Evaluation of antimony availability in a mining context: Impact for the environment, and for mineral exploration and exploitation.

Author:

Esbrí José María,Minang Carmelo M.,Rivera Sofía,Madrid-Illescas Mercedes,García-Noguero Eva,González-Valoys Ana,Maguregui MaiteORCID,Thouin Hugues,Battaglia-Brunet Fabienne,Gloaguen Eric,Higueras Pablo León

Publisher

Elsevier BV

Subject

General Medicine,General Chemistry,Environmental Chemistry,Environmental Engineering,Pollution,Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health

Reference55 articles.

1. Antimony, arsenic and lead distribution in soils and plants of an agricultural area impacted by former mining activities;Álvarez-Ayuso;Sci. Total Environ.,2012

2. Antimony distribution and mobility in different types of waste derived from the exploitation of stibnite ore deposits;Álvarez-Ayuso;Sci. Total Environ.,2022

3. Hazardous enrichment of toxic elements in soils and olives in the urban zone of lavrio, Greece, a legacy, millennia-old silver/lead mining area and related health risk assessment;Antoniadis;J. Hazard Mater.,2022

4. First occurrence of a strata-bound Sb-W-Hg deposit in the Spanish hercynian massif;Arribas,1984

5. Environmental mobility of antimony around mesothermal stibnite deposits, new south Wales, Australia and southern New Zealand;Ashley;J. Geochem. Explor.,2003

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