Environmental Chemistry and Ecotoxicology of Hazardous Heavy Metals: Environmental Persistence, Toxicity, and Bioaccumulation

Экологическая химия и экотоксикология опасных тяжёлых металлов: устойчивость в окружающей среде, токсичность и биоаккумуляция
Hazrat Ali, Ezzat Khan, Ikram Ilahi
2019-03-05

bioaccumulationecotoxicologyenvironmental persistencehazardous heavy metalstrophic transfer
Heavy metals are well-known environmental pollutants due to their toxicity, persistence in the environment, and bioaccumulative nature. Their natural sources include weathering of metal-bearing rocks and volcanic eruptions, while anthropogenic sources include mining and various industrial and agricultural activities. Mining and industrial processing for extraction of mineral resources and their subsequent applications for industrial, agricultural, and economic development has led to an increase in the mobilization of these elements in the environment and disturbance of their biogeochemical cycles. Contamination of aquatic and terrestrial ecosystems with toxic heavy metals is an environmental problem of public health concern. Being persistent pollutants, heavy metals accumulate in the environment and consequently contaminate the food chains. Accumulation of potentially toxic heavy metals in biota causes a potential health threat to their consumers including humans. This article comprehensively reviews the different aspects of heavy metals as hazardous materials with special focus on their environmental persistence, toxicity for living organisms, and bioaccumulative potential. The bioaccumulation of these elements and its implications for human health are discussed with a special coverage on fish, rice, and tobacco. The article will serve as a valuable educational resource for both undergraduate and graduate students and for researchers in environmental sciences. Environmentally relevant most hazardous heavy metals and metalloids include Cr, Ni, Cu, Zn, Cd, Pb, Hg, and As. The trophic transfer of these elements in aquatic and terrestrial food chains/webs has important implications for wildlife and human health. It is very important to assess and monitor the concentrations of potentially toxic heavy metals and metalloids in different environmental segments and in the resident biota. A comprehensive study of the environmental chemistry and ecotoxicology of hazardous heavy metals and metalloids shows that steps should be taken to minimize the impact of these elements on human health and the environment.
1
Bioaccumulation in fish, rice, and tobacco is particularly relevant to human exposure because contaminated biota can transfer toxic metals to consumers.
2
Contamination by Cr, Ni, Cu, Zn, Cd, Pb, Hg, and As threatens aquatic and terrestrial organisms and creates potential health risks for wildlife and humans.
3
Heavy metals persist in environmental compartments, resist degradation, and bioaccumulate, enabling their transfer through aquatic and terrestrial food chains.
4
Mining, industrial processing, and agricultural activities have increased heavy-metal mobilization and disrupted natural biogeochemical cycles, alongside natural inputs from rock weathering and volcanic eruptions.
5
Regular assessment and monitoring of toxic heavy-metal and metalloid concentrations in environmental media and resident organisms are essential for evaluating ecological and public-health risks.

Hazardous heavy metals and metalloids (Cr, Ni, Cu, Zn, Cd, Pb, Hg, As) in environmental compartments and biota

Environmental persistence, toxicity, bioaccumulation, and trophic transfer of hazardous heavy metals and metalloids, including implications for wildlife and human health

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Publication Date
2019-03-05
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Hazrat Ali
Ezzat Khan
Ikram Ilahi
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