Comprehensive multimetal isotopic model for regional-scale water management in a mining city: Tracing contamination sources, pathways, and geochemical processes using Cu, Mo, S-O, and Zn isotopes

  • Kim, Duk-Min; 
  • Batsaikhan, Bayartungalag; 
  • Yun, Seong-Taek; 
  • Im, Dae-Gyu; 
  • Seo, Hyeon-Soo
Citations

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4
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SCOPUS

4

초록

Major mining cities worldwide have been suffering from diverse contamination sources such as tailings, mine drainages, geology enriched with toxic metals, and other industrial and domestic sources. This study established a multi-isotopic comprehensive model for elucidating water contamination sources and geochemical reactions in the city of Erdenet in Mongolia. The Erdenet city was contaminated with As, Cu, Mo, Zn, and SO42-, and we used isotopes of Cu, Mo, Zn, and S-O in SO42-. Contamination sources for groundwater and surface water were differentiated as tailings dump, excavated ore, heap leaching, ash pond of a power plant, and argillic alteration zone. Groundwater in the residential area was influenced by the argillic alteration zone, as indicated by low S34SSO4 and high S65Cu values, while S66Zn fingerprints may have been masked by adsorption and mixing. Additionally, S98Mo fingerprints from two major Mo contamination sources (the ash pond and tailings dump) were evident in the stream. The tailings dump substantially impacted S65Cu, S98Mo, and S66Zn values in the stream, with isotopic fractionation occurring through oxidative dissolution and adsorption. Furthermore, to assess oxidative dissolution of sulfides and adsorption, delta 65Cu and delta 98Mo+ delta 66Zn were found to be particularly useful, respectively. This study highlights the effectiveness of multimetal isotopic ratios in tracing contamination sources and geochemical processes in regions with diverse contaminants, presenting a robust spatial model for isotopic fingerprinting.

키워드

Groundwater and surface water; Tailings; Erdenet; Multiple isotopes; Adsorption; AQUEOUS CU(II); ZINC ISOTOPES; FRACTIONATION; MOLYBDENUM; ADSORPTION; MINE; CADMIUM; SULFIDE; DEPOSIT; RIVER
제목
Comprehensive multimetal isotopic model for regional-scale water management in a mining city: Tracing contamination sources, pathways, and geochemical processes using Cu, Mo, S-O, and Zn isotopes
저자
Kim, Duk-Min; Batsaikhan, Bayartungalag; Yun, Seong-Taek; Im, Dae-Gyu; Seo, Hyeon-Soo
DOI
10.1016/j.jhazmat.2025.138562
발행일
2025-08-15
유형
Article
저널명
Journal of Hazardous Materials
권
494