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Heavy Metal Pollution from Gold Mines: Environmental Effects and Bacterial Strategies for Resistance

Muibat Omotola FasholaVeronica M. Ngole‐JemeOlubukola Oluranti Babalola

Abstract

Mining activities can lead to the generation of large quantities of heavy metal laden wastes which are released in an uncontrolled manner, causing widespread contamination of the ecosystem. Though some heavy metals classified as essential are important for normal life physiological processes, higher concentrations above stipulated levels have deleterious effects on human health and biota. Bacteria able to withstand high concentrations of these heavy metals are found in the environment as a result of various inherent biochemical, physiological, and/or genetic mechanisms. These mechanisms can serve as potential tools for bioremediation of heavy metal polluted sites. This review focuses on the effects of heavy metal wastes generated from gold mining activities on the environment and the various mechanisms used by bacteria to counteract the effect of these heavy metals in their immediate environment.

Heavy metals in environmentChromium effects and bioremediationMetal Extraction and BioleachingBiotaHeavy metalsBioremediationEnvironmental sciencePollutionEnvironmental chemistryContaminationEcosystemEnvironmental pollutionChemistry

MeSH terms

BacteriaEnvironmental PollutionGoldMiningMetals, HeavyDrug Resistance, Bacterial

Funding

  • National Research Foundation
Citations
762
FWCI
14.76
field-weighted impact
References
164
Percentile
99%
vs. same field & year
Citations per year
References
Microbial heavy-metal resistance
Applied Microbiology and Biotechnology · 1999 · 2,472 citations
Microbial Resistance to Metals in the Environment
Ecotoxicology and Environmental Safety · 2000 · 1,417 citations
Potential hazards of hexavalent chromate in our drinking water
Toxicology and Applied Pharmacology · 2003 · 563 citations
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