Author
Listed:
- Yifei Shi
(School of Environmental and Municipal Engineering, Xi’an University of Architecture and Technology, Xi’an 710001, China
Shaanxi Environmental Investigation and Assessment Center, Xi’an 710054, China)
- Chen Sun
(Shaanxi Environmental Investigation and Assessment Center, Xi’an 710054, China)
- Yongfang Zhou
(Shaanxi Institute of Ecological Environment Planning and Design, Xi’an 710018, China)
- Teng Teng
(Technological Development Zone Xi’an Yan Liang National Aviation Hi-Tech Industrial Base, Xi’an 710089, China)
- Weiwei Hu
(CCIC Northwest Ecological Technology (Shaanxi) Co., Ltd., Xi’an 710068, China)
- Yi Wang
(School of Environmental and Municipal Engineering, Xi’an University of Architecture and Technology, Xi’an 710001, China)
Abstract
Potentially toxic elements (PTE) pollution from lead–zinc (Pb–Zn) production poses significant ecological risks, requiring systematic assessment across the industrial chain. This study investigated soil, surface water, and sediments near a Pb–Zn mining area, integrating pollution indices (I geo , NIPI, RI) with human health risk models. A spatial analysis framework was established by combining proportional symbol mapping and Thiessen polygons to analyze contamination patterns under small-sample conditions. Results showed a clear pollution hierarchy: smelting > beneficiation > tailings ≈ mining. Smelting and beneficiation zones exhibited multi-element pollution; Hazard Index (HI) exceedance probabilities reached 89% and 95%, respectively, while carcinogenic risk (CR) exceedance approached 100% across all zones. Cd was the dominant ecological risk factor, particularly in mining and tailings zones, where risk was mainly driven by a single element. Source apportionment identified two industrial groups—smelting-related (Pb, Hg, Zn, Se) and ore-associated (As, Cd, Cu, Sb)—whereas Cr, Ni, Co, and V were mainly derived from natural sources. These results indicate the need for coordinated management of beneficiation and smelting processes and provide a spatial analysis approach for small-sample assessment.
Suggested Citation
Yifei Shi & Chen Sun & Yongfang Zhou & Teng Teng & Weiwei Hu & Yi Wang, 2026.
"Spatial Distribution and Source Apportionment of Potentially Toxic Elements in Soils Across a Full Lead–Zinc Mining–Beneficiation–Smelting–Tailings System,"
Land, MDPI, vol. 15(6), pages 1-25, June.
Handle:
RePEc:gam:jlands:v:15:y:2026:i:6:p:1029-:d:1964592
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