Guangqing Huang,Fenglei Fan,Xin Yin,Zhihao Chen
出处
期刊:Chemosphere [Elsevier BV]
卷期号:: 141374-141374
标识
DOI:10.1016/j.chemosphere.2024.141374
摘要

Despite the widespread occurrence of regolith-hosted rare earth elements (Ferreira et al.) across South China, their spatial distribution characteristics in soils and their impact factors remain largely uncertain. This knowledge gap impedes the exploration of regolith-hosted REE deposits and the assessment of the environmental risks associated with REEs. To address this issue, 180 soil samples were collected from Meizhou City, Guangdong Province, a region known for its high abundance of regolith-hosted REEs. Subsequently, the correlations between REE enrichment/fractionation and various factors, i.e., topography, climate conditions, land use, and landform were analysed using the geo-detector method. The results revealed a highly uneven spatial distribution of REEs and their fractionation features with some regions displaying distinct spatial patterns. Elevation was the dominant factor influencing this distribution, and showed strong correlations with the concentrations of REEs, light REEs (LREEs) and heavy REEs (HREEs); the LREE/HREE ratio; and the positive Ce anomaly (δCe). The negative Eu anomaly (δEu) showed a good correlation with rock type. The enrichment and fractionation of REEs indicated a coupling among the abovementioned factors. For REE enrichment, areas with elevations of 138–148 m, precipitation levels of 1553–1574 mm, annual average land surface temperatures of 30.4–30.5 °C, leaf area index values of 22–29 and surface cutting degree of 21.5–29.9 m showed the highest average abundance within each type (scope) of the predominant factors. These findings highlight the key factors affecting REE distribution, thereby aiding the efficient utilization of regolith-hosted REE resources and the evaluation of their environmental risks.
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